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    Structured Review

    R&D Systems concentrations
    Concentrations, supplied by R&D Systems, used in various techniques. Bioz Stars score: 95/100, based on 45 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/recombinant+human+il+1/Recombinant+Human+IL-29%2FIFN-lambda+1+Protein/pmc13113271-54-24-31
    Average 95 stars, based on 45 article reviews
    concentrations - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    Recombinant:

    Article Title: Interactions of the Protein-tyrosine Phosphatase-α with the Focal Adhesion Targeting Domain of Focal Adhesion Kinase Are Involved in Interleukin-1 Signaling in Fibroblasts
    Article Snippet: Rabbit monoclonal antibody to ERK1/2, mouse monoclonal antibody to phospho-ERK1/2 Thr202/Tyr204, and rabbit polyclonal antibodies to phospho-PTP (Tyr789) were purchased from Cell Signaling (Beverly, MA). .. Recombinant human IL-1 and the Quantikine mouse MMP-3, MMP-9, and IL-6 ELISA immunoassays were purchased from R&D Systems (Minneapolis, MN). .. FuGENE HD transfection reagent was from Promega (Madison, WI).

    Article Title: Highly Sensitive Electrochemical BioMEMS for TNF-α Detection in Humansaliva: Heart Failure
    Article Snippet: Reagents used in this research are: 4-aminophenylacetic acid (4-carboxymethylaniline CMA), sodium nitrite (NaNO2), hydrochloricacid (HCl), Ethanol, N-hydroxysuccinimide (NHS), N-(3-dimethylaminopropyl)-N-ethylcarbodiimide hydrochloride (EDC), phosphatebuffered saline (PBS), phosphatebuffered saline Tween (PBSTween) and (Fe2+Fe3+) were purchased from Sigma Aldrich. .. Antibodies Tumor necrosis factor TNF- , Recombinant Human TNF- , Recombinant Human IL-10, Recombinant Human IL-8 and Recombinant Human IL-1, Antibodies TNFwith fluorescence were purchased from R&D system France.Artificial saliva has been prepared by dissolving 0.6 g/L Na2HPO4, 0.6 g/L anhydrous CaCl2,0.4 g/L KCl, 0.4 g/L NaCl, 4 g/L mucin and 4 g/L urea in deionized water, adjusted to pH 7.2, sterilized by autoclaving and stored in the refrigerator until use. ..

    Article Title: A Combined “Omics” Approach Identifies N-Myc Interactor as a Novel Cytokine-induced Regulator of IRE1α Protein and c-Jun N-terminal Kinase in Pancreatic Beta Cells
    Article Snippet: .. The following cytokine concentrations were used, based on previous dose-response experiments performed by our group (29, 35–37) as follows: recombinant human IL-1 (R&D Systems, Abingdon, UK) 10 units/ml for INS-1E cells or 50 units/ml for human islet cells, primary rat beta cells, dispersed rat islet cells, and the human beta cell line EndoC- H; recombinant rat IFN- (R&D Systems) 100 units/ml for INS-1E cells or 500 units/ml for dispersed rat islet cells and primary rat beta cells; human IFN- (PeproTech, London, UK) 1000 units/ml for human islet cells or the human beta cell line EndoC- H; recombinant murine TNF- (Innogenetics, Gent, Belgium) 1000 units/ml for all cell types. ..

    Article Title: Cyclin A1-targeted T-cell immunotherapy for cancer
    Article Snippet: .. Recombinant human IL-1, IL-4, IL-7, IL-15, and TNFα were obtained from R&D Systems (Minneapolis, Minn.), IL-2 and GM-CSF from Chiron (Emeryville, Calif.), PGE2 from MP Biomedicals (Irvine, Calif.), and IL-21 from Peprotech (Rocky Hill, N.J.). .. A peptide library of a total of 103 15-mers with an overlap of 11 amino acids (AA) spanning CCNA1 (isoform c, NM_001111046) was purchased from Sigma (St. Louis, Mo.).

    Article Title: Electrochemical biosensor platform for TNF-α cytokines detection in both artificial and human saliva: Heart failure
    Article Snippet: Reagents used in this research are: 4-aminophenylacetic acid (4-carboxymethylaniline CMA), sodium nitrite (NaNO2), hydrochloric acid (HCl), ethanol, N-hydroxysuccinimide (NHS), N-(3dimethylaminopropyl)-N-ethyl-carbodiimide hydrochloride (EDC), ethanolamine, phosphate-buffered saline (PBS), phosphate-buffered saline Tween (PBS-Tween) and (Fe2+Fe3+) were purchased from Sigma Aldrich (France). .. Antibodies Tumor necrosis factor TNF-α, Recombinant Human TNF-α, Recombinant Human IL-8 and Recombinant Human IL-1, were purchased from R&D System (France). ..

