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首页> 外文期刊>eLife journal >Nucleosome disassembly during human non-homologous end joining followed by concerted HIRA- and CAF-1-dependent reassembly
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Nucleosome disassembly during human non-homologous end joining followed by concerted HIRA- and CAF-1-dependent reassembly

机译:在人类非同源末端连接过程中进行核小体拆卸,然后进行依赖HIRA和CAF-1的一致重组

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The cell achieves DNA double-strand break (DSB) repair in the context of chromatin structure. However, the mechanisms used to expose DSBs to the repair machinery and to restore the chromatin organization after repair remain elusive. Here we show that induction of a DSB in human cells causes local nucleosome disassembly, apparently independently from DNA end resection. This efficient removal of histone H3 from the genome during non-homologous end joining was promoted by both ATM and the ATP-dependent nucleosome remodeler INO80. Chromatin reassembly during DSB repair was dependent on the HIRA histone chaperone that is specific to the replication-independent histone variant H3.3 and on CAF-1 that is specific to the replication-dependent canonical histones H3.1/H3.2. Our data suggest that the epigenetic information is re-established after DSB repair by the concerted and interdependent action of replication-independent and replication-dependent chromatin assembly pathways.
机译:在染色质结构的背景下,该细胞可实现DNA双链断裂(DSB)修复。但是,用于将DSB暴露于修复机制并在修复后恢复染色质组织的机制仍然难以捉摸。在这里,我们显示在人细胞中DSB的诱导会导致局部核小体拆卸,显然独立于DNA末端切除。 ATM和ATP依赖性核小体重塑剂INO80都促进了在非同源末端连接过程中从基因组中有效去除组蛋白H3的过程。 DSB修复过程中的染色质重组依赖于特定于复制非依赖性组蛋白变体H3.3的HIRA组蛋白伴侣和依赖于复制依赖的典型组蛋白H3.1 / H3.2的CAF-1。我们的数据表明,表观遗传信息在DSB修复后通过复制非依赖性和复制依赖性染色质组装途径的协同作用和相互依赖的作用得以重建。

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