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首页> 外文期刊>The Journal of biological chemistry >Roles of Chromatin Remodeling Factors in the Formation and Maintenance of Heterochromatin Structure
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Roles of Chromatin Remodeling Factors in the Formation and Maintenance of Heterochromatin Structure

机译:染色质改造因子在异染色素结构形成与维持的作用

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Heterochromatin consists of highly ordered nucleosomes with characteristic histone modifications. There is evidence implicating chromatin remodeling proteins in heterochromatin formation, but their exact roles are not clear. We demonstrate in Saccharomyces cerevisiae that the Fun30p and Isw1p chromatin remodeling factors are similarly required for transcriptional silencing at the HML locus, but they differentially contribute to the structure and stability of HML heterochromatin. In the absence of Fun30p, only a partially silenced structure is established at HML. Such a structure resembles fully silenced heterochromatin in histone modifications but differs markedly from both fully silenced and derepressed chromatin structures regarding nucleosome arrangement. This structure likely represents an intermediate state of heterochromatin that can be converted by Fun30p to the mature state. Moreover, Fun30p removal reduces the rate of de novo establishment of heterochromatin, suggesting that Fun30p assists the silencing machinery in forming heterochromatin. We also find evidence suggesting that Fun30p functions together with, or after, the action of the silencing machinery. On the other hand, Isw1p is dispensable for the formation of heterochromatin structure but is instead critically required for maintaining its stability. Therefore, chromatin remodeling proteins may rearrange nucleosomes during the formation of heterochromatin or serve to stabilize/maintain heterochromatin structure.
机译:异铬胺由具有特征组蛋白修饰的高度有序的核体组成。有证据表明染色蛋白改造蛋白质在异铬胺形成中,但它们的确切作用尚不清楚。我们在Saccharomyces酿酒酵母中证明了在HML基因座的转录沉默中类似地进行了FunCharomyces的酿酒蛋白改造因子,但它们差异有助于HML异化体的结构和稳定性。在没有充足的情况下,仅在HML中建立部分沉默的结构。这种结构在组蛋白修饰中类似于完全沉默的异铬甜酰蛋白,但与核小体布置的完全沉默和大规模的染色质结构显着不同。该结构可能代表可以通过Fun30P转换为成熟状态的异铬胺的中间状态。此外,Fun30P去除降低了异铬胺的De Novo建立的速率,这表明Fun30P有助于沉默机械在形成异铬胺。我们还发现证据表明有趣的30P功能与沉默机械的动作一起或之后。另一方面,ISW1P可用于形成异铬胺结构,而是保持稳定性所需的稳定性。因此,染色质重塑蛋白可以在形成异铬胺或用于稳定/维持异铬胺结构期间重新排列核胚段。

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