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anti h2k9ac  (Cell Signaling Technology Inc)


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    Cell Signaling Technology Inc anti h2k9ac
    Anti H2k9ac, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 96/100, based on 792 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/acetyl+histone+h3/Acetyl-Histone+H3+(Lys9)+Rabbit+mAb/pmc12989073-223-30-33
    Average 96 stars, based on 792 article reviews
    anti h2k9ac - by Bioz Stars, 2026-10
    96/100 stars

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    Related Articles

    Incubation:

    Article Title: Restoring Histone Acetylation Accelerates Diabetic Wound Repair by Improving the Spatiotemporal Dynamics of Macrophages
    Article Snippet: .. [ ] Briefly, after protein transfer, nitrocellulose membranes were incubated with primary antibodies against pSTAT1, IL‐6 (R&D system), STAT1, IRF‐1, pS6RP, p21, acetyl histone‐H3 (Lys27), acetyl histone‐H3 (Lys9), monomethyl histone‐H3, tri‐methyl histone‐H3 (Lys9), pcJUN, cJUN (Cell Signaling), HDACs (Cell Signaling) and actin (Santa Cruz). ..

    Article Title: Restoring Histone Acetylation Accelerates Diabetic Wound Repair by Improving the Spatiotemporal Dynamics of Macrophages.
    Article Snippet: .. [82] Briefly, after protein transfer, nitrocellulosemembraneswere incubated with primary antibodies against pSTAT1, IL-6 (R&D system), STAT1, IRF-1, pS6RP, p21, acetyl histone-H3 (Lys27), acetyl histone-H3 (Lys9), monomethyl histone-H3, tri-methyl histone-H3 (Lys9), pcJUN, cJUN (Cell Signaling), HDACs (Cell Signaling) and actin (Santa Cruz). ..

    Immunofluorescence:

    Article Title: HDAC11 promotes renal fibrosis by induing partial epithelial-mesenchymal transition and G2/M phase arrest in renal epithelial cells
    Article Snippet: The anti–F4/80 antibody was purchased from Abcam (Waltham, MA, USA). .. All other items, including antibodies against phospho-STAT3, STAT3, phospho-NF-κB (p65), NF-κB (p65), Snail1, acetyl-histone H3, phospho-histone H3 (Ser10; for immunofluorescence staining), and E-cadherin, were obtained from Cell Signaling Technology (Danvers, MA, USA). .. Global HDAC11 knockout mice (HDAC11 −/− ) were obtained from Shanghai Model Organism.

    Staining:

    Article Title: HDAC11 promotes renal fibrosis by induing partial epithelial-mesenchymal transition and G2/M phase arrest in renal epithelial cells
    Article Snippet: The anti–F4/80 antibody was purchased from Abcam (Waltham, MA, USA). .. All other items, including antibodies against phospho-STAT3, STAT3, phospho-NF-κB (p65), NF-κB (p65), Snail1, acetyl-histone H3, phospho-histone H3 (Ser10; for immunofluorescence staining), and E-cadherin, were obtained from Cell Signaling Technology (Danvers, MA, USA). .. Global HDAC11 knockout mice (HDAC11 −/− ) were obtained from Shanghai Model Organism.

    SDS Page:

    Article Title: TNG260 Is a Small-Molecule CoREST Inhibitor That Sensitizes STK11 -Mutant Tumors to Anti–PD-1 Immunotherapy
    Article Snippet: .. Therein, 25 μg of the protein lysate was loaded in each lane of an SDS-PAGE gel and acetylation of H3K9 was detected using acetyl-histone H3 (Lys9; C5B11) rabbit mAb, Cell Signaling Technology, 9649S). .. For NanoString assays, each flash-frozen tumor tissue was homogenized in RLT buffer (Qiagen, RNeasy kit) with antifoam reagent using the GentleMACS Octo Dissociator.

    other:

    Article Title: HDAC11 promotes renal fibrosis by induing partial epithelial-mesenchymal transition and G2/M phase arrest in renal epithelial cells.
    Article Snippet: The anti–F4/80 antibody was purchased from Abcam (Waltham, MA, USA).



