hek293 cell Search Results


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ATCC cell line source culture media hek293 crl 1573 american type culture collection
Cell Line Source Culture Media Hek293 Crl 1573 American Type Culture Collection, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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CLS Cell Lines Service GmbH transfection page 15 27 human embryonic kidney 293 hek293
Transfection Page 15 27 Human Embryonic Kidney 293 Hek293, supplied by CLS Cell Lines Service GmbH, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Boster Bio hek293 cells
( A ) Phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( B ) Dimerization of IRF3 in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( C ) Nuclear translocation of IRF3 in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). GAPDH and LaminA/C were used as cytoplasm and nuclear protein loading controls. ( D ) Immunofluorescence images showing the impact of 14,15-EET and TPPU on the subcellular localization of IRF3 in uninfected (CON) or CVB3-infected AC16 cells; bars =50 μm. ( E ) Scheme showing the two main RNA sensor-induced IRF3 activation pathways. ( F-G ) AC16 cells that were uninfected (CON) or infected with CVB3 were treated with 11,12-EET, 14,15-EET or TPPU (n=3). Shown are changes in IRF3 phosphorylation following the siRNA-mediated down regulation of MDA5 (F), or TLR3 (G). ( H ) Activity of a IFNβ-luciferase reporter construct in <t>HEK293</t> cells expressing either a control vector (vector), pcMDA5, pcMAVS, pcTBK1 , or pcIRF3-5D and treated with solvent (CON) or 14,15-EET (1 μM) for 24 hours. ( I ) Impact of the siRNA-mediated downregulation of TBK1 on the phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=3). *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001.
Hek293 Cells, supplied by Boster Bio, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Santa Cruz Biotechnology hek293 cells
FIG. 1. TAK1 regulates Nod2-mediated NF-B activation. A, the dominant negative form of TAK1 (TAK1DN) inhibits NF-B activation induced by Nod2. <t>HEK293T</t> cells were transfected with pCDNA-Nod2 (3 ng) and reporter constructs RSV-KB-Luc and RSV--galactosidase plus the dominant negative forms of TBK1, Ubc13, Rip, or TAK1 (120 ng each) or control vector. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated at least three times with equivalent results. *, p 0.0001 (vector versus TAK1DN). B, the dose effect of TAK1DN on Nod2-mediated NF-B. HEK293T cells were transfected with fixed amounts of pCDNA-Nod2 (3 ng), RSV-KB- Luc, and RSV--galactosidase plus the indicated doses of TAK1DN. The luciferase activity of cells transfected with reporters and Nod2 alone (control) was arbitrarily set at 100, and the percent of inhibition was calculated accordingly. The experiments were performed in triplicate and repeated at least three times with equivalent results.
Hek293 Cells, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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91
Novus Biologicals exosome standard
FIG. 1. TAK1 regulates Nod2-mediated NF-B activation. A, the dominant negative form of TAK1 (TAK1DN) inhibits NF-B activation induced by Nod2. <t>HEK293T</t> cells were transfected with pCDNA-Nod2 (3 ng) and reporter constructs RSV-KB-Luc and RSV--galactosidase plus the dominant negative forms of TBK1, Ubc13, Rip, or TAK1 (120 ng each) or control vector. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated at least three times with equivalent results. *, p 0.0001 (vector versus TAK1DN). B, the dose effect of TAK1DN on Nod2-mediated NF-B. HEK293T cells were transfected with fixed amounts of pCDNA-Nod2 (3 ng), RSV-KB- Luc, and RSV--galactosidase plus the indicated doses of TAK1DN. The luciferase activity of cells transfected with reporters and Nod2 alone (control) was arbitrarily set at 100, and the percent of inhibition was calculated accordingly. The experiments were performed in triplicate and repeated at least three times with equivalent results.
Exosome Standard, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 91/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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93
Rockland Immunochemicals hek293 cells
Validation of preferential affinity . (a) GO molecular function term significance in the various sets of proteins inferred to bind preferentially one or several subtypes of nucleic acids. We observe the clear separation between molecular functions enriched in inferred DNA- and RNA-binding proteins. Color log-scale: red = P < 1E-15, light yellow = P < 0.01, gray = P ≥ 0.01. (b) Examples of affinity preferences of selected NABPs represented by P -values in the statistical analysis (table on left) and western blots in the experimental validation (right). We note the strong agreement between preferred versus non-preferred affinities in the statistics and the blots. (C20orf72 was purified with a Myc tag in <t>HEK293</t> cells instead of a specific antibody in HepG2 cells.) (c) Methylation specificity usually correlates with CG specificity, but UHRF1 and YB-1 were specific to mCG only in the statistical analysis (see reported P -values in the table on the left). Experimental validation confirmed their specificity (right); AIM2 was used as a DNA-binding non-specific control.
Hek293 Cells, supplied by Rockland Immunochemicals, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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BPS Bioscience human pd 1
A Immunofluorescence analysis <t>of</t> <t>PD-1</t> binding to PD-L1 on RKO cells treated with TER. RKO cells were incubated with recombinant human PD-1 Alexa 647 protein and treated with the indicated concentrations of TER. Red fluorescence represents PD-1 binding; the nuclei were stained with Hoechst (blue). B Competitive ELISA assay measuring the inhibition of PD-1/PD-L1 interaction by TER. The binding between PD-1 and PD-L1 in the presence of increasing concentrations of TER was assessed. C The 3D structure of TER (upper panel) and its predicted binding pose within the active site of PD-1 (PDB ID: 3RRQ, lower panel). The key interacting residues include PHE56, SER57, ASN58, THR59, SER62, PHE63, PHE82, PRO83, GLN99, ASN102, GLY103, and ARG104. D Protein–ligand complex showing TER docked to PD-1, with the binding pocket highlighted. E Surface plasmon resonance (SPR) analysis showing the binding of TER to PD-1. αPD-L1 was used as a positive control. *** p < 0.001 and **** p < 0.0001 compared with the respective control.
Human Pd 1, supplied by BPS Bioscience, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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CLS Cell Lines Service GmbH recombinant rbd protein production suspension hek293f cells
A Immunofluorescence analysis <t>of</t> <t>PD-1</t> binding to PD-L1 on RKO cells treated with TER. RKO cells were incubated with recombinant human PD-1 Alexa 647 protein and treated with the indicated concentrations of TER. Red fluorescence represents PD-1 binding; the nuclei were stained with Hoechst (blue). B Competitive ELISA assay measuring the inhibition of PD-1/PD-L1 interaction by TER. The binding between PD-1 and PD-L1 in the presence of increasing concentrations of TER was assessed. C The 3D structure of TER (upper panel) and its predicted binding pose within the active site of PD-1 (PDB ID: 3RRQ, lower panel). The key interacting residues include PHE56, SER57, ASN58, THR59, SER62, PHE63, PHE82, PRO83, GLN99, ASN102, GLY103, and ARG104. D Protein–ligand complex showing TER docked to PD-1, with the binding pocket highlighted. E Surface plasmon resonance (SPR) analysis showing the binding of TER to PD-1. αPD-L1 was used as a positive control. *** p < 0.001 and **** p < 0.0001 compared with the respective control.
