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ub e2  (R&D Systems)


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    Structured Review

    R&D Systems ub e2
    DTX2 is the E3 ligase for ADP-ribosylated AR. A, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) in PC3-AR cells with siRNA knockdowns (total 4-day knockdown) of the selected relevant E3 ligases (DTX1, DTX2, DTX4, HUWE1, RNF146, SPOP, TRIP12 and UBR5), treated with R1881 for 21 hr before cell harvest. The AR/TUB and AR-ADPr/AR ratios for each lane are presented below the blot. B, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR cells with siDTX2 knockdown, treated with R1881 for times indicated on the panel. The AR-ADPr/AR ratio for each lane is presented below the blot. C, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL and siDTX2 cell extracts and AF1521 bound fraction. Cell extracts from PC3-AR siCTRL and siDTX2 cells treated with R1881 for 6 hr were combined with AF1521 beads for the enrichment of ADP-ribosylated proteins. D, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL/siDTX2 and PC3-AR HA- PARP7 cell extracts and GSH beads bound fraction. Cell extracts from PC3-AR siCTRL/siDTX2 and PC3-AR HA-PARP7 cells treated with R1881 for 6 hr were combined with GSH beads loaded with GST- DTX2-RD or GST-DTX2-RD mut for the enrichment of proteins recognized by DTX2 DTC domain. E, Diagrams of DTX2-RD and DTX2-RD mut . Three loss of function mutations in the DTC domain of DTX2-RD mut (S568A, H582A, and H594A) are indicated with red asterisk. F, Schematic diagram of AR protein preparation as a substrate for biochemical reactions. Cell extracts from PC3-AR siDTX2 cells treated (left) or untreated (right) with R1881 for 6 hr were combined with M2 beads for immunoprecipitation. The purified protein from the preparation with R1881 treatment was used for experiments in panels G and H, and the purified protein from the preparation without R1881 treatment was used only in panel H. G, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (panel F, left). The ubiquitylated products (Ub product, red bracket) are labeled for Flag-AR and AR-ADPr detection. All reactions contained AR-ADPr (R1881 treated samples), ATP, Ub, E1 and <t>E2.</t> For DTX2-RD status (dropout or DTX2-RD mut ), refer to labels. H, Immunoblot detection of Flag-AR, AR-ADPr, and GST-DTX2-RD from the ubiquitylation assay on AR protein prepared with siDTX2 transfection, and with or without R1881 treatment (panel F). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The dropouts of the ubiquitylation assay components (Ub, E1, E2, and 30°C incubation) are indicated on the labels. The T7-Ubiquitin (T7-Ub) was detected by Ponceau staining. Lane numbers are indicated below the blot. I, Bar plots showing the results of an RT-qPCR experiment in PC3-AR siCTRL/siDTX2 cells untreated (grey), treated with R1881 (purple), and cotreated with R1881 and RBN2397 (blue). The y-axis represents the relative expression normalized to the GUS housekeeping gene, and the x-axis represents the siRNA used. The p-values from the Welch’s t-test for comparisons between corresponding conditions in siCTRL and siDTX2 are indicated on the plots. Error bars represent standard deviation (n = 3; n represents number of biological replicates).
    Ub E2, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 78 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/ub e2/product/R&D Systems
    Average 93 stars, based on 78 article reviews
    ub e2 - by Bioz Stars, 2026-02
    93/100 stars

    Images

    1) Product Images from "Parp7 generates an ADP-ribosyl degron that controls negative feedback of androgen signaling"

    Article Title: Parp7 generates an ADP-ribosyl degron that controls negative feedback of androgen signaling

