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A RecG-Independent Nonconservative Branch Migration Mechanism in Escherichia coli Recombination

机译:大肠杆菌重组中独立于RecG的非保守分支迁移机制。

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摘要

To gain insight regarding the mechanisms that extend heteroduplex joints in Escherichia coli recombination, we investigated the effect of recG and ruv genotypes on heteroduplex strand polarity in intramolecular recombination products. We also examined the cumulative effect of mutational inactivation of RecG and single-strand-specific exonucleases on recombination proficiency and the role of Chi sites in RecG-independent recombination. All four strands of the two homologs were incorporated into heteroduplex structures in wild-type cells and in ruv mutants. However, in recG mutants heteroduplexes were generated almost exclusively by pairing the invasive 3′-ending strand with its complementary strand. To explain the dependence of strand exchange reciprocity on RecG activity, we propose that alternative mechanisms may extend the heteroduplex joints after homologous pairing: a reciprocal RecG-mediated mechanism and a nonreciprocal mechanism, mediated by RecA and single-strand-specific exonucleases. The cumulative effect of recG and recJ or xonA mutations on recombination proficiency and the inhibitory effect of recJ and xonA activities on heteroduplex formation by the 5′-ending strands are consistent with this proposal.
机译:为了深入了解扩展大肠杆菌重组中异源双链接头的机制,我们研究了recG和ruv基因型对分子内重组产物中异源双链链极性的影响。我们还检查了RecG突变失活和单链特异性核酸外切对重组能力的累积影响以及Chi位点在RecG独立重组中的作用。将两个同源物的所有四股链掺入野生型细胞和ruv突变体的异源双链体结构中。但是,在recG突变体中,异源双链几乎是通过将侵入性3'末端链与其互补链配对而产生的。为了解释链交换互易性对RecG活性的依赖性,我们提出,在同源配对后,其他机制可能会扩展异源双链接头:RecA和单链特异性外切核酸酶介导的互为RecG介导的机制和非互为机制。 recG和recJ或xonA突变对重组​​能力的累积影响以及recJ和xonA活性对5'端链对异源双链体形成的抑制作用与该提议一致。

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