Recombinant Rbd Protein Production Suspension Hek293f Cells, supplied by CLS Cell Lines Service GmbH, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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93
Novus Biologicals hek293 cells
A Immunofluorescence analysis <t>of</t> <t>PD-1</t> binding to PD-L1 on RKO cells treated with TER. RKO cells were incubated with recombinant human PD-1 Alexa 647 protein and treated with the indicated concentrations of TER. Red fluorescence represents PD-1 binding; the nuclei were stained with Hoechst (blue). B Competitive ELISA assay measuring the inhibition of PD-1/PD-L1 interaction by TER. The binding between PD-1 and PD-L1 in the presence of increasing concentrations of TER was assessed. C The 3D structure of TER (upper panel) and its predicted binding pose within the active site of PD-1 (PDB ID: 3RRQ, lower panel). The key interacting residues include PHE56, SER57, ASN58, THR59, SER62, PHE63, PHE82, PRO83, GLN99, ASN102, GLY103, and ARG104. D Protein–ligand complex showing TER docked to PD-1, with the binding pocket highlighted. E Surface plasmon resonance (SPR) analysis showing the binding of TER to PD-1. αPD-L1 was used as a positive control. *** p < 0.001 and **** p < 0.0001 compared with the respective control.
Hek293 Cells, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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BPS Bioscience ap 1 luciferase reporter hek293 cell line
Cellular activity of JPC0661 . A , cell viability of JPC0661 comm and HTS10307 assessed in the range of 0 to 20 μM after 24 h ( top ) and 72 h ( bottom ) in neural progenitor cells (NPCs) using the CellTiter-Glo viability assay. Cell viability measures are normalized to the negative control containing no compound but 0.6% DMSO. Dotted lines indicate 100% cell viability. The mean of n replicates is shown for 24 h (n = 3) and 72 h (n = 2) with error bars indicating the SEM. B , stability of JPC0661 comm and HTS10307 in mouse liver microsomes. C and D , effects of JPC0661 comm (0–100 μM; ( C ) and JPC0661 (0–100 μM; ( D ) on AP-1-driven luciferase activity in AP-1-luc <t>HEK293</t> cells. The dose-dependent activation of the AP-1-driven luciferase reporter was measured based on changes in the luciferase signal and expressed as relative fluorescence units (RFUs). Each compound was tested twice (n = 4 wells per experiment; total n = 6–8 wells for JPC0661 comm and n = 7–8 wells for JPC0661 per concentration), with results normalized to the luciferase signals of blank wells from corresponding experiments (n = 8 wells). Nonlinear regression using a three-parameter model was applied to fit the luciferase signal and calculate IC 50 values, which are reported with a 95% confidence interval (CI), and data points are presented as the mean ± SEM. E , effect of serially diluted JPC0661 (0.003–100 μM) on the viability of AP-1-luc HEK293 cells using the Celltiter-Glo viability assay (2 h). Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 7 wells). Data points are presented as the mean ± SEM, with a total n = 10 to 12 wells per concentration. F , effect of JPC0661 (at doses 12.5, 25, and 50 μM) on the viability of Neuro 2A cells (72 h) using the Celltiter-Glo viability assay to assess potential toxicity in mouse neuronal cells. Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 8 wells). Data points are presented as the mean ± SEM, with a total n = 12 wells per concentration. AP-1, activator protein 1; DMSO, dimethyl sulfoxide.
Ap 1 Luciferase Reporter Hek293 Cell Line, supplied by BPS Bioscience, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Novus Biologicals hek293 cell lysate
Cellular activity of JPC0661 . A , cell viability of JPC0661 comm and HTS10307 assessed in the range of 0 to 20 μM after 24 h ( top ) and 72 h ( bottom ) in neural progenitor cells (NPCs) using the CellTiter-Glo viability assay. Cell viability measures are normalized to the negative control containing no compound but 0.6% DMSO. Dotted lines indicate 100% cell viability. The mean of n replicates is shown for 24 h (n = 3) and 72 h (n = 2) with error bars indicating the SEM. B , stability of JPC0661 comm and HTS10307 in mouse liver microsomes. C and D , effects of JPC0661 comm (0–100 μM; ( C ) and JPC0661 (0–100 μM; ( D ) on AP-1-driven luciferase activity in AP-1-luc <t>HEK293</t> cells. The dose-dependent activation of the AP-1-driven luciferase reporter was measured based on changes in the luciferase signal and expressed as relative fluorescence units (RFUs). Each compound was tested twice (n = 4 wells per experiment; total n = 6–8 wells for JPC0661 comm and n = 7–8 wells for JPC0661 per concentration), with results normalized to the luciferase signals of blank wells from corresponding experiments (n = 8 wells). Nonlinear regression using a three-parameter model was applied to fit the luciferase signal and calculate IC 50 values, which are reported with a 95% confidence interval (CI), and data points are presented as the mean ± SEM. E , effect of serially diluted JPC0661 (0.003–100 μM) on the viability of AP-1-luc HEK293 cells using the Celltiter-Glo viability assay (2 h). Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 7 wells). Data points are presented as the mean ± SEM, with a total n = 10 to 12 wells per concentration. F , effect of JPC0661 (at doses 12.5, 25, and 50 μM) on the viability of Neuro 2A cells (72 h) using the Celltiter-Glo viability assay to assess potential toxicity in mouse neuronal cells. Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 8 wells). Data points are presented as the mean ± SEM, with a total n = 12 wells per concentration. AP-1, activator protein 1; DMSO, dimethyl sulfoxide.
Hek293 Cell Lysate, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Rockland Immunochemicals cell lysate
Cellular activity of JPC0661 . A , cell viability of JPC0661 comm and HTS10307 assessed in the range of 0 to 20 μM after 24 h ( top ) and 72 h ( bottom ) in neural progenitor cells (NPCs) using the CellTiter-Glo viability assay. Cell viability measures are normalized to the negative control containing no compound but 0.6% DMSO. Dotted lines indicate 100% cell viability. The mean of n replicates is shown for 24 h (n = 3) and 72 h (n = 2) with error bars indicating the SEM. B , stability of JPC0661 comm and HTS10307 in mouse liver microsomes. C and D , effects of JPC0661 comm (0–100 μM; ( C ) and JPC0661 (0–100 μM; ( D ) on AP-1-driven luciferase activity in AP-1-luc <t>HEK293</t> cells. The dose-dependent activation of the AP-1-driven luciferase reporter was measured based on changes in the luciferase signal and expressed as relative fluorescence units (RFUs). Each compound was tested twice (n = 4 wells per experiment; total n = 6–8 wells for JPC0661 comm and n = 7–8 wells for JPC0661 per concentration), with results normalized to the luciferase signals of blank wells from corresponding experiments (n = 8 wells). Nonlinear regression using a three-parameter model was applied to fit the luciferase signal and calculate IC 50 values, which are reported with a 95% confidence interval (CI), and data points are presented as the mean ± SEM. E , effect of serially diluted JPC0661 (0.003–100 μM) on the viability of AP-1-luc HEK293 cells using the Celltiter-Glo viability assay (2 h). Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 7 wells). Data points are presented as the mean ± SEM, with a total n = 10 to 12 wells per concentration. F , effect of JPC0661 (at doses 12.5, 25, and 50 μM) on the viability of Neuro 2A cells (72 h) using the Celltiter-Glo viability assay to assess potential toxicity in mouse neuronal cells. Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 8 wells). Data points are presented as the mean ± SEM, with a total n = 12 wells per concentration. AP-1, activator protein 1; DMSO, dimethyl sulfoxide.
Cell Lysate, supplied by Rockland Immunochemicals, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


