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The poor homology stringency in the heteroduplex allows strand exchange to incorporate desirable mismatches without sacrificing recognition in vivo

机译:异源双链中不良的同源性严格性使得链交换可掺入所需的错配而不会牺牲体内识别

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摘要

RecA family proteins are responsible for homology search and strand exchange. In bacteria, homology search begins after RecA binds an initiating single-stranded DNA (ssDNA) in the primary DNA-binding site, forming the presynaptic filament. Once the filament is formed, it interrogates double-stranded DNA (dsDNA). During the interrogation, bases in the dsDNA attempt to form Watson–Crick bonds with the corresponding bases in the initiating strand. Mismatch dependent instability in the base pairing in the heteroduplex strand exchange product could provide stringent recognition; however, we present experimental and theoretical results suggesting that the heteroduplex stability is insensitive to mismatches. We also present data suggesting that an initial homology test of 8 contiguous bases rejects most interactions containing more than 1/8 mismatches without forming a detectable 20 bp product. We propose that, in vivo, the sparsity of accidental sequence matches allows an initial 8 bp test to rapidly reject almost all non-homologous sequences. We speculate that once the initial test is passed, the mismatch insensitive binding in the heteroduplex allows short mismatched regions to be incorporated in otherwise homologous strand exchange products even though sequences with less homology are eventually rejected.
机译:RecA家族蛋白负责同源性搜索和链交换。在细菌中,同源性搜索是在RecA在主要DNA结合位点结合起始单链DNA(ssDNA)并形成突触前丝之后开始的。一旦形成细丝,它就会询问双链DNA(dsDNA)。在询问过程中,dsDNA中的碱基试图与起始链中的相应碱基形成Watson-Crick键。异源双链交换产物中碱基配对的不匹配依赖性不稳定可以提供严格的识别;但是,我们目前的实验和理论结果表明,异源双链体稳定性对错配不敏感。我们还提出了数据,表明8个连续碱基的初始同源性测试会拒绝大多数包含超过1/8个错配的相互作用,而不会形成可检测的20 bp产物。我们建议,在体内,偶然序列匹配的稀疏性允许初始的8 bp测试快速拒绝几乎所有非同源序列。我们推测,一旦通过初始测试,异源双链中的错配不敏感结合将短的错配区域掺入原本同源的链交换产物中,即使最终同源性较低的序列被拒绝。

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