首页> 美国卫生研究院文献>PLoS Genetics >ATP-Dependent Chromatin Remodeling by Cockayne Syndrome Protein B and NAP1-Like Histone Chaperones Is Required for Efficient Transcription-Coupled DNA Repair
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ATP-Dependent Chromatin Remodeling by Cockayne Syndrome Protein B and NAP1-Like Histone Chaperones Is Required for Efficient Transcription-Coupled DNA Repair

机译:有效的转录偶联DNA修复需要由Cockayne综合征蛋白B和像NAP1的组蛋白伴侣的ATP依赖染色质重塑。

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摘要

The Cockayne syndrome complementation group B (CSB) protein is essential for transcription-coupled DNA repair, and mutations in CSB are associated with Cockayne syndrome—a devastating disease with complex clinical features, including the appearance of premature aging, sun sensitivity, and numerous neurological and developmental defects. CSB belongs to the SWI2/SNF2 ATP–dependent chromatin remodeler family, but the extent to which CSB remodels chromatin and whether this activity is utilized in DNA repair is unknown. Here, we show that CSB repositions nucleosomes in an ATP–dependent manner in vitro and that this activity is greatly enhanced by the NAP1-like histone chaperones, which we identify as new CSB–binding partners. By mapping functional domains and analyzing CSB derivatives, we demonstrate that chromatin remodeling by the combined activities of CSB and the NAP1-like chaperones is required for efficient transcription-coupled DNA repair. Moreover, we show that chromatin remodeling and repair protein recruitment mediated by CSB are separable activities. The collaboration that we observed between CSB and the NAP1-like histone chaperones adds a new dimension to our understanding of the ways in which ATP–dependent chromatin remodelers and histone chaperones can regulate chromatin structure. Taken together, the results of this study offer new insights into the functions of chromatin remodeling by CSB in transcription-coupled DNA repair as well as the underlying mechanisms of Cockayne syndrome.
机译:Cockayne综合征补充群B(CSB)蛋白对于转录偶联的DNA修复至关重要,CSB中的突变与Cockayne综合征有关-Cockayne综合征是一种具有复杂临床特征的破坏性疾病,包括过早衰老,日晒敏感性和大量神经系统疾病和发育缺陷。 CSB属于SWI2 / SNF2 ATP依赖的染色质重塑剂家族,但是CSB重塑染色质的程度以及这种活性是否可用于DNA修复尚不清楚。在这里,我们表明CSB在体外以ATP依赖的方式重新定位核小体,并且NAP1样组蛋白伴侣被大大增强了这种活性,我们将其识别为新的CSB结合伴侣。通过映射功能域和分析CSB衍生物,我们证明了通过CSB和NAP1样分子伴侣的联合活性进行的染色质重塑是有效的转录偶联DNA修复所必需的。此外,我们表明,CSB介导的染色质重塑和修复蛋白募集是可分离的活动。我们在CSB和类似NAP1的组蛋白伴侣中观察到的合作为我们对依赖ATP的染色质重塑剂和组蛋白伴侣调节染色质结构的方式的理解增加了新的维度。综上所述,这项研究的结果为CSB染色质重塑在转录偶联DNA修复中的功能以及Cockayne综合征的潜在机制提供了新的见解。

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