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Single-molecule imaging reveals the mechanism of Exo1 regulation by single-stranded DNA binding proteins.单分子成像揭示了单链DNA结合蛋白对Exo1的调控机制。
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Poly(ADP-ribose)-binding promotes Exo1 damage recruitment and suppresses its nuclease activities.聚(ADP - 核糖)结合促进Exo1在损伤位点的募集并抑制其核酸酶活性。
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The PIN domain of EXO1 recognizes poly(ADP-ribose) in DNA damage response.EXO1的PIN结构域在DNA损伤应答中识别聚(ADP-核糖)。
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Human exonuclease 1 (EXO1) activity characterization and its function on flap structures.人类核酸外切酶1(EXO1)活性表征及其对瓣状结构的作用。
Biosci Rep. 2015 Apr 25;35(3):e00206. doi: 10.1042/BSR20150058.
8
The Saccharomyces cerevisiae Dna2 can function as a sole nuclease in the processing of Okazaki fragments in DNA replication.酿酒酵母Dna2在DNA复制过程中冈崎片段的加工中可作为唯一的核酸酶发挥作用。
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The exonuclease 1 Glu589Lys gene polymorphism and cancer susceptibility: evidence based on a meta-analysis.核酸外切酶1 Glu589Lys基因多态性与癌症易感性:基于荟萃分析的证据
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人核酸外切酶 I 的外切和内切反应中催化、保真度、穿入和延伸性的相互作用。

Interplay of catalysis, fidelity, threading, and processivity in the exo- and endonucleolytic reactions of human exonuclease I.

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, NC 27710.

Department of Biochemistry, Duke University Medical Center, Durham, NC 27710

出版信息

Proc Natl Acad Sci U S A. 2017 Jun 6;114(23):6010-6015. doi: 10.1073/pnas.1704845114. Epub 2017 May 22.

DOI:10.1073/pnas.1704845114
PMID:28533382
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5468604/
Abstract

Human exonuclease 1 (hExo1) is a member of the RAD2/XPG structure-specific 5'-nuclease superfamily. Its dominant, processive 5'-3' exonuclease and secondary 5'-flap endonuclease activities participate in various DNA repair, recombination, and replication processes. A single active site processes both recessed ends and 5'-flap substrates. By initiating enzyme reactions in crystals, we have trapped hExo1 reaction intermediates that reveal structures of these substrates before and after their exo- and endonucleolytic cleavage, as well as structures of uncleaved, unthreaded, and partially threaded 5' flaps. Their distinctive 5' ends are accommodated by a small, mobile arch in the active site that binds recessed ends at its base and threads 5' flaps through a narrow aperture within its interior. A sequence of successive, interlocking conformational changes guides the two substrate types into a shared reaction mechanism that catalyzes their cleavage by an elaborated variant of the two-metal, in-line hydrolysis mechanism. Coupling of substrate-dependent arch motions to transition-state stabilization suppresses inappropriate or premature cleavage, enhancing processing fidelity. The striking reduction in flap conformational entropy is catalyzed, in part, by arch motions and transient binding interactions between the flap and unprocessed DNA strand. At the end of the observed reaction sequence, hExo1 resets without relinquishing DNA binding, suggesting a structural basis for its processivity.

摘要

人类核酸外切酶 1(hExo1)是 RAD2/XPG 结构特异性 5'-核酸内切酶超家族的成员。其主要的、连续的 5'-3'核酸外切酶和次要的 5'-发夹内切酶活性参与各种 DNA 修复、重组和复制过程。单一的活性位点处理凹端和 5'-发夹底物。通过在晶体中启动酶反应,我们捕获了 hExo1 反应中间体,这些中间体揭示了这些底物在exonuclease 和endonuclease 切割前后的结构,以及未切割、未解旋和部分解旋的 5' 发夹的结构。它们独特的 5' 末端被活性位点中的一个小的、可移动的拱容纳,该拱在其底部结合凹端,并通过内部的一个狭窄孔将 5' 发夹穿过。一系列连续的、相互锁定的构象变化将两种底物类型引导到一个共享的反应机制中,该机制通过一种改良的双金属、在线水解机制来催化它们的切割。底物依赖性拱运动与过渡态稳定的耦合抑制了不适当或过早的切割,提高了加工保真度。发夹构象熵的显著降低部分由拱运动和发夹与未加工 DNA 链之间的瞬时结合相互作用催化。在观察到的反应序列结束时,hExo1 在不放弃 DNA 结合的情况下重置,这表明其连续性的结构基础。