首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Nucleosome Surface Formed by Histone H4 H2A and H3 Residues Is Needed for Proper Histone H3 Lys36 Methylation Histone Acetylation and Repression of Cryptic Transcription
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A Nucleosome Surface Formed by Histone H4 H2A and H3 Residues Is Needed for Proper Histone H3 Lys36 Methylation Histone Acetylation and Repression of Cryptic Transcription

机译:由组蛋白H4H2A和H3残留物形成的核小体表面需要正确的组蛋白H3 Lys36甲基化组蛋白乙酰化和抑制隐蔽转录

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摘要

Set2-mediated H3 Lys36 methylation is a histone modification that has been demonstrated to function in transcriptional elongation by recruiting the Rpd3S histone deacetylase complex to repress intragenic cryptic transcription. Recently, we identified a trans-histone pathway in which the interaction between the N terminus of Set2 and histone H4 Lys44 is needed to mediate trans-histone H3 Lys36 di- and trimethylation. In the current study, we demonstrate that mutation of the lysine 44 residue in histone H4 or the Set2 mutant lacking the histone H4 interaction motif leads to intragenic cryptic transcripts, indicating that the Set2 and histone H4 interaction is important to repress intragenic cryptic transcription. We also determine that histone H2A residues (Leu116 and Leu117), which are in close proximity to histone H4 Lys44, are needed for proper trans-histone H3 Lys36 methylation. Similar to H4 Lys44 mutants, histone H2A Leu116 and Leu117 mutations exhibited decreased H3 Lys36 di- and trimethylation, increased histone H4 acetylation, increased resistance to 6-azauracil, and cryptic transcription. Interestingly, the combined histone H4 Lys44 and H2A mutations have more severe methylation defects and increased H4 acetylation levels. Furthermore, we identify that additional histone H2A and H3 core residues are also needed for H3 Lys36 di- and trimethylation. Overall, our results show and suggest that multiple H4, H2A, and H3 residues contribute to and form a Set2 docking/recognition site on the nucleosomal surface so that proper Set2-mediated H3 Lys36 di- and trimethylation, histone acetylation, and transcriptional elongation can occur.
机译:Set2介导的H3 Lys 36 甲基化是一种组蛋白修饰,已被证实可通过募集Rpd3S组蛋白脱乙酰酶复合物抑制基因内的隐性转录而在转录延伸中起作用。最近,我们发现了一个反组蛋白途径,其中需要Set2的N末端与组蛋白H4 Lys 44 之间的相互作用来介导反组蛋白H3 Lys 36 di-和三甲基化。在当前的研究中,我们证明组蛋白H4中的赖氨酸44残基突变或缺少组蛋白H4相互作用基序的Set2突变体会导致基因内的隐性转录本,表明Set2和组蛋白H4相互作用对于抑制基因内的隐性转录很重要。我们还确定,需要与组蛋白H4 Lys 44 非常接近的组蛋白H2A残基(Leu 116 和Leu 117 )正确的反组蛋白H3 Lys 36 甲基化与H4 Lys 44 突变体相似,组蛋白H2A Leu 116 和Leu 117 突变体的H3 Lys 36 di-和三甲基化作用,增加组蛋白H4乙酰化作用,增加对6-氮杂嘧啶的抗性,以及隐性转录。有趣的是,组合的组蛋白H4 Lys 44 和H2A突变具有更严重的甲基化缺陷和增加的H4乙酰化水平。此外,我们发现,H3 Lys 36 二甲基和三甲基化还需要其他组蛋白H2A和H3核心残基。总的来说,我们的结果表明并暗示多个H4,H2A和H3残基有助于并在核小体表面上形成Set2对接/识别位点,从而使Set2介导的H3 Lys 36 二甲基和三甲基化适当进行,组蛋白乙酰化和转录延伸都可能发生。

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