    Journal: bioRxiv

    doi: 10.1101/2024.12.21.629908

    DTX2 is the E3 ligase for ADP-ribosylated AR. A, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) in PC3-AR cells with siRNA knockdowns (total 4-day knockdown) of the selected relevant E3 ligases (DTX1, DTX2, DTX4, HUWE1, RNF146, SPOP, TRIP12 and UBR5), treated with R1881 for 21 hr before cell harvest. The AR/TUB and AR-ADPr/AR ratios for each lane are presented below the blot. B, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR cells with siDTX2 knockdown, treated with R1881 for times indicated on the panel. The AR-ADPr/AR ratio for each lane is presented below the blot. C, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL and siDTX2 cell extracts and AF1521 bound fraction. Cell extracts from PC3-AR siCTRL and siDTX2 cells treated with R1881 for 6 hr were combined with AF1521 beads for the enrichment of ADP-ribosylated proteins. D, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL/siDTX2 and PC3-AR HA- PARP7 cell extracts and GSH beads bound fraction. Cell extracts from PC3-AR siCTRL/siDTX2 and PC3-AR HA-PARP7 cells treated with R1881 for 6 hr were combined with GSH beads loaded with GST- DTX2-RD or GST-DTX2-RD mut for the enrichment of proteins recognized by DTX2 DTC domain. E, Diagrams of DTX2-RD and DTX2-RD mut . Three loss of function mutations in the DTC domain of DTX2-RD mut (S568A, H582A, and H594A) are indicated with red asterisk. F, Schematic diagram of AR protein preparation as a substrate for biochemical reactions. Cell extracts from PC3-AR siDTX2 cells treated (left) or untreated (right) with R1881 for 6 hr were combined with M2 beads for immunoprecipitation. The purified protein from the preparation with R1881 treatment was used for experiments in panels G and H, and the purified protein from the preparation without R1881 treatment was used only in panel H. G, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (panel F, left). The ubiquitylated products (Ub product, red bracket) are labeled for Flag-AR and AR-ADPr detection. All reactions contained AR-ADPr (R1881 treated samples), ATP, Ub, E1 and E2. For DTX2-RD status (dropout or DTX2-RD mut ), refer to labels. H, Immunoblot detection of Flag-AR, AR-ADPr, and GST-DTX2-RD from the ubiquitylation assay on AR protein prepared with siDTX2 transfection, and with or without R1881 treatment (panel F). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The dropouts of the ubiquitylation assay components (Ub, E1, E2, and 30°C incubation) are indicated on the labels. The T7-Ubiquitin (T7-Ub) was detected by Ponceau staining. Lane numbers are indicated below the blot. I, Bar plots showing the results of an RT-qPCR experiment in PC3-AR siCTRL/siDTX2 cells untreated (grey), treated with R1881 (purple), and cotreated with R1881 and RBN2397 (blue). The y-axis represents the relative expression normalized to the GUS housekeeping gene, and the x-axis represents the siRNA used. The p-values from the Welch’s t-test for comparisons between corresponding conditions in siCTRL and siDTX2 are indicated on the plots. Error bars represent standard deviation (n = 3; n represents number of biological replicates).
    Figure Legend Snippet: DTX2 is the E3 ligase for ADP-ribosylated AR. A, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) in PC3-AR cells with siRNA knockdowns (total 4-day knockdown) of the selected relevant E3 ligases (DTX1, DTX2, DTX4, HUWE1, RNF146, SPOP, TRIP12 and UBR5), treated with R1881 for 21 hr before cell harvest. The AR/TUB and AR-ADPr/AR ratios for each lane are presented below the blot. B, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR cells with siDTX2 knockdown, treated with R1881 for times indicated on the panel. The AR-ADPr/AR ratio for each lane is presented below the blot. C, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL and siDTX2 cell extracts and AF1521 bound fraction. Cell extracts from PC3-AR siCTRL and siDTX2 cells treated with R1881 for 6 hr were combined with AF1521 beads for the enrichment of ADP-ribosylated proteins. D, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL/siDTX2 and PC3-AR HA- PARP7 cell extracts and GSH beads bound fraction. Cell extracts from PC3-AR siCTRL/siDTX2 and PC3-AR HA-PARP7 cells treated with R1881 for 6 hr were combined with GSH beads loaded with GST- DTX2-RD or GST-DTX2-RD mut for the enrichment of proteins recognized by DTX2 DTC domain. E, Diagrams of DTX2-RD and DTX2-RD mut . Three loss of function mutations in the DTC domain of DTX2-RD mut (S568A, H582A, and H594A) are indicated with red asterisk. F, Schematic diagram of AR protein preparation as a substrate for biochemical reactions. Cell extracts from PC3-AR siDTX2 cells treated (left) or untreated (right) with R1881 for 6 hr were combined with M2 beads for immunoprecipitation. The purified protein from the preparation with R1881 treatment was used for experiments in panels G and H, and the purified protein from the preparation without R1881 treatment was used only in panel H. G, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (panel F, left). The ubiquitylated products (Ub product, red bracket) are labeled for Flag-AR and AR-ADPr detection. All reactions contained AR-ADPr (R1881 treated samples), ATP, Ub, E1 and E2. For DTX2-RD status (dropout or DTX2-RD mut ), refer to labels. H, Immunoblot detection of Flag-AR, AR-ADPr, and GST-DTX2-RD from the ubiquitylation assay on AR protein prepared with siDTX2 transfection, and with or without R1881 treatment (panel F). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The dropouts of the ubiquitylation assay components (Ub, E1, E2, and 30°C incubation) are indicated on the labels. The T7-Ubiquitin (T7-Ub) was detected by Ponceau staining. Lane numbers are indicated below the blot. I, Bar plots showing the results of an RT-qPCR experiment in PC3-AR siCTRL/siDTX2 cells untreated (grey), treated with R1881 (purple), and cotreated with R1881 and RBN2397 (blue). The y-axis represents the relative expression normalized to the GUS housekeeping gene, and the x-axis represents the siRNA used. The p-values from the Welch’s t-test for comparisons between corresponding conditions in siCTRL and siDTX2 are indicated on the plots. Error bars represent standard deviation (n = 3; n represents number of biological replicates).