( A ) Phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( B ) Dimerization of IRF3 in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( C ) Nuclear translocation of IRF3 in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). GAPDH and LaminA/C were used as cytoplasm and nuclear protein loading controls. ( D ) Immunofluorescence images showing the impact of 14,15-EET and TPPU on the subcellular localization of IRF3 in uninfected (CON) or CVB3-infected AC16 cells; bars =50 μm. ( E ) Scheme showing the two main RNA sensor-induced IRF3 activation pathways. ( F-G ) AC16 cells that were uninfected (CON) or infected with CVB3 were treated with 11,12-EET, 14,15-EET or TPPU (n=3). Shown are changes in IRF3 phosphorylation following the siRNA-mediated down regulation of MDA5 (F), or TLR3 (G). ( H ) Activity of a IFNβ-luciferase reporter construct in HEK293 cells expressing either a control vector (vector), pcMDA5, pcMAVS, pcTBK1 , or pcIRF3-5D and treated with solvent (CON) or 14,15-EET (1 μM) for 24 hours. ( I ) Impact of the siRNA-mediated downregulation of TBK1 on the phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=3). *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001.

Journal: bioRxiv

Article Title: Epoxyeicosatrienoic acids and sEH inhibition prevent cardiac dysfunction in CVB3-induced myocarditis by positively regulating type I interferon signaling

doi: 10.1101/2023.02.03.527086

Figure Lengend Snippet: ( A ) Phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( B ) Dimerization of IRF3 in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( C ) Nuclear translocation of IRF3 in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). GAPDH and LaminA/C were used as cytoplasm and nuclear protein loading controls. ( D ) Immunofluorescence images showing the impact of 14,15-EET and TPPU on the subcellular localization of IRF3 in uninfected (CON) or CVB3-infected AC16 cells; bars =50 μm. ( E ) Scheme showing the two main RNA sensor-induced IRF3 activation pathways. ( F-G ) AC16 cells that were uninfected (CON) or infected with CVB3 were treated with 11,12-EET, 14,15-EET or TPPU (n=3). Shown are changes in IRF3 phosphorylation following the siRNA-mediated down regulation of MDA5 (F), or TLR3 (G). ( H ) Activity of a IFNβ-luciferase reporter construct in HEK293 cells expressing either a control vector (vector), pcMDA5, pcMAVS, pcTBK1 , or pcIRF3-5D and treated with solvent (CON) or 14,15-EET (1 μM) for 24 hours. ( I ) Impact of the siRNA-mediated downregulation of TBK1 on the phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=3). *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001.

Article Snippet: After 48 hours, transfected HEK293 cells were harvested in immunoprecipitation (IP) buffer containing 20 mM Tris (pH7.5), 150 mM NaCl, 1% Triton X-100 with freshly added PMSF, protease inhibitors and phosphatase inhibitors (Boster Biological Tech, Wuhan, China).

Techniques: Phospho-proteomics, Infection, Translocation Assay, Immunofluorescence, Activation Assay, Activity Assay, Luciferase, Construct, Expressing, Control, Plasmid Preparation, Solvent

( A ) Impact of the siRNA-mediated downregulationof GSK3β on the phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( B ) Impact of the EET antagonist; EEZE (1 μM) on the phosphorylation of GSK3β in AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( C ) Co-immunoprecipitation of TBK1 with a GSK3β-Flag fusion protein from HEK293 cells treated with 14,15-EET (1 μM) or TPPU (10 μM) in the absence or presence of EEZE (n=3). ( D ) Impact of the wild-type GSK3β and the Y216F and Y216D GSK3β mutants on the phosphorylation of TBK1 in uninfected and CVB3-infected HEK293 cells (n=3). ( E-F ) Impact of GSK3β mutation alone and in combination with 14,15-EET on the phosphorylation of TBK1 in uninfected and CVB3-infected HEK293 cells (n=3-4). *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001.

Journal: bioRxiv

Article Title: Epoxyeicosatrienoic acids and sEH inhibition prevent cardiac dysfunction in CVB3-induced myocarditis by positively regulating type I interferon signaling

doi: 10.1101/2023.02.03.527086

Figure Lengend Snippet: ( A ) Impact of the siRNA-mediated downregulationof GSK3β on the phosphorylation of IRF3 (on Ser396) in uninfected (CON) or CVB3-infected AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( B ) Impact of the EET antagonist; EEZE (1 μM) on the phosphorylation of GSK3β in AC16 cells treated with 11,12-EET, 14,15-EET or TPPU (n=4). ( C ) Co-immunoprecipitation of TBK1 with a GSK3β-Flag fusion protein from HEK293 cells treated with 14,15-EET (1 μM) or TPPU (10 μM) in the absence or presence of EEZE (n=3). ( D ) Impact of the wild-type GSK3β and the Y216F and Y216D GSK3β mutants on the phosphorylation of TBK1 in uninfected and CVB3-infected HEK293 cells (n=3). ( E-F ) Impact of GSK3β mutation alone and in combination with 14,15-EET on the phosphorylation of TBK1 in uninfected and CVB3-infected HEK293 cells (n=3-4). *p < 0.05; **p < 0.01; ***p < 0.001; ****p < 0.0001.

