首页> 外文OA文献 >Global Analysis of H3K4 Methylation Defines MLL Family Member Targets and Points to a Role for MLL1-Mediated H3K4 Methylation in the Regulation of Transcriptional Initiation by RNA Polymerase II ▿ †
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Global Analysis of H3K4 Methylation Defines MLL Family Member Targets and Points to a Role for MLL1-Mediated H3K4 Methylation in the Regulation of Transcriptional Initiation by RNA Polymerase II ▿ †

机译:H3K4甲基化的全局分析确定了MLL家族成员的目标,并指出了MLL1介导的H3K4甲基化在RNA聚合酶II转录启动调控中的作用††

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摘要

A common landmark of activated genes is the presence of trimethylation on lysine 4 of histone H3 (H3K4) at promoter regions. Set1/COMPASS was the founding member and is the only H3K4 methylase in Saccharomyces cerevisiae; however, in mammals, at least six H3K4 methylases, Set1A and Set1B and MLL1 to MLL4, are found in COMPASS-like complexes capable of methylating H3K4. To gain further insight into the different roles and functional targets for the H3K4 methylases, we have undertaken a genome-wide analysis of H3K4 methylation patterns in wild-type Mll1+/+ and Mll1−/− mouse embryonic fibroblasts (MEFs). We found that Mll1 is required for the H3K4 trimethylation of less than 5% of promoters carrying this modification. Many of these genes, which include developmental regulators such as Hox genes, show decreased levels of RNA polymerase II recruitment and expression concomitant with the loss of H3K4 methylation. Although Mll1 is only required for the methylation of a subset of Hox genes, menin, a component of the Mll1 and Mll2 complexes, is required for the overwhelming majority of H3K4 methylation at Hox loci. However, the loss of MLL3/MLL4 and/or the Set1 complexes has little to no effect on the H3K4 methylation of Hox loci or their expression levels in these MEFs. Together these data provide insight into the redundancy and specialization of COMPASS-like complexes in mammals and provide evidence for a possible role for Mll1-mediated H3K4 methylation in the regulation of transcriptional initiation.
机译:激活基因的共同标志是在启动子区域的组蛋白H3(H3K4)的赖氨酸4上存在三甲基化。 Set1 / COMPASS是啤酒酵母中的唯一成员,并且是唯一的H3K4甲基化酶。然而,在哺乳动物中,在能够甲基化H3K4的COMPASS样复合物中发现了至少六个H3K4甲基化酶Set1A和Set1B以及MLL1至MLL4。为了进一步了解H3K4甲基化酶的不同作用和功能目标,我们对野生型Mll1 + / +和Mll1-/-小鼠胚胎成纤维细胞(MEFs)中的H3K4甲基化模式进行了全基因组分析。我们发现,少于5%带有该修饰的启动子的H3K4三甲基化需要Mll1。这些基因中的许多基因,包括诸如Hox基因等发育调节因子,都显示出RNA聚合酶II募集和表达水平下降,同时H3K4甲基化丧失。尽管Mll1仅是Hox基因子集的甲基化所必需的,但Menx是Mll1和Mll2复合体的组成部分,而Hox基因座上的绝大多数H3K4甲基化则是必需的。但是,MLL3 / MLL4和/或Set1复合物的丢失对Hox基因座的H3K4甲基化或其在这些MEF中的表达水平几乎没有影响。这些数据一起提供了对哺乳动物中COMPASS样复合物冗余和特化的深入了解,并为Mll1介导的H3K4甲基化在转录起始调控中的可能作用提供了证据。

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