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High fidelity of RecA-catalyzed recombination: a watchdog of genetic diversity

机译:RecA催化重组的高保真度:遗传多样性的监督者

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Homologous recombination plays a key role in generating genetic diversity, while maintaining protein functionality. The mechanisms by which RecA enables a single-stranded segment of DNA to recognize a homologous tract within a whole genome are poorly understood. The scale by which homology recognition takes place is of a few tens of base pairs, after which the quest for homology is over. To study the mechanism of homology recognition, RecA-promoted homologous recombination between short DNA oligomers with different degrees of heterology was studied in vitro, using fluorescence resonant energy transfer. RecA can detect single mismatches at the initial stages of recombination, and the efficiency of recombination is strongly dependent on the location and distribution of mismatches. Mismatches near the 5' end of the incoming strand have a minute effect, whereas mismatches near the 3' end hinder strand exchange dramatically. There is a characteristic DNA length above which the sensitivity to heterology decreases sharply. Experiments with competitor sequences with varying degrees of homology yield information about the process of homology search and synapse lifetime. The exquisite sensitivity to mismatches and the directionality in the exchange process support a mechanism for homology recognition that can be modeled as a kinetic proofreading cascade.
机译:同源重组在维持蛋白质功能的同时,在产生遗传多样性中起关键作用。 RecA使单链DNA片段识别整个基因组中的同源片段的机制了解甚少。进行同源性识别的规模是几十个碱基对,此后对同源性的追求就结束了。为了研究同源性识别的机制,利用荧光共振能量转移,在体外研究了RecA促进的具有不同异源性的短DNA寡聚体之间的同源重组。 RecA可以在重组的初始阶段检测到单个错配,并且重组效率在很大程度上取决于错配的位置和分布。传入链5'末端附近的错配具有微小的影响,而3'末端附近的错配则严重阻碍链交换。有一个特征性的DNA长度,在该长度以上,对异源性的敏感性急剧下降。使用具有不同同源性程度的竞争者序列进行实验,可以获得有关同源性搜索和突触寿命的信息。对错配的精妙敏感性和交换过程中的方向性支持一种同源性识别机制,该机制可建模为动力学校对级联。

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