Article Snippet: After 48 hours, transfected HEK293 cells were harvested in immunoprecipitation (IP) buffer containing 20 mM Tris (pH7.5), 150 mM NaCl, 1% Triton X-100 with freshly added PMSF, protease inhibitors and phosphatase inhibitors (Boster Biological Tech, Wuhan, China).

Techniques: Phospho-proteomics, Infection, Immunoprecipitation, Mutagenesis

FIG. 1. TAK1 regulates Nod2-mediated NF-B activation. A, the dominant negative form of TAK1 (TAK1DN) inhibits NF-B activation induced by Nod2. HEK293T cells were transfected with pCDNA-Nod2 (3 ng) and reporter constructs RSV-KB-Luc and RSV--galactosidase plus the dominant negative forms of TBK1, Ubc13, Rip, or TAK1 (120 ng each) or control vector. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated at least three times with equivalent results. *, p 0.0001 (vector versus TAK1DN). B, the dose effect of TAK1DN on Nod2-mediated NF-B. HEK293T cells were transfected with fixed amounts of pCDNA-Nod2 (3 ng), RSV-KB- Luc, and RSV--galactosidase plus the indicated doses of TAK1DN. The luciferase activity of cells transfected with reporters and Nod2 alone (control) was arbitrarily set at 100, and the percent of inhibition was calculated accordingly. The experiments were performed in triplicate and repeated at least three times with equivalent results.

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 1. TAK1 regulates Nod2-mediated NF-B activation. A, the dominant negative form of TAK1 (TAK1DN) inhibits NF-B activation induced by Nod2. HEK293T cells were transfected with pCDNA-Nod2 (3 ng) and reporter constructs RSV-KB-Luc and RSV--galactosidase plus the dominant negative forms of TBK1, Ubc13, Rip, or TAK1 (120 ng each) or control vector. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated at least three times with equivalent results. *, p 0.0001 (vector versus TAK1DN). B, the dose effect of TAK1DN on Nod2-mediated NF-B. HEK293T cells were transfected with fixed amounts of pCDNA-Nod2 (3 ng), RSV-KB- Luc, and RSV--galactosidase plus the indicated doses of TAK1DN. The luciferase activity of cells transfected with reporters and Nod2 alone (control) was arbitrarily set at 100, and the percent of inhibition was calculated accordingly. The experiments were performed in triplicate and repeated at least three times with equivalent results.

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Activation Assay, Dominant Negative Mutation, Transfection, Construct, Control, Plasmid Preparation, Luciferase, Activity Assay, Inhibition

FIG. 2. Dominant negative form of TAK1 (TAK1DN) inhibits MDP-induced NF-B activation in Nod2-expressing cells. HEK293T cells were transfected with pCDNA-Nod2 (5 ng) and reporter constructs plus the indicated amounts of TAK1DN or control vector. Cells were stimulated with MDP (100 ng/ml) 8 h after transfection. Luciferase activity was determined 16 h after stimulation and normal- ized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated three times with equivalent re- sults. *, p 0.05.

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 2. Dominant negative form of TAK1 (TAK1DN) inhibits MDP-induced NF-B activation in Nod2-expressing cells. HEK293T cells were transfected with pCDNA-Nod2 (5 ng) and reporter constructs plus the indicated amounts of TAK1DN or control vector. Cells were stimulated with MDP (100 ng/ml) 8 h after transfection. Luciferase activity was determined 16 h after stimulation and normal- ized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated three times with equivalent re- sults. *, p 0.05.

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Dominant Negative Mutation, Activation Assay, Expressing, Transfection, Construct, Control, Plasmid Preparation, Luciferase, Activity Assay

FIG. 3. Nod2 interacts with TAK1. A, Nod2 coimmunoprecipitates with TAK1. HEK293T cells were cotransfected with plasmid pCMV-HA- TAK1 (4 g) plus 4 g of DNA pLPCX-FLAG-Nod2, control vector pLPCX-FLAG, or pLPCX-FLAG-LRR. Immunoprecipitations (IP) were performed with anti-HA antibodies and subjected to Western blot (IB) analysis using anti-FLAG antibodies to detect FLAG-Nod2 or FLAG-LRR (left). Immunoprecipitations were also performed using anti-FLAG antibodies and subjected to Western blot analysis using anti-HA antibodies to detect TAK1 (right). All experiments were repeated three times with equivalent results. B, coprecipitation of endogenous TAK1 and Nod2. LS174T and THP-1 cell lysates were prepared as described under “Experimental Procedures.” Immunoprecipitations were performed with anti-Nod2 antibodies or control Ig and subjected to Western blot analysis using anti-TAK1 antibodies (top panel). The membranes were reprobed with anti-Nod2 (middle panel). Aliquots of cell lysates were immunoblotted with anti-TAK1 (bottom panel). C, the LRR region of Nod2 interacts with TAK1. Full-length TAK1 translated in vitro and labeled with 35S was incubated with GSTLRR fusion protein, GSTCARD, or GST protein. Input TAK1 indicates 1/10 of 35S-labeled protein used in each GST pull-down assay. All experiments were repeated two times with equivalent results. D, the N-terminal of TAK1 interacts with the LRR region of Nod2. Full-length (FL) and truncated forms of TAK1 (aa 1–303, 1–403, and 286–632) were generated by in vitro transcription and translation and incubated with GSTLRR or GST protein. Input TAK1 indicates 1/10 of 35S-labeled protein used in each GST pull-down assay. All experiments were repeated three times with equivalent results.

