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Restriction-Stimulated Homologous Recombination of Plasmids by the Rece Pathway of Escherichia Coli

机译:大肠杆菌的Rece途径的质粒限制性内源性同源重组。

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摘要

To test the double-strand break (DSB) repair model in recombination by the RecE pathway of Escherichia coli, we constructed chimeric phages that allow restriction-mediated release of linear plasmid substrates of the bioluminescence recombination assay in infected EcoRI(+) cells. Kinetics of DSB repair and expression of recombination products were followed by Southern hybridization and by the bioluminescence recombination assay, respectively. Plasmid recombinants were analyzed with restriction endonucleases. Our results indicate that a DSB can induce more than one type of RecE-mediated recombination. A DSB within the homology induced intermolecular recombination that followed the rules of the DSB repair model: (1) Recombination was enhanced by in vivo restriction. (2) Repair of the break depended on homologous sequences on the resident plasmid. (3) Break-repair was frequently associated with conversion of alleles that were cis to the break. (4) Conversion frequency decreased as the distance from the break increased. (5) Some clones contained a mixture of plasmid recombinants as expected by replication of a heteroduplex in the primary recombinant. The rules of the DSB repair model were not followed when recombination was induced by a DSB outside the homology. Both the cut and the uncut substrates were recipients in conversion events. Recombination events were associated with deletions that spanned the break site, but these deletions did not reach the homology. We propose that a break outside the homology may stimulate a RecE-mediated recombination pathway that does not involve direct participation of DNA ends in the homologous pairing reaction.
机译:要测试通过大肠杆菌的RecE途径重组的双链断裂(DSB)修复模型,我们构建了嵌合噬菌体,该噬菌体允许在受感染的EcoRI(+)细胞中限制介导释放生物发光重组测定的线性质粒底物。 DSB修复的动力学和重组产物的表达分别通过Southern杂交和通过生物发光重组测定法进行。用限制性核酸内切酶分析质粒重组体。我们的结果表明,DSB可以诱导一种以上类型的RecE介导的重组。同源性内的DSB诱导的分子间重组遵循DSB修复模型的规则:(1)通过体内限制增强了重组。 (2)断裂的修复取决于驻留质粒上的同源序列。 (3)断裂修复通常与顺式等位基因转化为断裂相关。 (4)转换频率随着与中断距离的增加而降低。 (5)一些克隆含有质粒重组体的混合物,这是通过在原始重组体中异源双链体的复制所预期的。当同源性以外的DSB诱导重组时,不遵循DSB修复模型的规则。切割和未切割的基材都是转化事件的接受者。重组事件与跨越断裂位点的缺失相关,但是这些缺失未达到同源性。我们提出同源性以外的突破可能会刺激RecE介导的重组途径,该途径不涉及DNA末端直接参与同源配对反应。

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