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论大肠杆菌中接合重组的RecBC和RecF途径的本质

On the nature of the RecBC and RecF pathways of conjugal recombination in Escherichia coli.

作者信息

Lloyd R G, Thomas A

出版信息

Mol Gen Genet. 1983;190(1):156-61. doi: 10.1007/BF00330339.

Abstract

The molecular mechanisms of the RecBC and RecF pathways for genetic recombination in E. coli were investigated by studying the kinetics of RecA protein function during conjugation. RecF recombination in recBC sbcB mutants is shown to be a much slower process than RecBC recombination in recBC+ sbcB+ strains, and is blocked by a mutation in lexA that prevents induction of RecA protein. Progress of the RecF pathway is greatly accelerated by a recAoc mutation which increases synthesis of RecA protein, but this does not restore recombination proficiency to a recBC sbcB lexA mutant. These results are interpreted to suggest that the RecF pathway directs integration of single-stranded Hfr DNA into the recipient chromosome whereas the RecBC pathway catalyses the exchange of largely double stranded DNA. This is consistent with the known stoichiometry of RecA protein catalysed heteroduplex DNA formation in vitro and with the delayed replication of RecF pathway recombinants which approximates to the time required for one round of DNA replication to generate homoduplex DNA. The regulation of the RecF pathway by lexA repressor is discussed in relation to the factors that govern the relative utilization of the two recombination pathways in wild-type cells.

摘要

通过研究接合过程中RecA蛋白功能的动力学,对大肠杆菌中遗传重组的RecBC和RecF途径的分子机制进行了研究。结果表明,recBC sbcB突变体中的RecF重组过程比recBC + sbcB +菌株中的RecBC重组过程慢得多,并且被lexA中的突变所阻断,该突变阻止了RecA蛋白的诱导。recAoc突变极大地加速了RecF途径的进程,该突变增加了RecA蛋白的合成,但这并未使recBC sbcB lexA突变体恢复重组能力。这些结果表明,RecF途径指导单链Hfr DNA整合到受体染色体中,而RecBC途径催化大部分双链DNA的交换。这与体外RecA蛋白催化异源双链DNA形成的已知化学计量以及RecF途径重组体的延迟复制一致,后者近似于一轮DNA复制产生同源双链DNA所需的时间。结合控制野生型细胞中两种重组途径相对利用的因素,讨论了lexA阻遏物对RecF途径的调节。

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