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Three mechanistic steps detected by FRET after presynaptic filament formation in homologous recombination. ATP hydrolysis required for release of oligonucleotide heteroduplex product from RecA.在同源重组中突触前细丝形成后通过荧光共振能量转移检测到的三个机制步骤。从RecA释放寡核苷酸异源双链体产物需要ATP水解。
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Appropriate initiation of the strand exchange reaction promoted by RecA protein requires ATP hydrolysis.RecA蛋白促进的链交换反应的适当起始需要ATP水解。
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Visualizing recombination intermediates with single-stranded DNA curtains.利用单链DNA幕布可视化重组中间体。
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2
An Overview of the Molecular Mechanisms of Recombinational DNA Repair.重组DNA修复的分子机制概述
Cold Spring Harb Perspect Biol. 2015 Nov 2;7(11):a016410. doi: 10.1101/cshperspect.a016410.
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Meiotic Recombination: The Essence of Heredity.减数分裂重组:遗传的本质。
Cold Spring Harb Perspect Biol. 2015 Oct 28;7(12):a016618. doi: 10.1101/cshperspect.a016618.
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Structure/function relationships in RecA protein-mediated homology recognition and strand exchange.RecA蛋白介导的同源性识别和链交换中的结构/功能关系。
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DNA RECOMBINATION. Base triplet stepping by the Rad51/RecA family of recombinases.DNA重组。由Rad51/RecA重组酶家族进行的碱基三联体步移。
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DNA sequence alignment by microhomology sampling during homologous recombination.同源重组过程中通过微同源性采样进行的DNA序列比对。
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DNA-pairing and annealing processes in homologous recombination and homology-directed repair.同源重组和同源定向修复中的DNA配对与退火过程。
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Mechanisms and regulation of mitotic recombination in Saccharomyces cerevisiae.酿酒酵母有丝分裂重组的机制与调控
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9
RecA-mediated sequence homology recognition as an example of how searching speed in self-assembly systems can be optimized by balancing entropic and enthalpic barriers.以RecA介导的序列同源性识别为例,说明如何通过平衡熵垒和焓垒来优化自组装系统中的搜索速度。
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Mechanisms and principles of homology search during recombination.同源重组过程中同源搜索的机制和原理。
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ATP水解促进RecA突触前复合物释放双链DNA。

ATP hydrolysis Promotes Duplex DNA Release by the RecA Presynaptic Complex.

作者信息

Lee Ja Yil, Qi Zhi, Greene Eric C

机构信息

From the Department of Biochemistry & Molecular Biophysics, Columbia University, New York, New York 10032 and.

the Center of Quantitative Biology & Center of Life Sciences, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, 100871 China.

出版信息

J Biol Chem. 2016 Oct 14;291(42):22218-22230. doi: 10.1074/jbc.M116.740563. Epub 2016 Sep 1.

DOI:10.1074/jbc.M116.740563
PMID:27587394
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5064001/
Abstract

Homologous recombination is an important DNA repair pathway that plays key roles in maintaining genome stability. Escherichia coli RecA is an ATP-dependent DNA-binding protein that catalyzes the DNA strand exchange reactions in homologous recombination. RecA assembles into long helical filaments on single-stranded DNA, and these presynaptic complexes are responsible for locating and pairing with a homologous duplex DNA. Recent single molecule studies have provided new insights into RecA behavior, but the potential influence of ATP in the reactions remains poorly understood. Here we examine how ATP influences the ability of the RecA presynaptic complex to interact with homologous dsDNA. We demonstrate that over short time regimes, RecA presynaptic complexes sample heterologous dsDNA similarly in the presence of either ATP or ATPγS, suggesting that initial interactions do not depend on ATP hydrolysis. In addition, RecA stabilizes pairing intermediates in three-base steps, and stepping energetics is seemingly unaltered in the presence of ATP. However, the overall dissociation rate of these paired intermediates with ATP is ∼4-fold higher than with ATPγS. These experiments suggest that ATP plays an unanticipated role in promoting the turnover of captured duplex DNA intermediates as RecA attempts to align homologous sequences during the early stages of recombination.

摘要

同源重组是一种重要的DNA修复途径,在维持基因组稳定性方面发挥着关键作用。大肠杆菌RecA是一种依赖ATP的DNA结合蛋白,在同源重组中催化DNA链交换反应。RecA在单链DNA上组装成长螺旋丝,这些突触前复合物负责与同源双链DNA定位和配对。最近的单分子研究为RecA的行为提供了新的见解,但ATP在反应中的潜在影响仍知之甚少。在这里,我们研究了ATP如何影响RecA突触前复合物与同源双链DNA相互作用的能力。我们证明,在短时间内,RecA突触前复合物在ATP或ATPγS存在下类似地对异源双链DNA进行采样,这表明初始相互作用不依赖于ATP水解。此外,RecA以三个碱基的步长稳定配对中间体,并且在ATP存在下步移能量似乎没有改变。然而,这些配对中间体与ATP的总体解离速率比与ATPγS的解离速率高约4倍。这些实验表明,在重组早期RecA试图对齐同源序列时,ATP在促进捕获的双链DNA中间体的周转方面发挥了意想不到的作用。