产品详情
产品名称Histone H3K27me3 Polyclonal Antibody
来源种属Rabbit
克隆性Polyclonal
亚型IgG
纯化Affinity purification
应用WB,IHC,IF
种属反应性Human,Mouse,Rat
免疫原类型Peptide
免疫原描述A synthetic methylated peptide of human histone H3
基因/蛋白名称Histone H3
修饰Methyl
别名H3.4;H3/g;H3FT;H3t;HIST3H3;Histone H3;HIST1H3A
数据库入口号Uniprot:Q16695
GeneID:8290
UniprotQ16695
Gene ID8290
实际分子量17KDa
浓度1.0mg/ml
配方PBS with 0.02% sodium azide,50% glycerol,pH7.3.
保存Store at -20˚C. Avoid freeze / thaw cycles.
应用详情
WB 1:500 - 1:2000
IHC 1:50 - 1:200
IF 1:50 - 1:200
Western blot analysis of extracts of various cell lines, using TriMethyl-Histone H3-K27 antibody.
Immunohistochemistry of paraffin-embedded rat ovary using TriMethyl-Histone H3-K27 antibody.
Immunohistochemistry of paraffin-embedded human breast cancer using TriMethyl-Histone H3-K27 antibody.
Immunohistochemistry of paraffin-embedded mouse brain using TriMethyl-Histone H3-K27 antibody.
Immunofluorescence analysis of C6 cells using TriMethyl-Histone H3-K27 antibody.
Immunofluorescence analysis of NIH/3T3 cells using TriMethyl-Histone H3-K27 antibody.
Immunofluorescence analysis of U-2 OS cells using TriMethyl-Histone H3-K27 antibody.
背景
Actin is a key regulator of RNA polymerase (Pol) II-dependent transcription. Positive transcription elongation factor b (P-TEFb), a Cdk9/cyclin T1 heterodimer, has been reported to play a critical role in transcription elongation. However, the relationship between actin and P-TEFb is still not clear. In this study, actin was found to interact with Cdk9, a catalytic subunit of P-TEFb, in elongation complexes. Using immunofluorescence and immunoprecipitation assays, Cdk9 was found to bind to G-actin through the conserved Thr-186 in the T-loop. Overexpression and in vitro kinase assays showed that G-actin promotes P-TEFb-dependent phosphorylation of the Pol II C-terminal domain. An in vitro transcription experiment revealed that the interaction between G-actin and Cdk9 stimulated Pol II transcription elongation. ChIP and immobilized template assays indicated that actin recruited Cdk9 to a transcriptional template in vivo and in vitro. Using cytokine IL-6-inducible p21 gene expression system, we revealed that actin recruited Cdk9 to endogenous gene. Moreover, overexpression of actin and Cdk9 increased histone H3 acetylation and acetylized histone H3 binding to a transcriptional template through the interaction with histone acetyltransferase, p300. Taken together, our results suggested that actin participates in transcription elongation by recruiting Cdk9 for phosphorylation of the Pol II C-terminal domain, and the actin-Cdk9 interaction promotes chromatin remodeling.