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通过对 Holliday Junction 解旋酶 RuvX 的结构导向研究,深入了解 ATP 刺激的分支 DNA 和 RNA 底物的切割。

Novel insights into ATP-Stimulated Cleavage of branched DNA and RNA Substrates through Structure-Guided Studies of the Holliday Junction Resolvase RuvX.

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore 560 012, India.

Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Mol Biol. 2021 Jun 25;433(13):167014. doi: 10.1016/j.jmb.2021.167014. Epub 2021 Apr 30.

Abstract

Much of our understanding of the homologous recombination (HR) machinery hinges on studies using Escherichia coli as a model organism. Interestingly enough, studies on the HR machinery in different bacterial species casts doubt on the universality of the E. coli paradigm. The human pathogen Mycobacterium tuberculosis encodes two Holliday junction (HJ)-resolvase paralogues, namely RuvC and RuvX; however, insights into their structural features and functional relevance is still limited. Here, we report on structure-guided functional studies of the M. tuberculosis RuvX HJ resolvase (MtRuvX). The crystalline MtRuvX is a dimer in the asymmetric unit, and each monomer has a RNAse H fold vis-à-vis RuvC-like nucleases. Interestingly, MtRuvX also contains some unique features, including the residues essential for ATP binding/coordination of Mg ions. Indeed, MtRuvX exhibited an intrinsic, robust ATPase activity, which was further accentuated by DNA cofactors. Structure-guided substitutions of single residues at the ATP binding/Mgcoordination sites while markedly attenuating the ATPase activity completely abrogated HJ cleavage, indicating an unanticipated relationship between ATP hydrolysis and DNA cleavage. However, the affinity of ATPase-deficient mutants for the HJ was not impaired. Contrary to RuvC, MtRuvX exhibits relaxed substrate specificity, cleaving a variety of branched DNA/RNA substrates. Notably, ATP hydrolysis plays a regulatory role, rendering MtRuvX from a canonical HJ resolvase to a DNA/RNA non-sequence specific endonuclease, indicating a link between HJ resolvase and nucleic acid metabolism. These findings provide novel insights into the structure and dual-functional activities of MtRuvX, and suggest that it may play an important role in DNA/RNA metabolism.

摘要

我们对同源重组(HR)机制的理解在很大程度上依赖于使用大肠杆菌作为模式生物的研究。有趣的是,对不同细菌物种中 HR 机制的研究对大肠杆菌范式的普遍性提出了质疑。人类病原体结核分枝杆菌编码两个 Holliday 连接(HJ)-解旋酶同源物,即 RuvC 和 RuvX;然而,对其结构特征和功能相关性的了解仍然有限。在这里,我们报告了结核分枝杆菌 RuvX HJ 解旋酶(MtRuvX)的结构导向功能研究。结晶的 MtRuvX 在不对称单位中是一个二聚体,每个单体都具有 RNAse H 折叠,类似于 RuvC 样核酸酶。有趣的是,MtRuvX 还包含一些独特的特征,包括对 ATP 结合/镁离子配位至关重要的残基。事实上,MtRuvX 表现出内在的、强大的 ATPase 活性,DNA 辅因子进一步增强了这种活性。在 ATP 结合/Mg 配位位点进行结构导向的单个残基取代,同时明显削弱 ATPase 活性,完全阻断 HJ 切割,表明 ATP 水解和 DNA 切割之间存在意想不到的关系。然而,ATPase 缺陷突变体与 HJ 的亲和力没有受损。与 RuvC 不同,MtRuvX 表现出宽松的底物特异性,可切割各种分支 DNA/RNA 底物。值得注意的是,ATP 水解发挥调节作用,使 MtRuvX 从典型的 HJ 解旋酶转变为 DNA/RNA 非序列特异性内切酶,表明 HJ 解旋酶与核酸代谢之间存在联系。这些发现为 MtRuvX 的结构和双重功能活性提供了新的见解,并表明它可能在 DNA/RNA 代谢中发挥重要作用。

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