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Df31 Protein and snoRNAs Maintain Accessible Higher-Order Structures of Chromatin

机译:Df31蛋白和snoRNAs保持染色质的可访问高阶结构

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摘要

Packaging of DNA into nucleosomes and the formation of higher-order chromatin structures determine DNA accessibility and activity of genome domains. We identified an RNA-dependent mechanism maintaining the open chromatin structure within euchromatic regions in Drosophila cells. The mechanism of reversible chromatin opening, reconstituted in vitro, depends on the Drosophila decondensation factor 31 (Df31) that specifically binds to RNA and localizes to euchromatic regions. Df31 is capable to tether a heterogeneous pool of short, single-stranded RNAs to chromatin. This class of chromatin-associated RNA (caRNA) is stably linked to chromatin and is largely composed of snoRNAs, which are preferentially bound by Df31. We suggest that the Df31-mediated linkage of snoRNAs and chromatin, forms a RNA-chromatin network resulting in the establishment of open chromatin domains. Analysis of caRNAs in human cells also reveals a strong enrichment of snoRNAs, implying a conserved role for these molecules in higher-order structures of chromatin.
机译:将DNA包装到核小体中以及高级染色质结构的形成决定了DNA的可及性和基因组结构域的活性。我们确定了一种RNA依赖性机制,在果蝇细胞的常染色体区域内保持开放的染色质结构。体外重建的可逆染色质打开机制取决于果蝇去缩合因子31(Df31),它与RNA特异性结合并位于常染色体区域。 Df31能够将短单链RNA的异质池束缚在染色质上。这类与染色质相关的RNA(caRNA)与染色质稳定连接,并且主要由snoRNA组成,后者优先与Df31结合。我们建议,Df31介导的snoRNA和染色质的链接,形成导致开放染色质域建立的RNA染色质网络。对人类细胞中的caRNA的分析还揭示了snoRNA的高度富集,这暗示了这些分子在染色质的更高阶结构中的保守作用。

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