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    Nucleic P-ACLY within Golm1 -knockout macrophage regulates Efemp1 expression through <t>H3K27</t> <t>acetylation</t> (A) Total histone H3 acetylation levels in Thp1 nc and Thp1 −/− cells determined by Histone H3 acetylation detection Kit. n = 9 replicated wells. (B-C) WB detecting (B) and quantitative analysis (C) of the protein levels of various acetylated histone H3. n = 3 independent experiments. (D) PCA plot of CUT&Tag-seq data of experiments with Thp1 nc and Thp1 −/− cells. n = 3 samples/group. (E) Pie chart showing the distribution of <t>H3K27ac</t> peaks across annotated genomic regions in Thp1 nc and Thp1 −/− cells. (F) Heatmap showing the genomic occupancy of H3K27ac from −3 kb flanking TSS to + 3 kb flanking TES in Thp1 nc or Thp1 −/− cells. The x-axis represents the position of reads relative to the TSS, and the y-axis represents the read density. (G) CUT&Tag-seq volcano plot of different gene peaks between Thp1 nc and Thp1 −/− cells. (H) RNA-seq volcano plot of DEGs between BMDMs wt and BMDMs mko cells. n = 3 mice/group. (I) Overlap of differentially expressed genes identified by RNA-seq and CUT&Tag-seq. Secreted proteins with statistically significant differences are listed below. (J) IGV snapshot of Thp1 nc and Thp1 −/− cells showing the H3K27ac CUT&Tag signals at the Efemp1 genomic loci. (K) H3K27ac occupancy in the genome of Efemp1 analysed by ChIP-qPCR. n = 4 duplicates/group. (L) Relative expression of Efemp1 genes in Thp1 nc and Thp1 −/− cells determined by qPCR. n = 6 duplicates/group. The data are presented as the means ± SEMs. The results presented in (A, C, K, and L) were analyzed via two-tailed Student's t test. ns, not statistically significant. **p < 0.01; ***p < 0.001.
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    Nucleic P-ACLY within Golm1 -knockout macrophage regulates Efemp1 expression through <t>H3K27</t> <t>acetylation</t> (A) Total histone H3 acetylation levels in Thp1 nc and Thp1 −/− cells determined by Histone H3 acetylation detection Kit. n = 9 replicated wells. (B-C) WB detecting (B) and quantitative analysis (C) of the protein levels of various acetylated histone H3. n = 3 independent experiments. (D) PCA plot of CUT&Tag-seq data of experiments with Thp1 nc and Thp1 −/− cells. n = 3 samples/group. (E) Pie chart showing the distribution of <t>H3K27ac</t> peaks across annotated genomic regions in Thp1 nc and Thp1 −/− cells. (F) Heatmap showing the genomic occupancy of H3K27ac from −3 kb flanking TSS to + 3 kb flanking TES in Thp1 nc or Thp1 −/− cells. The x-axis represents the position of reads relative to the TSS, and the y-axis represents the read density. (G) CUT&Tag-seq volcano plot of different gene peaks between Thp1 nc and Thp1 −/− cells. (H) RNA-seq volcano plot of DEGs between BMDMs wt and BMDMs mko cells. n = 3 mice/group. (I) Overlap of differentially expressed genes identified by RNA-seq and CUT&Tag-seq. Secreted proteins with statistically significant differences are listed below. (J) IGV snapshot of Thp1 nc and Thp1 −/− cells showing the H3K27ac CUT&Tag signals at the Efemp1 genomic loci. (K) H3K27ac occupancy in the genome of Efemp1 analysed by ChIP-qPCR. n = 4 duplicates/group. (L) Relative expression of Efemp1 genes in Thp1 nc and Thp1 −/− cells determined by qPCR. n = 6 duplicates/group. The data are presented as the means ± SEMs. The results presented in (A, C, K, and L) were analyzed via two-tailed Student's t test. ns, not statistically significant. **p < 0.01; ***p < 0.001.
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    Image Search Results