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 3. Nod2 interacts with TAK1. A, Nod2 coimmunoprecipitates with TAK1. HEK293T cells were cotransfected with plasmid pCMV-HA- TAK1 (4 g) plus 4 g of DNA pLPCX-FLAG-Nod2, control vector pLPCX-FLAG, or pLPCX-FLAG-LRR. Immunoprecipitations (IP) were performed with anti-HA antibodies and subjected to Western blot (IB) analysis using anti-FLAG antibodies to detect FLAG-Nod2 or FLAG-LRR (left). Immunoprecipitations were also performed using anti-FLAG antibodies and subjected to Western blot analysis using anti-HA antibodies to detect TAK1 (right). All experiments were repeated three times with equivalent results. B, coprecipitation of endogenous TAK1 and Nod2. LS174T and THP-1 cell lysates were prepared as described under “Experimental Procedures.” Immunoprecipitations were performed with anti-Nod2 antibodies or control Ig and subjected to Western blot analysis using anti-TAK1 antibodies (top panel). The membranes were reprobed with anti-Nod2 (middle panel). Aliquots of cell lysates were immunoblotted with anti-TAK1 (bottom panel). C, the LRR region of Nod2 interacts with TAK1. Full-length TAK1 translated in vitro and labeled with 35S was incubated with GSTLRR fusion protein, GSTCARD, or GST protein. Input TAK1 indicates 1/10 of 35S-labeled protein used in each GST pull-down assay. All experiments were repeated two times with equivalent results. D, the N-terminal of TAK1 interacts with the LRR region of Nod2. Full-length (FL) and truncated forms of TAK1 (aa 1–303, 1–403, and 286–632) were generated by in vitro transcription and translation and incubated with GSTLRR or GST protein. Input TAK1 indicates 1/10 of 35S-labeled protein used in each GST pull-down assay. All experiments were repeated three times with equivalent results.

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Plasmid Preparation, Control, Western Blot, In Vitro, Labeling, Incubation, Pull Down Assay, Generated

FIG. 5. Nod2 does not induce TAK1 activation. HEK293T cells were transfected with equal amounts of the indicated expression con- structs: control vector and TAK1 (leftmost lane), Nod2 and HA-TAK1 (3 g) (middle lane), TAB1 and TAK1 (rightmost lane). TAK1 protein was immunoprecipitated with anti-TAK1 antibody and subjected to phos- phorylation as described under “Experimental Procedures.” All experi- ments were repeated two times with equivalent results.

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 5. Nod2 does not induce TAK1 activation. HEK293T cells were transfected with equal amounts of the indicated expression con- structs: control vector and TAK1 (leftmost lane), Nod2 and HA-TAK1 (3 g) (middle lane), TAB1 and TAK1 (rightmost lane). TAK1 protein was immunoprecipitated with anti-TAK1 antibody and subjected to phos- phorylation as described under “Experimental Procedures.” All experi- ments were repeated two times with equivalent results.

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Activation Assay, Transfection, Expressing, Control, Plasmid Preparation, Immunoprecipitation

FIG. 6. Coexpression of Nod2 and TAK1 does not exert a syn- ergistic effect on NF-B activation. HEK293T cells were trans- fected with Nod2 (5 ng) alone, TAK1 (25 ng), and TAB1 (2 ng) together, TAK1 (25 ng) and TAB1 (2 ng) plus Nod2 (5 ng), or TAK1 (25 ng) and TAB1 (2 ng) plus control vector (5 ng). Expression plasmids RSV-KB- Luc and RSV--galactosidase were included in each transfection. Lu- ciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and were repeated three times with equivalent results.

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 6. Coexpression of Nod2 and TAK1 does not exert a syn- ergistic effect on NF-B activation. HEK293T cells were trans- fected with Nod2 (5 ng) alone, TAK1 (25 ng), and TAB1 (2 ng) together, TAK1 (25 ng) and TAB1 (2 ng) plus Nod2 (5 ng), or TAK1 (25 ng) and TAB1 (2 ng) plus control vector (5 ng). Expression plasmids RSV-KB- Luc and RSV--galactosidase were included in each transfection. Lu- ciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and were repeated three times with equivalent results.

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Activation Assay, Control, Plasmid Preparation, Expressing, Transfection, Activity Assay

FIG. 7. Nod2 suppresses TAK1-induced NF-B activation. A, TAK1 induces NF-B activation in RICK/ fibroblasts. RICK/ fibroblasts were seeded in 12-well plates (105/well). Reporter constructs with TAK1 (25 ng) and TAB1 (2 ng) and without (none) were cotransfected into cells by FuGENE 6. B, TAK1 activates NF-B equally well in both RICK/ and wild-type fibroblasts. RICK wild type (wild, shaded bar) and Rick/ (null, solid bar) fibroblasts were transfected with the indicated amounts of TAK1 and TAB1, along with the reporter constructs. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated two times with equivalent results. C, Nod2 inhibits TAK1-induced NF-B activation in RICK/ fibroblasts. RICK/ fibroblasts were transfected with Nod2 alone (LPCX-Nod2, 50 ng) or with TAK1 (25 ng) and TAB1 (2 ng) plus the indicated amounts of Nod2 (LPCX-Nod2, 0, 25, 50 ng) or control vector (LPCX, 25, 50 ng). Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated three times with equivalent results. *, p 0.01 (Nod2 versus control vector). D, Nod2 siRNA efficiently blocks expression of transfected Nod2. HEK293T cells were transiently transfected with Nod2-specific siRNA or control siRNA, and 24 h later, they were transfected with FLAG-Nod2. Cell lysates were prepared 24 h after the Nod2 transfection and subjected to SDS-PAGE and immunoblotting by anti-FLAG antibody. The arrows indicate the Nod2 and nonspecific (NS) bands. E, expression of Nod2 siRNA suppresses endogenous NF-B activity. LS174T cells were transfected with either Nod2-specific siRNA or control siRNA plus the reporter constructs. Luciferase activity was determined 24 h after transfection as in C. All experiments were performed in triplicate and repeated three times with equivalent results. *, p 0.05. F, expression of Nod2 siRNA potentiates TAK1-induced NF-B activation. LS174T cells were transfected with Nod2-specific siRNA or control siRNA. These cells were then transfected with TAK1 (25 ng), TAB1 (2 ng), and the reporter constructs 24 h after the siRNA transfection. Luciferase activity was analyzed as in C. The results represent the mean of two independent experiments. Increase in NF-B activation in the control siRNA group was arbitrarily set at 1.

