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Human ISWI complexes are targeted by SMARCA5 ATPase and SLIDE domains to help resolve lesion-stalled transcription

机译:SMARCA5 ATPase和SLIDE结构域靶向人类ISWI复合物以帮助解决受损的转录

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摘要

Chromatin compaction of deoxyribonucleic acid (DNA) presents a major challenge to the detection and removal of DNA damage. Helix-distorting DNA lesions that block transcription are specifically repaired by transcription-coupled nucleotide excision repair, which is initiated by binding of the CSB protein to lesion-stalled RNA polymerase II. Using live cell imaging, we identify a novel function for two distinct mammalian ISWI adenosine triphosphate (ATP)-dependent chromatin remodeling complexes in resolving lesion-stalled transcription. Human ISWI isoform SMARCA5/SNF2H and its binding partners ACF1 and WSTF are rapidly recruited to UV-C induced DNA damage to specifically facilitate CSB binding and to promote transcription recovery. SMARCA5 targeting to UV-C damage depends on transcription and histone modifications and requires functional SWI2/SNF2-ATPase and SLIDE domains. After initial recruitment to UV damage, SMARCA5 re-localizes away from the center of DNA damage, requiring its HAND domain. Our studies support a model in which SMARCA5 targeting to DNA damage-stalled transcription sites is controlled by an ATP-hydrolysis-dependent scanning and proofreading mechanism, highlighting how SWI2/SNF2 chromatin remodelers identify and bind nucleosomes containing damaged DNA.
机译:脱氧核糖核酸(DNA)的染色质压实对DNA损伤的检测和消除提出了重大挑战。阻断转录的扭曲螺旋的DNA损伤可以通过转录偶联的核苷酸切除修复来特异性修复,这是通过CSB蛋白与受损的RNA聚合酶II结合而启动的。使用活细胞成像,我们确定了两种独特的哺乳动物ISWI三磷酸腺苷三磷酸腺苷(ATP)依赖的染色质重塑复合物的新功能,可解决病变引起的转录。人类ISWI同工型SMARCA5 / SNF2H及其结合伴侣ACF1和WSTF被迅速招募至UV-C诱导的DNA损伤,以特异性促进CSB结合并促进转录恢复。靶向UV-C损伤的SMARCA5取决于转录和组蛋白修饰,并需要功能性SWI2 / SNF2-ATPase和SLIDE域。最初招募到UV损伤后,SMARCA5从DNA损伤中心重新定位,需要其HAND结构域。我们的研究支持一种模型,其中针对DNA破坏的转录位点的SMARCA5受ATP水解依赖性扫描和校对机制控制,强调了SWI2 / SNF2染色质重塑剂如何识别和结合含有受损DNA的核小体。

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