    Article Title: Key role of suppressor of cytokine signaling 3 in regulating gp130 cytokine-induced signaling and limiting chondrocyte responses during murine inflammatory arthritis.
    Article Snippet: Objective.. To examine the impact of the gp130 cytokine family on murine articular cartilage and to explore a potential regulatory role of suppressor of cytokine signaling 3 (SOCS-3) in murine chondrocytes.. Methods.

    Article Title: Chronic mucocutaneous candidiasis and connective tissue disorder in humans with impaired JNK1-dependent responses to IL-17A/F and TGF-β.
    Article Snippet: .. After 24 hours, cells were left unstimulated or were stimulated with recombinant human IL-17A (317-ILB; R&D Systems), recombinant human IL-17F (1335-IL; R&D Systems), recombinant human IL-17A/F (5194-IL; R&D Systems), recombinant human TNF- (210-TA; R&D Systems), recombinant human IL-1 (201-LB; R&D Systems), recombinant human lymphotoxin 1/2 (8884-LY; R&D Systems), lipoteichoic acid from Staphylococcus aureus (LTA-SA) (tlrl-slta; InvivoGen), Pam3CSK4 (tlrl-pms; InvivoGen), fibroblast-stimulating lipopeptide-1 (FSL-1) (tlrl-fsl; InvivoGen), Pam2CSK4 (tlrl-pm2s-1; InvivoGen), and lipopolysaccharide (LPS) (L9764; Sigma-Aldrich) for a further 24 hours. .. Enzyme-linked immunosorbent assay (ELISA) kits were used to determine the levels of GRO- (DY275; R&D Systems), IL-6 (88-7066; Invitrogen), and IL-8 (M9318; Sanquin) in the supernatants.

    Enzyme-linked Immunosorbent Assay:

    Article Title: Interactions of the Protein-tyrosine Phosphatase-α with the Focal Adhesion Targeting Domain of Focal Adhesion Kinase Are Involved in Interleukin-1 Signaling in Fibroblasts
    Article Snippet: Rabbit monoclonal antibody to ERK1/2, mouse monoclonal antibody to phospho-ERK1/2 Thr202/Tyr204, and rabbit polyclonal antibodies to phospho-PTP (Tyr789) were purchased from Cell Signaling (Beverly, MA). .. Recombinant human IL-1 and the Quantikine mouse MMP-3, MMP-9, and IL-6 ELISA immunoassays were purchased from R&D Systems (Minneapolis, MN). .. FuGENE HD transfection reagent was from Promega (Madison, WI).

    Fluorescence:

    Article Title: Highly Sensitive Electrochemical BioMEMS for TNF-α Detection in Humansaliva: Heart Failure
    Article Snippet: Reagents used in this research are: 4-aminophenylacetic acid (4-carboxymethylaniline CMA), sodium nitrite (NaNO2), hydrochloricacid (HCl), Ethanol, N-hydroxysuccinimide (NHS), N-(3-dimethylaminopropyl)-N-ethylcarbodiimide hydrochloride (EDC), phosphatebuffered saline (PBS), phosphatebuffered saline Tween (PBSTween) and (Fe2+Fe3+) were purchased from Sigma Aldrich. .. Antibodies Tumor necrosis factor TNF- , Recombinant Human TNF- , Recombinant Human IL-10, Recombinant Human IL-8 and Recombinant Human IL-1, Antibodies TNFwith fluorescence were purchased from R&D system France.Artificial saliva has been prepared by dissolving 0.6 g/L Na2HPO4, 0.6 g/L anhydrous CaCl2,0.4 g/L KCl, 0.4 g/L NaCl, 4 g/L mucin and 4 g/L urea in deionized water, adjusted to pH 7.2, sterilized by autoclaving and stored in the refrigerator until use. ..

    Injection:

    Article Title: Key role of suppressor of cytokine signaling 3 in regulating gp130 cytokine-induced signaling and limiting chondrocyte responses during murine inflammatory arthritis.
    Article Snippet: Objective.. To examine the impact of the gp130 cytokine family on murine articular cartilage and to explore a potential regulatory role of suppressor of cytokine signaling 3 (SOCS-3) in murine chondrocytes.. Methods.