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 7. Nod2 suppresses TAK1-induced NF-B activation. A, TAK1 induces NF-B activation in RICK/ fibroblasts. RICK/ fibroblasts were seeded in 12-well plates (105/well). Reporter constructs with TAK1 (25 ng) and TAB1 (2 ng) and without (none) were cotransfected into cells by FuGENE 6. B, TAK1 activates NF-B equally well in both RICK/ and wild-type fibroblasts. RICK wild type (wild, shaded bar) and Rick/ (null, solid bar) fibroblasts were transfected with the indicated amounts of TAK1 and TAB1, along with the reporter constructs. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated two times with equivalent results. C, Nod2 inhibits TAK1-induced NF-B activation in RICK/ fibroblasts. RICK/ fibroblasts were transfected with Nod2 alone (LPCX-Nod2, 50 ng) or with TAK1 (25 ng) and TAB1 (2 ng) plus the indicated amounts of Nod2 (LPCX-Nod2, 0, 25, 50 ng) or control vector (LPCX, 25, 50 ng). Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated three times with equivalent results. *, p 0.01 (Nod2 versus control vector). D, Nod2 siRNA efficiently blocks expression of transfected Nod2. HEK293T cells were transiently transfected with Nod2-specific siRNA or control siRNA, and 24 h later, they were transfected with FLAG-Nod2. Cell lysates were prepared 24 h after the Nod2 transfection and subjected to SDS-PAGE and immunoblotting by anti-FLAG antibody. The arrows indicate the Nod2 and nonspecific (NS) bands. E, expression of Nod2 siRNA suppresses endogenous NF-B activity. LS174T cells were transfected with either Nod2-specific siRNA or control siRNA plus the reporter constructs. Luciferase activity was determined 24 h after transfection as in C. All experiments were performed in triplicate and repeated three times with equivalent results. *, p 0.05. F, expression of Nod2 siRNA potentiates TAK1-induced NF-B activation. LS174T cells were transfected with Nod2-specific siRNA or control siRNA. These cells were then transfected with TAK1 (25 ng), TAB1 (2 ng), and the reporter constructs 24 h after the siRNA transfection. Luciferase activity was analyzed as in C. The results represent the mean of two independent experiments. Increase in NF-B activation in the control siRNA group was arbitrarily set at 1.

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Activation Assay, Construct, Transfection, Luciferase, Activity Assay, Control, Plasmid Preparation, Expressing, SDS Page, Western Blot

FIG. 8. Inhibitory effect of the LRR region on TAK1-induced NF-B acti- vation. A, the LRR region of Nod2 sup- presses TAK1-induced NF-B activation. HEK293T cells were transfected with TAK1 (25 ng) and TAB1 (2 ng) plus LRR in the amounts indicated. HEK293T cells transfected with identical amounts of TAK1 and TAB1 and control vector were used as the control. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galacto- sidase activity. All experiments were per- formed in triplicate and repeated three times with equivalent results. B, mutant LRR is less effective than wild-type LRR at suppressing TAK1-mediated NF-B ac- tivation. HEK293T cells were transfected with TAK1 (25 ng) and TAB1 (2 ng) plus wild-type or mutant LRR in the amounts indicated (left). Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated three times with equivalent results. *, p 0.05 (LRR versus mutant LRR). A cell lysate fraction used for the luciferase assay was sub- jected to Western blot analysis to deter- mine the expression of TAK1, TAB1, and LRR, both wild type and mutant (right).

Journal: Journal of Biological Chemistry

Article Title: Reciprocal Cross-talk between Nod2 and TAK1 Signaling Pathways

doi: 10.1074/jbc.m400682200

Figure Lengend Snippet: FIG. 8. Inhibitory effect of the LRR region on TAK1-induced NF-B acti- vation. A, the LRR region of Nod2 sup- presses TAK1-induced NF-B activation. HEK293T cells were transfected with TAK1 (25 ng) and TAB1 (2 ng) plus LRR in the amounts indicated. HEK293T cells transfected with identical amounts of TAK1 and TAB1 and control vector were used as the control. Luciferase activity was determined 24 h after transfection and normalized on the basis of -galacto- sidase activity. All experiments were per- formed in triplicate and repeated three times with equivalent results. B, mutant LRR is less effective than wild-type LRR at suppressing TAK1-mediated NF-B ac- tivation. HEK293T cells were transfected with TAK1 (25 ng) and TAB1 (2 ng) plus wild-type or mutant LRR in the amounts indicated (left). Luciferase activity was determined 24 h after transfection and normalized on the basis of -galactosidase activity. All experiments were performed in triplicate and repeated three times with equivalent results. *, p 0.05 (LRR versus mutant LRR). A cell lysate fraction used for the luciferase assay was sub- jected to Western blot analysis to deter- mine the expression of TAK1, TAB1, and LRR, both wild type and mutant (right).

Article Snippet: Lysates of the HEK293 cells that had been transfected with various expression constructs and HA-TAK1 were immunoprecipitated with anti-TAK1 antibody (Santa Cruz Biotechnology) for 1 h. Immunoprecipitates were incubated for 2 min at 25 °C in 10 l of kinase buffer containing 10 mM Hepes (pH 7.4), 1 mM dithiothreitol, 5 mM MgCl2, and 5 Ci of [ - 32P]ATP (3000 Ci/mmol).

Techniques: Activation Assay, Transfection, Control, Plasmid Preparation, Luciferase, Activity Assay, Mutagenesis, Western Blot, Expressing

Validation of preferential affinity . (a) GO molecular function term significance in the various sets of proteins inferred to bind preferentially one or several subtypes of nucleic acids. We observe the clear separation between molecular functions enriched in inferred DNA- and RNA-binding proteins. Color log-scale: red = P < 1E-15, light yellow = P < 0.01, gray = P ≥ 0.01. (b) Examples of affinity preferences of selected NABPs represented by P -values in the statistical analysis (table on left) and western blots in the experimental validation (right). We note the strong agreement between preferred versus non-preferred affinities in the statistics and the blots. (C20orf72 was purified with a Myc tag in HEK293 cells instead of a specific antibody in HepG2 cells.) (c) Methylation specificity usually correlates with CG specificity, but UHRF1 and YB-1 were specific to mCG only in the statistical analysis (see reported P -values in the table on the left). Experimental validation confirmed their specificity (right); AIM2 was used as a DNA-binding non-specific control.

Journal: Genome Biology

Article Title: Experimental characterization of the human non-sequence-specific nucleic acid interactome

doi: 10.1186/gb-2013-14-7-r81

Figure Lengend Snippet: Validation of preferential affinity . (a) GO molecular function term significance in the various sets of proteins inferred to bind preferentially one or several subtypes of nucleic acids. We observe the clear separation between molecular functions enriched in inferred DNA- and RNA-binding proteins. Color log-scale: red = P < 1E-15, light yellow = P < 0.01, gray = P ≥ 0.01. (b) Examples of affinity preferences of selected NABPs represented by P -values in the statistical analysis (table on left) and western blots in the experimental validation (right). We note the strong agreement between preferred versus non-preferred affinities in the statistics and the blots. (C20orf72 was purified with a Myc tag in HEK293 cells instead of a specific antibody in HepG2 cells.) (c) Methylation specificity usually correlates with CG specificity, but UHRF1 and YB-1 were specific to mCG only in the statistical analysis (see reported P -values in the table on the left). Experimental validation confirmed their specificity (right); AIM2 was used as a DNA-binding non-specific control.