    Techniques Used: Western Blot, Knockdown, Immunoprecipitation, Purification, Ubiquitin Assay, Labeling, Transfection, Incubation, Staining, Quantitative RT-PCR, Expressing, Standard Deviation

    DTX2 conjugates ubiquitin to AR through ADP-ribose A, Immunoblot detection of Fluorescein (FITC) and T7-Ubiquitin (T7-Ub) from the ubiquitylation assay on FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides. The labels indicate from the top: the substrate used (FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay (all reactions contained ATP, T7-Ub, E1 and E2, for DTX2-RD dropout, refer to labels), and the post- ubiquitylation assay treatments (NUDT16 or Mg 2+ buffer). Lane numbers are indicated below the blot. B, Schematic diagram representing FITC-AR(C284 ADPr ) peptide conjugated to ubiquitin (Ub). Indicated with red scissors are bonds within the ADP-ribose structure cleaved by NUDT16 and USP2. C, Schematic of the ubiquitylation assay workflow for panels D and E. D, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) from the ubiquitylation assay on AR protein prepared with siDTX2 transfection and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post-ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. E, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post- ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. F, Scatter plots depicting the correlation between PARP7 (left) or DTX2 (right) mRNA expression and the response to androgen pathway activity calculated by PARADIGM in primary prostate cancer patients from TCGA-PRAD cohort. Each dot represents one patient (n = 478, n represents number of patients). Pearson correlation coefficients and corresponding p-values are indicated on the plots. G, Kaplan-Meier plot depicting progression-free interval (PFI) in primary prostate cancer patients from the TCGA-PRAD cohort, stratified by PARP7 expression levels. The red line represents patients with high PARP7 expression (top 25%), and the green line represents patients with low PARP7 expression (bottom 25%). The X-axis represents time (days), and the Y-axis represents the progression-free interval probability. The interval distributions were compared using the log-rank test, with the p-value indicating statistical significance. Dotted lines represent the 95% confidence interval.
    Figure Legend Snippet: DTX2 conjugates ubiquitin to AR through ADP-ribose A, Immunoblot detection of Fluorescein (FITC) and T7-Ubiquitin (T7-Ub) from the ubiquitylation assay on FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides. The labels indicate from the top: the substrate used (FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay (all reactions contained ATP, T7-Ub, E1 and E2, for DTX2-RD dropout, refer to labels), and the post- ubiquitylation assay treatments (NUDT16 or Mg 2+ buffer). Lane numbers are indicated below the blot. B, Schematic diagram representing FITC-AR(C284 ADPr ) peptide conjugated to ubiquitin (Ub). Indicated with red scissors are bonds within the ADP-ribose structure cleaved by NUDT16 and USP2. C, Schematic of the ubiquitylation assay workflow for panels D and E. D, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) from the ubiquitylation assay on AR protein prepared with siDTX2 transfection and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post-ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. E, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post- ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. F, Scatter plots depicting the correlation between PARP7 (left) or DTX2 (right) mRNA expression and the response to androgen pathway activity calculated by PARADIGM in primary prostate cancer patients from TCGA-PRAD cohort. Each dot represents one patient (n = 478, n represents number of patients). Pearson correlation coefficients and corresponding p-values are indicated on the plots. G, Kaplan-Meier plot depicting progression-free interval (PFI) in primary prostate cancer patients from the TCGA-PRAD cohort, stratified by PARP7 expression levels. The red line represents patients with high PARP7 expression (top 25%), and the green line represents patients with low PARP7 expression (bottom 25%). The X-axis represents time (days), and the Y-axis represents the progression-free interval probability. The interval distributions were compared using the log-rank test, with the p-value indicating statistical significance. Dotted lines represent the 95% confidence interval.

    Techniques Used: Western Blot, Ubiquitin Assay, Transfection, Sample Prep, Labeling, Expressing, Activity Assay