    Control:

    Article Title: Commensal Bacteria-induced Interleukin 1β (IL-1β) Secreted by Macrophages Up-regulates Hepcidin Expression in Hepatocytes by Activating the Bone Morphogenetic Protein Signaling Pathway
    Article Snippet: In preliminary experiments, the serumstarved cells were stimulated directly with live bacteria in the same way as the THP-1 cells or for 4 h with purified Toll-like receptor (TLR) ligands (5 g/ml Pam3Cys, 1 g/ml LPS, and 1 g/ml flagellin, all from Invivogen, San Diego, CA). .. In subsequent studies, the serum-starved cells were stimulated for the indicated times in individual experiments with 0.5 ml of supernatant from control or infected THP-1 cells or with 10 ng/ml recombinant human IL-1 (R&D Systems, Minneapolis, MN). .. In some experiments, the cells were also treated with the BMP signaling inhibitors (17, 18) dorsomorphin (5 M) and LDN193189 (500 nM) or an equivalent volume of the vehicle DMSO, 5 g/ml of a monoclonal neutralizing anti-IL-1 antibody (Invivogen), 7.5 g/ml of a monoclonal anti-BMP2/ BMP4-neutralizing antibody (R&D Systems, Minneapolis, MN), or equivalent amounts of the corresponding isotypematched irrelevant antibodies.

    Infection:

    Article Title: Commensal Bacteria-induced Interleukin 1β (IL-1β) Secreted by Macrophages Up-regulates Hepcidin Expression in Hepatocytes by Activating the Bone Morphogenetic Protein Signaling Pathway
    Article Snippet: In preliminary experiments, the serumstarved cells were stimulated directly with live bacteria in the same way as the THP-1 cells or for 4 h with purified Toll-like receptor (TLR) ligands (5 g/ml Pam3Cys, 1 g/ml LPS, and 1 g/ml flagellin, all from Invivogen, San Diego, CA). .. In subsequent studies, the serum-starved cells were stimulated for the indicated times in individual experiments with 0.5 ml of supernatant from control or infected THP-1 cells or with 10 ng/ml recombinant human IL-1 (R&D Systems, Minneapolis, MN). .. In some experiments, the cells were also treated with the BMP signaling inhibitors (17, 18) dorsomorphin (5 M) and LDN193189 (500 nM) or an equivalent volume of the vehicle DMSO, 5 g/ml of a monoclonal neutralizing anti-IL-1 antibody (Invivogen), 7.5 g/ml of a monoclonal anti-BMP2/ BMP4-neutralizing antibody (R&D Systems, Minneapolis, MN), or equivalent amounts of the corresponding isotypematched irrelevant antibodies.



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    Image Search Results


    (A) Schematic of the primary mouse astrocyte cultures. (B) Representative immunofluorescence images of cultured astrocytes stained for GFAP, showing characteristic astrocyte morphology. (C) Overview of RNA-seq and capped small (cs)RNA-seq data generation from astrocytes. The schematic shows the typical distribution of csRNA-seq and RNA-seq at various genomic locations, which allows the identification of Transcriptional Start Site (TSSs) using HOMER2. (D) Volcano plot of RNA-seq differential expression in astrocytes treated with vehicle (Veh) or IL-1B (10 ng/mL, 1 h). (E) Pathway enrichment analysis of IL-1B-induced differentially expressed genes. (F) RT-qPCR validation of selected IL-1B-responsive genes in astrocytes

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: (A) Schematic of the primary mouse astrocyte cultures. (B) Representative immunofluorescence images of cultured astrocytes stained for GFAP, showing characteristic astrocyte morphology. (C) Overview of RNA-seq and capped small (cs)RNA-seq data generation from astrocytes. The schematic shows the typical distribution of csRNA-seq and RNA-seq at various genomic locations, which allows the identification of Transcriptional Start Site (TSSs) using HOMER2. (D) Volcano plot of RNA-seq differential expression in astrocytes treated with vehicle (Veh) or IL-1B (10 ng/mL, 1 h). (E) Pathway enrichment analysis of IL-1B-induced differentially expressed genes. (F) RT-qPCR validation of selected IL-1B-responsive genes in astrocytes

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: Immunofluorescence, Cell Culture, Staining, RNA Sequencing, Quantitative Proteomics, Quantitative RT-PCR, Biomarker Discovery

    Genome browser views showing RNA-seq signal at the Cxcl1, Ccl20, Csf2 , and Il6 loci in astrocytes treated with vehicle or IL-1B. These representative examples illustrate the robust transcriptional induction of canonical inflammatory genes following IL-1B stimulation. Gene models and genomic coordinates are shown in mm10 .