Article Snippet: Myc-tagged C20orf72, AIM2, UHRF1 and YB-1 were overexpressed in HEK293 cells and visualized by immunoblotting using anti-Myc-IRDye800 (Rockland Gilbertsville, PA, USA ).

Techniques: Biomarker Discovery, RNA Binding Assay, Western Blot, Purification, Methylation, Binding Assay, Control

A Immunofluorescence analysis of PD-1 binding to PD-L1 on RKO cells treated with TER. RKO cells were incubated with recombinant human PD-1 Alexa 647 protein and treated with the indicated concentrations of TER. Red fluorescence represents PD-1 binding; the nuclei were stained with Hoechst (blue). B Competitive ELISA assay measuring the inhibition of PD-1/PD-L1 interaction by TER. The binding between PD-1 and PD-L1 in the presence of increasing concentrations of TER was assessed. C The 3D structure of TER (upper panel) and its predicted binding pose within the active site of PD-1 (PDB ID: 3RRQ, lower panel). The key interacting residues include PHE56, SER57, ASN58, THR59, SER62, PHE63, PHE82, PRO83, GLN99, ASN102, GLY103, and ARG104. D Protein–ligand complex showing TER docked to PD-1, with the binding pocket highlighted. E Surface plasmon resonance (SPR) analysis showing the binding of TER to PD-1. αPD-L1 was used as a positive control. *** p < 0.001 and **** p < 0.0001 compared with the respective control.

Journal: Oncogenesis

Article Title: Teriflunomide modulates the PD-1/PD-L1 axis and enhances antitumor immunity in colorectal cancer

doi: 10.1038/s41389-026-00607-3

Figure Lengend Snippet: A Immunofluorescence analysis of PD-1 binding to PD-L1 on RKO cells treated with TER. RKO cells were incubated with recombinant human PD-1 Alexa 647 protein and treated with the indicated concentrations of TER. Red fluorescence represents PD-1 binding; the nuclei were stained with Hoechst (blue). B Competitive ELISA assay measuring the inhibition of PD-1/PD-L1 interaction by TER. The binding between PD-1 and PD-L1 in the presence of increasing concentrations of TER was assessed. C The 3D structure of TER (upper panel) and its predicted binding pose within the active site of PD-1 (PDB ID: 3RRQ, lower panel). The key interacting residues include PHE56, SER57, ASN58, THR59, SER62, PHE63, PHE82, PRO83, GLN99, ASN102, GLY103, and ARG104. D Protein–ligand complex showing TER docked to PD-1, with the binding pocket highlighted. E Surface plasmon resonance (SPR) analysis showing the binding of TER to PD-1. αPD-L1 was used as a positive control. *** p < 0.001 and **** p < 0.0001 compared with the respective control.

Article Snippet: Recombinant Jurkat-T cells expressing human PD-1 and an NFAT reporter gene (hPD-1/NFAT Jurkat-T cells, #60535) and recombinant CHO-K1 cells expressing human PD-L1 and a T-cell receptor (TCR) activator (hPD-L1/TCR CHO-K1 cells, #60536) were obtained from BPS Bioscience.

Techniques: Immunofluorescence, Binding Assay, Incubation, Recombinant, Fluorescence, Staining, Competitive ELISA, Inhibition, SPR Assay, Positive Control, Control

A The viability of hPD-1 Jurkat-T cells and hPD-L1 CHO cells following treatment with the indicated concentrations of TER for 24 h. B Luciferase activity measured using a PD-1/PD-L1 blockade bioassay. hPD-1 Jurkat-T cells (effector cells) were co-cultured with hPD-L1-expressing aAPC/CHO-K1 cells (target cells) in the presence of indicated concentrations of TER. The luminescence signal indicates the level of TCR signaling activation. αPD-L1 was used as a positive control. * <0.05, ** p < 0.01, *** p < 0.001, and **** p < 0.0001 compared with the respective control.

Journal: Oncogenesis

Article Title: Teriflunomide modulates the PD-1/PD-L1 axis and enhances antitumor immunity in colorectal cancer

doi: 10.1038/s41389-026-00607-3

Figure Lengend Snippet: A The viability of hPD-1 Jurkat-T cells and hPD-L1 CHO cells following treatment with the indicated concentrations of TER for 24 h. B Luciferase activity measured using a PD-1/PD-L1 blockade bioassay. hPD-1 Jurkat-T cells (effector cells) were co-cultured with hPD-L1-expressing aAPC/CHO-K1 cells (target cells) in the presence of indicated concentrations of TER. The luminescence signal indicates the level of TCR signaling activation. αPD-L1 was used as a positive control. * <0.05, ** p < 0.01, *** p < 0.001, and **** p < 0.0001 compared with the respective control.

Article Snippet: Recombinant Jurkat-T cells expressing human PD-1 and an NFAT reporter gene (hPD-1/NFAT Jurkat-T cells, #60535) and recombinant CHO-K1 cells expressing human PD-L1 and a T-cell receptor (TCR) activator (hPD-L1/TCR CHO-K1 cells, #60536) were obtained from BPS Bioscience.

Techniques: Luciferase, Activity Assay, Bioassay, Cell Culture, Expressing, Activation Assay, Positive Control, Control

Cellular activity of JPC0661 . A , cell viability of JPC0661 comm and HTS10307 assessed in the range of 0 to 20 μM after 24 h ( top ) and 72 h ( bottom ) in neural progenitor cells (NPCs) using the CellTiter-Glo viability assay. Cell viability measures are normalized to the negative control containing no compound but 0.6% DMSO. Dotted lines indicate 100% cell viability. The mean of n replicates is shown for 24 h (n = 3) and 72 h (n = 2) with error bars indicating the SEM. B , stability of JPC0661 comm and HTS10307 in mouse liver microsomes. C and D , effects of JPC0661 comm (0–100 μM; ( C ) and JPC0661 (0–100 μM; ( D ) on AP-1-driven luciferase activity in AP-1-luc HEK293 cells. The dose-dependent activation of the AP-1-driven luciferase reporter was measured based on changes in the luciferase signal and expressed as relative fluorescence units (RFUs). Each compound was tested twice (n = 4 wells per experiment; total n = 6–8 wells for JPC0661 comm and n = 7–8 wells for JPC0661 per concentration), with results normalized to the luciferase signals of blank wells from corresponding experiments (n = 8 wells). Nonlinear regression using a three-parameter model was applied to fit the luciferase signal and calculate IC 50 values, which are reported with a 95% confidence interval (CI), and data points are presented as the mean ± SEM. E , effect of serially diluted JPC0661 (0.003–100 μM) on the viability of AP-1-luc HEK293 cells using the Celltiter-Glo viability assay (2 h). Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 7 wells). Data points are presented as the mean ± SEM, with a total n = 10 to 12 wells per concentration. F , effect of JPC0661 (at doses 12.5, 25, and 50 μM) on the viability of Neuro 2A cells (72 h) using the Celltiter-Glo viability assay to assess potential toxicity in mouse neuronal cells. Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 8 wells). Data points are presented as the mean ± SEM, with a total n = 12 wells per concentration. AP-1, activator protein 1; DMSO, dimethyl sulfoxide.