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    DTX2 is the E3 ligase for ADP-ribosylated AR. A, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) in PC3-AR cells with siRNA knockdowns (total 4-day knockdown) of the selected relevant E3 ligases (DTX1, DTX2, DTX4, HUWE1, RNF146, SPOP, TRIP12 and UBR5), treated with R1881 for 21 hr before cell harvest. The AR/TUB and AR-ADPr/AR ratios for each lane are presented below the blot. B, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR cells with siDTX2 knockdown, treated with R1881 for times indicated on the panel. The AR-ADPr/AR ratio for each lane is presented below the blot. C, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL and siDTX2 cell extracts and AF1521 bound fraction. Cell extracts from PC3-AR siCTRL and siDTX2 cells treated with R1881 for 6 hr were combined with AF1521 beads for the enrichment of ADP-ribosylated proteins. D, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL/siDTX2 and PC3-AR HA- PARP7 cell extracts and GSH beads bound fraction. Cell extracts from PC3-AR siCTRL/siDTX2 and PC3-AR HA-PARP7 cells treated with R1881 for 6 hr were combined with GSH beads loaded with GST- DTX2-RD or GST-DTX2-RD mut for the enrichment of proteins recognized by DTX2 DTC domain. E, Diagrams of DTX2-RD and DTX2-RD mut . Three loss of function mutations in the DTC domain of DTX2-RD mut (S568A, H582A, and H594A) are indicated with red asterisk. F, Schematic diagram of AR protein preparation as a substrate for biochemical reactions. Cell extracts from PC3-AR siDTX2 cells treated (left) or untreated (right) with R1881 for 6 hr were combined with M2 beads for immunoprecipitation. The purified protein from the preparation with R1881 treatment was used for experiments in panels G and H, and the purified protein from the preparation without R1881 treatment was used only in panel H. G, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (panel F, left). The ubiquitylated products (Ub product, red bracket) are labeled for Flag-AR and AR-ADPr detection. All reactions contained AR-ADPr (R1881 treated samples), ATP, Ub, E1 and <t>E2.</t> For DTX2-RD status (dropout or DTX2-RD mut ), refer to labels. H, Immunoblot detection of Flag-AR, AR-ADPr, and GST-DTX2-RD from the ubiquitylation assay on AR protein prepared with siDTX2 transfection, and with or without R1881 treatment (panel F). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The dropouts of the ubiquitylation assay components (Ub, E1, E2, and 30°C incubation) are indicated on the labels. The T7-Ubiquitin (T7-Ub) was detected by Ponceau staining. Lane numbers are indicated below the blot. I, Bar plots showing the results of an RT-qPCR experiment in PC3-AR siCTRL/siDTX2 cells untreated (grey), treated with R1881 (purple), and cotreated with R1881 and RBN2397 (blue). The y-axis represents the relative expression normalized to the GUS housekeeping gene, and the x-axis represents the siRNA used. The p-values from the Welch’s t-test for comparisons between corresponding conditions in siCTRL and siDTX2 are indicated on the plots. Error bars represent standard deviation (n = 3; n represents number of biological replicates).
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    Deltex Medical e2~ub conjugate
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
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    R&D Systems e2-ub conjugate
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
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    High Energy Corporation thioester intermediate ub ~ e2
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
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    Siepmann GmbH e2–ub conjugates
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
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    GenScript corporation genes coding for full-length human trim69, ubiquitin (ub), and ubch5b (e2)
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
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    Boston Biochem recombinant ub bostonbiochem
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
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    Boston Biochem ubch5a/ube2d1-ub charged (human recombinant; e2-800)
    (A) Domain organisation of DELTEX family <t>E3s.</t> DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).
    Ubch5a/Ube2d1 Ub Charged (Human Recombinant; E2 800), supplied by Boston Biochem, 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