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: Genome browser views showing RNA-seq signal at the Cxcl1, Ccl20, Csf2 , and Il6 loci in astrocytes treated with vehicle or IL-1B. These representative examples illustrate the robust transcriptional induction of canonical inflammatory genes following IL-1B stimulation. Gene models and genomic coordinates are shown in mm10 .

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: RNA Sequencing

    (A) Pairwise correlation analysis of csRNA-seq replicates from untreated and IL-1B-treated astrocytes. (B) Distribution of strand-specific csRNA-seq reads around GENCODE-annotated TSSs, showing strong enrichment at annotated transcriptional start sites. (C) Genomic annotation of astrocytes TSRs, partitioned across promoter, intronic, intergenic, and other genomic features. (D) Average chromatin profiles at promoter-distal TSRs, showing ATAC-seq and H3K27ac enrichment around transcribed regulatory elements. (E) Average csRNA-seq signal centered on promoter-distal ATAC-seq peaks, comparing transcribed and non-transcribed accessible regions (No Tx: 225,150 peaks, Tx: 14,836 peaks). (F) Average mCH profiles at promoter-proximal TSRs, promoter-distal transcribed TSRs, and non-transcribed distal accessible regions in astrocytes (data from ). (G) Distribution of NFIA and TEAD4 ChIP-seq peaks found overlapping TSRs and ATAC-seq peaks in astrocytes. (H)ChIP-seq read density for NFIA and TEAD4 centered on csRNA-seq defined TSRs, showing transcription factor binding immediately upstream of the primary TSS.

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: (A) Pairwise correlation analysis of csRNA-seq replicates from untreated and IL-1B-treated astrocytes. (B) Distribution of strand-specific csRNA-seq reads around GENCODE-annotated TSSs, showing strong enrichment at annotated transcriptional start sites. (C) Genomic annotation of astrocytes TSRs, partitioned across promoter, intronic, intergenic, and other genomic features. (D) Average chromatin profiles at promoter-distal TSRs, showing ATAC-seq and H3K27ac enrichment around transcribed regulatory elements. (E) Average csRNA-seq signal centered on promoter-distal ATAC-seq peaks, comparing transcribed and non-transcribed accessible regions (No Tx: 225,150 peaks, Tx: 14,836 peaks). (F) Average mCH profiles at promoter-proximal TSRs, promoter-distal transcribed TSRs, and non-transcribed distal accessible regions in astrocytes (data from ). (G) Distribution of NFIA and TEAD4 ChIP-seq peaks found overlapping TSRs and ATAC-seq peaks in astrocytes. (H)ChIP-seq read density for NFIA and TEAD4 centered on csRNA-seq defined TSRs, showing transcription factor binding immediately upstream of the primary TSS.

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: ChIP-sequencing, Binding Assay

    (A)Volcano plot of differentially regulated csRNA-seq signal at astrocyte TSRs following IL-1B stimulation, identifying induced and repressed regulatory elements. (B) Genome browser tracks depicting induction of promoter and distal regulatory enhancer transcription by csRNA-seq at the Ccl2 locus. (C) GREAT functional enrichment analysis of IL-1B induced TSRs. (D) Spatial clustering of IL-1B induced TSRs, depicting the density of TSRs in each category adjacent to Induced TSRs. (E) De novo motif enrichment analysis of IL-1B induced TSRs by HOMER. (F) Average csRNA-seq signal centered on promoter-distal NF-κB/p65 peaks, showing increased bidirectional transcription at p65-bound distal elements after IL-1B stimulation, consistent with eRNA induction. (G) Spatial density of NF-κB, AP1, and IRF motifs relative to TSRs (TF binding sites per bp per TSS), showing upstream enrichment of these motifs at IL-1B-induced TSRs compared with unchanged or repressed TSRs.

