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解旋酶样转录因子的 HIRAN 结构域定位 DNA 转位酶马达,以驱动有效的 DNA 叉回归。

The HIRAN domain of helicase-like transcription factor positions the DNA translocase motor to drive efficient DNA fork regression.

机构信息

From the Department of Biological Sciences and.

From the Department of Biological Sciences and

出版信息

J Biol Chem. 2018 Jun 1;293(22):8484-8494. doi: 10.1074/jbc.RA118.002905. Epub 2018 Apr 11.

DOI:10.1074/jbc.RA118.002905
PMID:29643183
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5986216/
Abstract

Helicase-like transcription factor (HLTF) is a central mediator of the DNA damage response and maintains genome stability by regressing stalled replication forks. The N-terminal HIRAN domain binds specifically to the 3'-end of single-stranded DNA (ssDNA), and disrupting this function interferes with fork regression as well as replication fork progression in cells under replication stress. Here, we investigated the mechanism by which the HIRAN-ssDNA interaction facilitates fork remodeling. Our results indicated that HIRAN capture of a denatured nascent leading 3'-end directs specific binding of HLTF to forks. DNase footprinting revealed that HLTF binds to the parental duplex ahead of the fork and at the leading edge behind the fork. Moreover, we found that the HIRAN domain is important for initiating regression of forks when both nascent strands are at the junction, but is dispensable when forks contain ssDNA regions on either template strand. We also found that HLTF catalyzes fork restoration from a partially regressed structure in a HIRAN-dependent manner. Thus, HIRAN serves as a substrate-recognition domain to properly orient the ATPase motor domain at stalled and regressed forks and initiates fork remodeling by guiding formation of a four-way junction. We discuss how these activities compare with those of two related fork remodelers, SWI/SNF-related, matrix-associated, actin-dependent regulator of chromatin, subfamily A-like 1 (SMARCAL1) and zinc finger RANBP2 type-containing 3 (ZRANB3) to provide insight into their nonredundant roles in DNA damage tolerance.

摘要

解旋酶样转录因子 (HLTF) 是 DNA 损伤反应的核心介质,通过使停滞的复制叉倒退来维持基因组稳定性。N 端的 HIRAN 结构域特异性地与单链 DNA(ssDNA)的 3'-末端结合,破坏此功能会干扰复制叉倒退以及复制压力下细胞中的复制叉进展。在这里,我们研究了 HIRAN-ssDNA 相互作用促进叉重塑的机制。我们的结果表明,HIRAN 捕获变性的新生前导链 3'-末端指导 HLTF 特异性结合到叉上。DNase 足迹实验显示,HLTF 在叉前与亲本双链体结合,并在叉后前沿结合。此外,我们发现 HIRAN 结构域对于两条新生链都在连接处时启动叉倒退很重要,但当叉包含模板链上的 ssDNA 区域时,该结构域则不重要。我们还发现 HLTF 以 HIRAN 依赖的方式催化从部分倒退结构恢复的叉。因此,HIRAN 作为底物识别结构域,将 ATP 酶马达结构域正确定向到停滞和倒退的叉上,并通过引导形成四链结来启动叉重塑。我们讨论了这些活性与两种相关的叉重塑酶,SWI/SNF 相关,基质相关,肌动蛋白依赖性染色质调节剂,亚家族 A 样 1(SMARCAL1)和含锌指 RANBP2 型 3(ZRANB3)的活性相比如何,以深入了解它们在 DNA 损伤耐受中的非冗余作用。

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本文引用的文献

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Functions of SMARCAL1, ZRANB3, and HLTF in maintaining genome stability.SMARCAL1、ZRANB3和HLTF在维持基因组稳定性中的功能。
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AtRAD5A is a DNA translocase harboring a HIRAN domain which confers binding to branched DNA structures and is required for DNA repair in vivo.AtRAD5A是一种具有HIRAN结构域的DNA转位酶,该结构域赋予其与分支DNA结构的结合能力,并且是体内DNA修复所必需的。
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DNA damage tolerance.DNA 损伤容忍。
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A short G1 phase imposes constitutive replication stress and fork remodelling in mouse embryonic stem cells.较短的G1期在小鼠胚胎干细胞中施加了组成型复制应激和叉重塑。
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Replication stress: getting back on track.复制应激:重回正轨。
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Human HLTF mediates postreplication repair by its HIRAN domain-dependent replication fork remodelling.人类 HLTF 通过其依赖 HIRAN 结构域的复制叉重塑来介导复制后修复。
Nucleic Acids Res. 2015 Dec 2;43(21):10277-91. doi: 10.1093/nar/gkv896. Epub 2015 Sep 8.
9
HLTF's Ancient HIRAN Domain Binds 3' DNA Ends to Drive Replication Fork Reversal.HLTF的古老HIRAN结构域结合3'端DNA以驱动复制叉逆转。
Mol Cell. 2015 Jun 18;58(6):1090-100. doi: 10.1016/j.molcel.2015.05.013. Epub 2015 Jun 4.
10
Structure of a Novel DNA-binding Domain of Helicase-like Transcription Factor (HLTF) and Its Functional Implication in DNA Damage Tolerance.解旋酶样转录因子(HLTF)新型DNA结合结构域的结构及其在DNA损伤耐受中的功能意义
J Biol Chem. 2015 May 22;290(21):13215-23. doi: 10.1074/jbc.M115.643643. Epub 2015 Apr 9.