    DTX2 is the E3 ligase for ADP-ribosylated AR. A, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) in PC3-AR cells with siRNA knockdowns (total 4-day knockdown) of the selected relevant E3 ligases (DTX1, DTX2, DTX4, HUWE1, RNF146, SPOP, TRIP12 and UBR5), treated with R1881 for 21 hr before cell harvest. The AR/TUB and AR-ADPr/AR ratios for each lane are presented below the blot. B, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR cells with siDTX2 knockdown, treated with R1881 for times indicated on the panel. The AR-ADPr/AR ratio for each lane is presented below the blot. C, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL and siDTX2 cell extracts and AF1521 bound fraction. Cell extracts from PC3-AR siCTRL and siDTX2 cells treated with R1881 for 6 hr were combined with AF1521 beads for the enrichment of ADP-ribosylated proteins. D, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL/siDTX2 and PC3-AR HA- PARP7 cell extracts and GSH beads bound fraction. Cell extracts from PC3-AR siCTRL/siDTX2 and PC3-AR HA-PARP7 cells treated with R1881 for 6 hr were combined with GSH beads loaded with GST- DTX2-RD or GST-DTX2-RD mut for the enrichment of proteins recognized by DTX2 DTC domain. E, Diagrams of DTX2-RD and DTX2-RD mut . Three loss of function mutations in the DTC domain of DTX2-RD mut (S568A, H582A, and H594A) are indicated with red asterisk. F, Schematic diagram of AR protein preparation as a substrate for biochemical reactions. Cell extracts from PC3-AR siDTX2 cells treated (left) or untreated (right) with R1881 for 6 hr were combined with M2 beads for immunoprecipitation. The purified protein from the preparation with R1881 treatment was used for experiments in panels G and H, and the purified protein from the preparation without R1881 treatment was used only in panel H. G, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (panel F, left). The ubiquitylated products (Ub product, red bracket) are labeled for Flag-AR and AR-ADPr detection. All reactions contained AR-ADPr (R1881 treated samples), ATP, Ub, E1 and E2. For DTX2-RD status (dropout or DTX2-RD mut ), refer to labels. H, Immunoblot detection of Flag-AR, AR-ADPr, and GST-DTX2-RD from the ubiquitylation assay on AR protein prepared with siDTX2 transfection, and with or without R1881 treatment (panel F). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The dropouts of the ubiquitylation assay components (Ub, E1, E2, and 30°C incubation) are indicated on the labels. The T7-Ubiquitin (T7-Ub) was detected by Ponceau staining. Lane numbers are indicated below the blot. I, Bar plots showing the results of an RT-qPCR experiment in PC3-AR siCTRL/siDTX2 cells untreated (grey), treated with R1881 (purple), and cotreated with R1881 and RBN2397 (blue). The y-axis represents the relative expression normalized to the GUS housekeeping gene, and the x-axis represents the siRNA used. The p-values from the Welch’s t-test for comparisons between corresponding conditions in siCTRL and siDTX2 are indicated on the plots. Error bars represent standard deviation (n = 3; n represents number of biological replicates).