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: (A)Volcano plot of differentially regulated csRNA-seq signal at astrocyte TSRs following IL-1B stimulation, identifying induced and repressed regulatory elements. (B) Genome browser tracks depicting induction of promoter and distal regulatory enhancer transcription by csRNA-seq at the Ccl2 locus. (C) GREAT functional enrichment analysis of IL-1B induced TSRs. (D) Spatial clustering of IL-1B induced TSRs, depicting the density of TSRs in each category adjacent to Induced TSRs. (E) De novo motif enrichment analysis of IL-1B induced TSRs by HOMER. (F) Average csRNA-seq signal centered on promoter-distal NF-κB/p65 peaks, showing increased bidirectional transcription at p65-bound distal elements after IL-1B stimulation, consistent with eRNA induction. (G) Spatial density of NF-κB, AP1, and IRF motifs relative to TSRs (TF binding sites per bp per TSS), showing upstream enrichment of these motifs at IL-1B-induced TSRs compared with unchanged or repressed TSRs.

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: Functional Assay, Binding Assay

    (A) Genome browser example of an IL-1B-induced locus (Cxcl10) in astrocytes, showing increased transcription initiation after stimulation. (B) Scatter plot comparing IL-1B-induced Log2 csRNA-seq changes at the promoter vs. RNA-seq changes across genes, highlighting genes regulated primarily at initiation (along x-axis) versus those showing stronger changes at the mRNA level (along y-axis). (C) Genome browser tracks at the Junb locus showing increased gene expression and RNAPII elongation in the gene body with limited change in promoter initiation and RNAPII promoter levels, consistent with regulation being mediated primarily at the level of transcription elongation rather than increased initiation. (D) RNAPII ChIP-seq levels at the promoters of IL-1B induced genes stratified by genes with minimal versus strong increases in csRNA-seq initiation activity. (E) Scatter plot comparing changes in overall TSR levels (Log2 Fold change, NT vs. IL-1B) versus their WIP score significance (the −Log10 p-value), identifying TSRs with altered initiation patterns independent of changes in total transcriptional output. (F) Representative examples of TSRs exhibiting a strong change in initiation pattern (top, WIP score −1.61, Lg10 p-value = 9.54e-05) versus a strong change in overall initiation levels with minimal change in initiation shape(WIP score −0.13, Log10 p-value = 0.84). (G) Scatter plot of TF motif enrichment in TSRs with significant changes in overall activity versus changes in TSS positions, highlighting differential associations of NF-κB, TEAD, and NFI motifs with these TSRs classes. (H) Venn diagram showing the overlap of ChIP-seq peaks for NFIA and TEAD4 before and after IL-1B stimulation in astrocytes. (I) Motif enrichment analysis of condition-specific (either Veh or IL-1B) TEAD4- and NFIA-bound regions, showing IL-1B-specific enrichment for inflammatory TF motifs, including NF-κB, IRF (IRF8), and AP1 (i.e. Fra1).

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: (A) Genome browser example of an IL-1B-induced locus (Cxcl10) in astrocytes, showing increased transcription initiation after stimulation. (B) Scatter plot comparing IL-1B-induced Log2 csRNA-seq changes at the promoter vs. RNA-seq changes across genes, highlighting genes regulated primarily at initiation (along x-axis) versus those showing stronger changes at the mRNA level (along y-axis). (C) Genome browser tracks at the Junb locus showing increased gene expression and RNAPII elongation in the gene body with limited change in promoter initiation and RNAPII promoter levels, consistent with regulation being mediated primarily at the level of transcription elongation rather than increased initiation. (D) RNAPII ChIP-seq levels at the promoters of IL-1B induced genes stratified by genes with minimal versus strong increases in csRNA-seq initiation activity. (E) Scatter plot comparing changes in overall TSR levels (Log2 Fold change, NT vs. IL-1B) versus their WIP score significance (the −Log10 p-value), identifying TSRs with altered initiation patterns independent of changes in total transcriptional output. (F) Representative examples of TSRs exhibiting a strong change in initiation pattern (top, WIP score −1.61, Lg10 p-value = 9.54e-05) versus a strong change in overall initiation levels with minimal change in initiation shape(WIP score −0.13, Log10 p-value = 0.84). (G) Scatter plot of TF motif enrichment in TSRs with significant changes in overall activity versus changes in TSS positions, highlighting differential associations of NF-κB, TEAD, and NFI motifs with these TSRs classes. (H) Venn diagram showing the overlap of ChIP-seq peaks for NFIA and TEAD4 before and after IL-1B stimulation in astrocytes. (I) Motif enrichment analysis of condition-specific (either Veh or IL-1B) TEAD4- and NFIA-bound regions, showing IL-1B-specific enrichment for inflammatory TF motifs, including NF-κB, IRF (IRF8), and AP1 (i.e. Fra1).

