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Chromatin remodelling and transcription: be-WICHed by nuclear myosin 1

机译:染色质重塑和转录:核肌球蛋白1

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摘要

Transcription in eukaryotic cells requires dynamic changes of chromatin structure to facilitate or prevent RNA polymerase access to active genes. These structural modifications rely on the concerted action of ATP-dependent chromatin-remodelling complexes and histone-modifying enzymes, which generate a chromatin configuration that is either compatible with transcription (euchromatin) or incompatible (heterochromatin). Insights into how these structural changes might be coordinated for RNA polymerase I (pol I) genes come from the discoveries of the nucleolar-remodelling complex (NoRC) and B-WICH--a high molecular weight fraction of the WSTF/SNF2h chromatin-remodelling complex. NoRC produces a repressive chromatin state; B-WICH, together with nuclear myosin 1, activates pol I transcription directly on chromatin templates and might also function in the maintenance of ribosomal chromatin structure.
机译:真核细胞中的转录需要染色质结构的动态变化,以促进或阻止RNA聚合酶进入活性基因。这些结构修饰依赖于ATP依赖的染色质重塑复合物和组蛋白修饰酶的协同作用,它们产生与转录(常染色质)相容或不相容(异染色质)的染色质构型。核仁重塑复合物(NoRC)和B-WICH的发现揭示了如何针对RNA聚合酶I(pol I)基因协调这些结构变化-WSTF / SNF2h染色质重塑的高分子量部分复杂。 NoRC产生抑制性染色质状态; B-WICH与核肌球蛋白1一起直接激活染色质模板上的pol I转录,还可能在维持核糖体染色质结构中起作用。

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