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Changes in higher order structures of chromatin by RNP complexes

机译:RNP络合物的染色质高阶结构的变化

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摘要

More than four decades ago, it was shown that RNA stably associates with chromatin. These studies indicated that chromatin-associated RNAs (caRNA) might be involved in the organization of chromatin structure. However, it is only recently that pools of chromatin-associated RNAs were characterized and functional studies were initiated. In Drosophila cells, an RNP complex consisting of snoRNAs and Decondensation factor 31 (Df31) is stably tethered to chromatin, mediated by the RNA- and histone-binding activities of Df31. Biochemical and functional characterizations suggest a structural role of this complex in chromatin organization. The binding of the Df31-snoRNA complex to chromatin results in the opening and the maintenance of accessible higher order structures of chromatin. We suggest that different classes of chromatin-associated RNPs are required for the targeted opening of higher order structures of chromatin, enabling the activation of DNA-dependent processes such as transcription.
机译:四十多年前,研究表明RNA与染色质稳定缔合。这些研究表明,染色质相关的RNA(caRNA)可能参与染色质结构的组织。然而,直到最近,染色质相关的RNA池才被表征并开始了功能研究。在果蝇细胞中,由snoRNA和去缩合因子31(Df31)组成的RNP复合物稳定地束缚在染色质上,由Df31的RNA和组蛋白结合活性介导。生化和功能表征表明该复合物在染色质组织中的结构作用。 Df31-snoRNA复合体与染色质的结合导致染色质的可访问性更高阶结构的开放和维持。我们建议针对不同类别的染色质相关RNPs的有针对性地打开染色质的更高阶结构,从而能够激活DNA依赖性过程(例如转录)。

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