    Nucleic P-ACLY within Golm1 -knockout macrophage regulates Efemp1 expression through H3K27 acetylation (A) Total histone H3 acetylation levels in Thp1 nc and Thp1 −/− cells determined by Histone H3 acetylation detection Kit. n = 9 replicated wells. (B-C) WB detecting (B) and quantitative analysis (C) of the protein levels of various acetylated histone H3. n = 3 independent experiments. (D) PCA plot of CUT&Tag-seq data of experiments with Thp1 nc and Thp1 −/− cells. n = 3 samples/group. (E) Pie chart showing the distribution of H3K27ac peaks across annotated genomic regions in Thp1 nc and Thp1 −/− cells. (F) Heatmap showing the genomic occupancy of H3K27ac from −3 kb flanking TSS to + 3 kb flanking TES in Thp1 nc or Thp1 −/− cells. The x-axis represents the position of reads relative to the TSS, and the y-axis represents the read density. (G) CUT&Tag-seq volcano plot of different gene peaks between Thp1 nc and Thp1 −/− cells. (H) RNA-seq volcano plot of DEGs between BMDMs wt and BMDMs mko cells. n = 3 mice/group. (I) Overlap of differentially expressed genes identified by RNA-seq and CUT&Tag-seq. Secreted proteins with statistically significant differences are listed below. (J) IGV snapshot of Thp1 nc and Thp1 −/− cells showing the H3K27ac CUT&Tag signals at the Efemp1 genomic loci. (K) H3K27ac occupancy in the genome of Efemp1 analysed by ChIP-qPCR. n = 4 duplicates/group. (L) Relative expression of Efemp1 genes in Thp1 nc and Thp1 −/− cells determined by qPCR. n = 6 duplicates/group. The data are presented as the means ± SEMs. The results presented in (A, C, K, and L) were analyzed via two-tailed Student's t test. ns, not statistically significant. **p < 0.01; ***p < 0.001.

    Journal: Journal of Advanced Research

    Article Title: The GOLM1-ACLY pathway regulates macrophage-secreted EFEMP1 via H3K27ac modifications to drive tumor progression

    doi: 10.1016/j.jare.2025.07.003

    Figure Lengend Snippet: Nucleic P-ACLY within Golm1 -knockout macrophage regulates Efemp1 expression through H3K27 acetylation (A) Total histone H3 acetylation levels in Thp1 nc and Thp1 −/− cells determined by Histone H3 acetylation detection Kit. n = 9 replicated wells. (B-C) WB detecting (B) and quantitative analysis (C) of the protein levels of various acetylated histone H3. n = 3 independent experiments. (D) PCA plot of CUT&Tag-seq data of experiments with Thp1 nc and Thp1 −/− cells. n = 3 samples/group. (E) Pie chart showing the distribution of H3K27ac peaks across annotated genomic regions in Thp1 nc and Thp1 −/− cells. (F) Heatmap showing the genomic occupancy of H3K27ac from −3 kb flanking TSS to + 3 kb flanking TES in Thp1 nc or Thp1 −/− cells. The x-axis represents the position of reads relative to the TSS, and the y-axis represents the read density. (G) CUT&Tag-seq volcano plot of different gene peaks between Thp1 nc and Thp1 −/− cells. (H) RNA-seq volcano plot of DEGs between BMDMs wt and BMDMs mko cells. n = 3 mice/group. (I) Overlap of differentially expressed genes identified by RNA-seq and CUT&Tag-seq. Secreted proteins with statistically significant differences are listed below. (J) IGV snapshot of Thp1 nc and Thp1 −/− cells showing the H3K27ac CUT&Tag signals at the Efemp1 genomic loci. (K) H3K27ac occupancy in the genome of Efemp1 analysed by ChIP-qPCR. n = 4 duplicates/group. (L) Relative expression of Efemp1 genes in Thp1 nc and Thp1 −/− cells determined by qPCR. n = 6 duplicates/group. The data are presented as the means ± SEMs. The results presented in (A, C, K, and L) were analyzed via two-tailed Student's t test. ns, not statistically significant. **p < 0.01; ***p < 0.001.

    Article Snippet: The Bead-bound cells were resuspended and sequentially incubated with anti-H3K27ac primary antibody (8173S, Cell Signaling Technology, USA) and secondary antibody (TransGen Biotech, China).

    Techniques: Knock-Out, Expressing, RNA Sequencing, ChIP-qPCR, Two Tailed Test