    Journal: bioRxiv

    Article Title: Parp7 generates an ADP-ribosyl degron that controls negative feedback of androgen signaling

    doi: 10.1101/2024.12.21.629908

    Figure Lengend Snippet: DTX2 is the E3 ligase for ADP-ribosylated AR. A, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) in PC3-AR cells with siRNA knockdowns (total 4-day knockdown) of the selected relevant E3 ligases (DTX1, DTX2, DTX4, HUWE1, RNF146, SPOP, TRIP12 and UBR5), treated with R1881 for 21 hr before cell harvest. The AR/TUB and AR-ADPr/AR ratios for each lane are presented below the blot. B, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR cells with siDTX2 knockdown, treated with R1881 for times indicated on the panel. The AR-ADPr/AR ratio for each lane is presented below the blot. C, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL and siDTX2 cell extracts and AF1521 bound fraction. Cell extracts from PC3-AR siCTRL and siDTX2 cells treated with R1881 for 6 hr were combined with AF1521 beads for the enrichment of ADP-ribosylated proteins. D, Immunoblot detection of Flag-AR and AR-ADPr in PC3-AR siCTRL/siDTX2 and PC3-AR HA- PARP7 cell extracts and GSH beads bound fraction. Cell extracts from PC3-AR siCTRL/siDTX2 and PC3-AR HA-PARP7 cells treated with R1881 for 6 hr were combined with GSH beads loaded with GST- DTX2-RD or GST-DTX2-RD mut for the enrichment of proteins recognized by DTX2 DTC domain. E, Diagrams of DTX2-RD and DTX2-RD mut . Three loss of function mutations in the DTC domain of DTX2-RD mut (S568A, H582A, and H594A) are indicated with red asterisk. F, Schematic diagram of AR protein preparation as a substrate for biochemical reactions. Cell extracts from PC3-AR siDTX2 cells treated (left) or untreated (right) with R1881 for 6 hr were combined with M2 beads for immunoprecipitation. The purified protein from the preparation with R1881 treatment was used for experiments in panels G and H, and the purified protein from the preparation without R1881 treatment was used only in panel H. G, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (panel F, left). The ubiquitylated products (Ub product, red bracket) are labeled for Flag-AR and AR-ADPr detection. All reactions contained AR-ADPr (R1881 treated samples), ATP, Ub, E1 and E2. For DTX2-RD status (dropout or DTX2-RD mut ), refer to labels. H, Immunoblot detection of Flag-AR, AR-ADPr, and GST-DTX2-RD from the ubiquitylation assay on AR protein prepared with siDTX2 transfection, and with or without R1881 treatment (panel F). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The dropouts of the ubiquitylation assay components (Ub, E1, E2, and 30°C incubation) are indicated on the labels. The T7-Ubiquitin (T7-Ub) was detected by Ponceau staining. Lane numbers are indicated below the blot. I, Bar plots showing the results of an RT-qPCR experiment in PC3-AR siCTRL/siDTX2 cells untreated (grey), treated with R1881 (purple), and cotreated with R1881 and RBN2397 (blue). The y-axis represents the relative expression normalized to the GUS housekeeping gene, and the x-axis represents the siRNA used. The p-values from the Welch’s t-test for comparisons between corresponding conditions in siCTRL and siDTX2 are indicated on the plots. Error bars represent standard deviation (n = 3; n represents number of biological replicates).