Journal: The Journal of Biological Chemistry

Article Title: Discovery of small molecules and a druggable groove that regulate DNA binding and release of the AP-1 transcription factor ΔFOSB

doi: 10.1016/j.jbc.2025.111080

Figure Lengend Snippet: Cellular activity of JPC0661 . A , cell viability of JPC0661 comm and HTS10307 assessed in the range of 0 to 20 μM after 24 h ( top ) and 72 h ( bottom ) in neural progenitor cells (NPCs) using the CellTiter-Glo viability assay. Cell viability measures are normalized to the negative control containing no compound but 0.6% DMSO. Dotted lines indicate 100% cell viability. The mean of n replicates is shown for 24 h (n = 3) and 72 h (n = 2) with error bars indicating the SEM. B , stability of JPC0661 comm and HTS10307 in mouse liver microsomes. C and D , effects of JPC0661 comm (0–100 μM; ( C ) and JPC0661 (0–100 μM; ( D ) on AP-1-driven luciferase activity in AP-1-luc HEK293 cells. The dose-dependent activation of the AP-1-driven luciferase reporter was measured based on changes in the luciferase signal and expressed as relative fluorescence units (RFUs). Each compound was tested twice (n = 4 wells per experiment; total n = 6–8 wells for JPC0661 comm and n = 7–8 wells for JPC0661 per concentration), with results normalized to the luciferase signals of blank wells from corresponding experiments (n = 8 wells). Nonlinear regression using a three-parameter model was applied to fit the luciferase signal and calculate IC 50 values, which are reported with a 95% confidence interval (CI), and data points are presented as the mean ± SEM. E , effect of serially diluted JPC0661 (0.003–100 μM) on the viability of AP-1-luc HEK293 cells using the Celltiter-Glo viability assay (2 h). Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 7 wells). Data points are presented as the mean ± SEM, with a total n = 10 to 12 wells per concentration. F , effect of JPC0661 (at doses 12.5, 25, and 50 μM) on the viability of Neuro 2A cells (72 h) using the Celltiter-Glo viability assay to assess potential toxicity in mouse neuronal cells. Cell viability was normalized to the DMSO control, which contained 0.5% DMSO but no compound (n = 8 wells). Data points are presented as the mean ± SEM, with a total n = 12 wells per concentration. AP-1, activator protein 1; DMSO, dimethyl sulfoxide.

Article Snippet: The AP-1-luciferase reporter HEK293 cell line was obtained from BPS Bioscience and maintained in growth medium 1B (BPS Bioscience) supplemented with 10% fetal bovine serum (FBS; Invitrogen) and 1% penicillin–streptomycin (Hyclone) under standard incubation conditions of 37 °C with 5% CO 2 .

Techniques: Activity Assay, Viability Assay, Negative Control, Luciferase, Activation Assay, Fluorescence, Concentration Assay, Control

Validation of JPC0661 as an inhibitor of ΔFOSB . A , a panel of JPC0661 analogs was designed to probe the role of the sulfonic acid group and the amino-pyrazolone group. B , the table summarizing the JPC0661 analogs tested in AP-1-reporter assays using AP-1-luc HEK293 cells, yielding cell-based IC 50 values and FP-DRC assays. Lower IC 50 values are marked with more plus signs (+) and indicate higher activity. The plots from the FP-DRC and cell-based DRC assays for these compounds are shown in . C , ΔFOSB–JUND bZIP incubated with compounds (0.5 mM) with 100 μM diamide (“ ox ,” oxidized) or without diamide (“ red ,” reduced) and assessed by SDS-PAGE (with or without reducing agent in the loading buffer). D , ΔFOSB–JUND bZIP protein incubated with compounds (0.5 mM) with no diamide (“ red ”) or protein alone (no compound) incubated with diamide (“ ox ”) as a control and then assessed by SDS-PAGE (with or without reducing agent in the loading buffer). In ( C ) and ( D ), “cntrl” denotes the ΔFOSB–JUND bZIP protein in the absence of compound. AP-1, activator protein 1; bZIP, basic leucine zipper; FP-DRC, fluorescence polarization–dose–response curve; HEK293, human embryonic kidney 293 cell line.

Journal: The Journal of Biological Chemistry

Article Title: Discovery of small molecules and a druggable groove that regulate DNA binding and release of the AP-1 transcription factor ΔFOSB

doi: 10.1016/j.jbc.2025.111080

Figure Lengend Snippet: Validation of JPC0661 as an inhibitor of ΔFOSB . A , a panel of JPC0661 analogs was designed to probe the role of the sulfonic acid group and the amino-pyrazolone group. B , the table summarizing the JPC0661 analogs tested in AP-1-reporter assays using AP-1-luc HEK293 cells, yielding cell-based IC 50 values and FP-DRC assays. Lower IC 50 values are marked with more plus signs (+) and indicate higher activity. The plots from the FP-DRC and cell-based DRC assays for these compounds are shown in . C , ΔFOSB–JUND bZIP incubated with compounds (0.5 mM) with 100 μM diamide (“ ox ,” oxidized) or without diamide (“ red ,” reduced) and assessed by SDS-PAGE (with or without reducing agent in the loading buffer). D , ΔFOSB–JUND bZIP protein incubated with compounds (0.5 mM) with no diamide (“ red ”) or protein alone (no compound) incubated with diamide (“ ox ”) as a control and then assessed by SDS-PAGE (with or without reducing agent in the loading buffer). In ( C ) and ( D ), “cntrl” denotes the ΔFOSB–JUND bZIP protein in the absence of compound. AP-1, activator protein 1; bZIP, basic leucine zipper; FP-DRC, fluorescence polarization–dose–response curve; HEK293, human embryonic kidney 293 cell line.

Article Snippet: The AP-1-luciferase reporter HEK293 cell line was obtained from BPS Bioscience and maintained in growth medium 1B (BPS Bioscience) supplemented with 10% fetal bovine serum (FBS; Invitrogen) and 1% penicillin–streptomycin (Hyclone) under standard incubation conditions of 37 °C with 5% CO 2 .

Techniques: Biomarker Discovery, Activity Assay, Incubation, SDS Page, Control, Fluorescence