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: RNA Sequencing, Gene Expression, ChIP-sequencing, Activity Assay

    (A) Venn diagram showing overlap between IL-1B-induced genes in astrocytes and KLA-induced genes in bone marrow-derived macrophages (BMDMs). (B) Venn diagram showing overlap between induced TSRs in astrocytes and BMDMs, revealing largely distinct stimulus-responsive enhancer landscapes despite partial overlap in induced genes. (C) Genome browser view of Tnfaip3 locus illustrating that astrocytes and BMDMs induce the same gene but use different enhancers upstream a shared promoter. (D) Top: Venn diagram showing overlap of NF-κB binding sites between activated astrocytes and BMDMs. Bottom: Fraction of astrocyte-specific, shared, and BMDM-specific p65 peaks associated with TSRs induced in astrocytes only, in both cell types, and in BMDM only. (E) Heatmap of de novo motif enrichment at cell type-specific induced TSRs, showing enrichment of lineage-associated motifs for each cell type. (F) Fraction of induced TSR classes bound by lineage-associated TFs, showing preferential association of astrocyte-induced TSRs with NFI and TEAD4 and macrophage-induced TSRs with PU.1 and CEBPα.

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: (A) Venn diagram showing overlap between IL-1B-induced genes in astrocytes and KLA-induced genes in bone marrow-derived macrophages (BMDMs). (B) Venn diagram showing overlap between induced TSRs in astrocytes and BMDMs, revealing largely distinct stimulus-responsive enhancer landscapes despite partial overlap in induced genes. (C) Genome browser view of Tnfaip3 locus illustrating that astrocytes and BMDMs induce the same gene but use different enhancers upstream a shared promoter. (D) Top: Venn diagram showing overlap of NF-κB binding sites between activated astrocytes and BMDMs. Bottom: Fraction of astrocyte-specific, shared, and BMDM-specific p65 peaks associated with TSRs induced in astrocytes only, in both cell types, and in BMDM only. (E) Heatmap of de novo motif enrichment at cell type-specific induced TSRs, showing enrichment of lineage-associated motifs for each cell type. (F) Fraction of induced TSR classes bound by lineage-associated TFs, showing preferential association of astrocyte-induced TSRs with NFI and TEAD4 and macrophage-induced TSRs with PU.1 and CEBPα.

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: Derivative Assay, Binding Assay

    (A) Average eRNA signal centered on astrocyte-specific, shared, and BMDM-specific NF-κBp65 peaks, showing cell type-matched induction of regulatory transcription at p65 bound sites. (B) Fraction of astrocyte-specific, shared, and BMDM-specific p65 peaks overlapping accessible chromatin regions in astrocytes or BMDMs, indicating that NF-κB recruitment occurs preferentially at cell-type-specific open chromatin regions. (C) Violin plots showing increase in ChIP-seq signal for p65, NFIA, TEAD4 at astrocyte IL-1B-induced TSRs and for p65, PU.1, and CEBPβ in macrophage KLA-induced TSRs.

    Journal: bioRxiv

    Article Title: Transcription initiation profiling defines the regulatory logic of astrocyte gene regulation

    doi: 10.64898/2026.05.03.722406

    Figure Lengend Snippet: (A) Average eRNA signal centered on astrocyte-specific, shared, and BMDM-specific NF-κBp65 peaks, showing cell type-matched induction of regulatory transcription at p65 bound sites. (B) Fraction of astrocyte-specific, shared, and BMDM-specific p65 peaks overlapping accessible chromatin regions in astrocytes or BMDMs, indicating that NF-κB recruitment occurs preferentially at cell-type-specific open chromatin regions. (C) Violin plots showing increase in ChIP-seq signal for p65, NFIA, TEAD4 at astrocyte IL-1B-induced TSRs and for p65, PU.1, and CEBPβ in macrophage KLA-induced TSRs.

    Article Snippet: Two days before collection, the astrocytes were plated at a density of 500,000 cells per well on 4-well chamber slides to perform immunocytochemistry or a density of 5.5 million cells per 15 cm dish to be treated with 10ng/mL of recombinant human interleukin 1 beta (IL-1B) (Invivogen, Cat#rcyec-h) for 1hr before sample collection.

    Techniques: ChIP-sequencing