    Article Snippet: Ubiquitylation assays were performed at 30°C for 30 min with 1 mM ATP, 100 g/ml Ub (T7-Ub or bovine Ub (Sigma U6253)), 5 g/ml each of UB E1 (R&D Systems E-304) and UB E2 (His-UbcH5C, R&D Systems E2-627), and 20 g/ml GST-DTX2 RD in the buffer E (20 mM Tris-HCl pH 7.5, 50 mM NaCl, 2 mM MgCl2, 1 mM DTT, 1 µg/ml each of A/L/P and 0.1 mg/ml BSA).

    Techniques: Western Blot, Knockdown, Immunoprecipitation, Purification, Ubiquitin Assay, Labeling, Transfection, Incubation, Staining, Quantitative RT-PCR, Expressing, Standard Deviation

    DTX2 conjugates ubiquitin to AR through ADP-ribose A, Immunoblot detection of Fluorescein (FITC) and T7-Ubiquitin (T7-Ub) from the ubiquitylation assay on FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides. The labels indicate from the top: the substrate used (FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay (all reactions contained ATP, T7-Ub, E1 and E2, for DTX2-RD dropout, refer to labels), and the post- ubiquitylation assay treatments (NUDT16 or Mg 2+ buffer). Lane numbers are indicated below the blot. B, Schematic diagram representing FITC-AR(C284 ADPr ) peptide conjugated to ubiquitin (Ub). Indicated with red scissors are bonds within the ADP-ribose structure cleaved by NUDT16 and USP2. C, Schematic of the ubiquitylation assay workflow for panels D and E. D, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) from the ubiquitylation assay on AR protein prepared with siDTX2 transfection and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post-ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. E, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post- ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. F, Scatter plots depicting the correlation between PARP7 (left) or DTX2 (right) mRNA expression and the response to androgen pathway activity calculated by PARADIGM in primary prostate cancer patients from TCGA-PRAD cohort. Each dot represents one patient (n = 478, n represents number of patients). Pearson correlation coefficients and corresponding p-values are indicated on the plots. G, Kaplan-Meier plot depicting progression-free interval (PFI) in primary prostate cancer patients from the TCGA-PRAD cohort, stratified by PARP7 expression levels. The red line represents patients with high PARP7 expression (top 25%), and the green line represents patients with low PARP7 expression (bottom 25%). The X-axis represents time (days), and the Y-axis represents the progression-free interval probability. The interval distributions were compared using the log-rank test, with the p-value indicating statistical significance. Dotted lines represent the 95% confidence interval.

    Journal: bioRxiv

    Article Title: Parp7 generates an ADP-ribosyl degron that controls negative feedback of androgen signaling

