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首页> 外文期刊>Molecular cell >Chromodomain-mediated oligomerization of HP1 suggests a nucleosome-bridging mechanism for heterochromatin assembly.
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Chromodomain-mediated oligomerization of HP1 suggests a nucleosome-bridging mechanism for heterochromatin assembly.

机译:Chromodomain介导的HP1的低聚理化表明了异铬胺组件的核心桥接机制。

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HP1 proteins are central to the assembly and spread of heterochromatin containing histone H3K9 methylation. The chromodomain (CD) of HP1 proteins specifically recognizes the methyl mark on H3 peptides, but the same extent of specificity is not observed within chromatin. The chromoshadow domain of HP1 proteins promotes homodimerization, but this alone cannot explain heterochromatin spread. Using the S. pombe HP1 protein, Swi6, we show that recognition of H3K9-methylated chromatin in vitro relies on an interface between two CDs. This interaction causes Swi6 to tetramerize on a nucleosome, generating two vacant CD sticky ends. On nucleosomal arrays, methyl mark recognition is highly sensitive to internucleosomal distance, suggesting that the CD sticky ends bridge nearby methylated nucleosomes. Strengthening the CD-CD interaction enhances silencing and heterochromatin spread in vivo. Our findings suggest that recognition of methylated nucleosomes and HP1 spread on chromatin are structurally coupled and imply that methylation and nucleosome arrangement synergistically regulate HP1 function.
机译:HP1蛋白质是组装中的核心和含有组蛋白H3K9甲基化的异铬胺的涂抹。 HP1蛋白的染色瘤(CD)特异性识别H3肽上的甲基标记,但在染色质中未观察到相同的特异性程度。 HP1蛋白质的色组织结构域促进同型化学,但单独不能解释异甘氨酸的扩散。使用S.Pombe HP1蛋白质,SWI6,我们表明,体外识别H3K9-甲基化染色质的鉴别依赖于两个CD之间的界面。该相互作用使SWI6在核小体上进行四聚集,产生两个空位CD粘性末端。在核体阵列上,甲基标记识别对核心距离高度敏感,表明CD粘性桥桥附近的甲基化核。加强CD-CD相互作用增强沉默和异铬胺在体内扩散。我们的研究结果表明,甲基化核胚源和HP1在染色质上展开的识别是在结构上偶联的,并且意味着甲基化和核小体排列协同调节HP1功能。

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