    doi: 10.1101/2024.12.21.629908

    Figure Lengend Snippet: DTX2 conjugates ubiquitin to AR through ADP-ribose A, Immunoblot detection of Fluorescein (FITC) and T7-Ubiquitin (T7-Ub) from the ubiquitylation assay on FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides. The labels indicate from the top: the substrate used (FITC-AR(C284) or FITC-AR(C284 ADPr ) peptides), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay (all reactions contained ATP, T7-Ub, E1 and E2, for DTX2-RD dropout, refer to labels), and the post- ubiquitylation assay treatments (NUDT16 or Mg 2+ buffer). Lane numbers are indicated below the blot. B, Schematic diagram representing FITC-AR(C284 ADPr ) peptide conjugated to ubiquitin (Ub). Indicated with red scissors are bonds within the ADP-ribose structure cleaved by NUDT16 and USP2. C, Schematic of the ubiquitylation assay workflow for panels D and E. D, Immunoblot detection of Flag-AR and AR-ADPr (by FL-AF1521) from the ubiquitylation assay on AR protein prepared with siDTX2 transfection and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post-ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. E, Immunoblot detection of Flag-AR and AR-ADPr from the ubiquitylation assay on AR protein prepared with siDTX2 and R1881 treatment (refer to panel 6f for sample preparation workflow). The ubiquitylated products (Ub product) are labeled in red for Flag-AR and AR-ADPr detection. The labels separated by black lines indicate sequential steps from top to bottom. From the top, the labels indicate the substrate used (AR-ADPr), pre-ubiquitylation assay treatments (NUDT16), the ubiquitylation assay, and the post- ubiquitylation assay treatments (USP2-CD, NUDT16, or Mg 2+ buffer). Lane numbers are indicated below the blot. F, Scatter plots depicting the correlation between PARP7 (left) or DTX2 (right) mRNA expression and the response to androgen pathway activity calculated by PARADIGM in primary prostate cancer patients from TCGA-PRAD cohort. Each dot represents one patient (n = 478, n represents number of patients). Pearson correlation coefficients and corresponding p-values are indicated on the plots. G, Kaplan-Meier plot depicting progression-free interval (PFI) in primary prostate cancer patients from the TCGA-PRAD cohort, stratified by PARP7 expression levels. The red line represents patients with high PARP7 expression (top 25%), and the green line represents patients with low PARP7 expression (bottom 25%). The X-axis represents time (days), and the Y-axis represents the progression-free interval probability. The interval distributions were compared using the log-rank test, with the p-value indicating statistical significance. Dotted lines represent the 95% confidence interval.

    Article Snippet: Ubiquitylation assays were performed at 30°C for 30 min with 1 mM ATP, 100 g/ml Ub (T7-Ub or bovine Ub (Sigma U6253)), 5 g/ml each of UB E1 (R&D Systems E-304) and UB E2 (His-UbcH5C, R&D Systems E2-627), and 20 g/ml GST-DTX2 RD in the buffer E (20 mM Tris-HCl pH 7.5, 50 mM NaCl, 2 mM MgCl2, 1 mM DTT, 1 µg/ml each of A/L/P and 0.1 mg/ml BSA).

    Techniques: Western Blot, Ubiquitin Assay, Transfection, Sample Prep, Labeling, Expressing, Activity Assay

    (A) Domain organisation of DELTEX family E3s. DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).

    Journal: bioRxiv

    Article Title: Ubiquitylation of nucleic acids by DELTEX ubiquitin E3 ligase DTX3L

    doi: 10.1101/2024.04.19.590267

    Figure Lengend Snippet: (A) Domain organisation of DELTEX family E3s. DTX1, DTX2 and DTX4 are classified into WWE domain-containing DELTEXes; DTX3 and DTX3L are classified into KH domain-containing DELTEXes. (B) DTX2-RD is not able to ubiquitylate nucleic acids. E21_DNA_A was incubated with were incubated with E1, E2, ATP, Ub and increasing amount of either DTX3L-RD or DTX2-RD, then the reactions were analysed on an SDS-PAGE gel and Urea gel and visualized using the Molecular Imager PharosFX system (BioRad). (C) Sequence alignment of the RING-DTC domains DELTEX E3s. Sequence conservation is colored in shades of red (red=identical, pink=conserved). The conserved catalytic residues in the DTC domain (DTX3L H707, E733) are indicated by asterisks. Differences in the RING domain and AR loop in DTC domain are indicated by green or black dashed box. Sequence alignment was generated using Clustal Omega and Jalview ( Waterhouse et al , 2009 ).

    Article Snippet: Mechanistically, DELTEX E3s recruit E2∼Ub conjugate and one NAD + or ADPr molecule using the RING and DTC domains, respectively.

    Techniques: Incubation, SDS Page, Sequencing, Generated