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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic analysis of delta helD and delta uvrD mutations in combination with other genes in the RecF recombination pathway in Escherichia coli: suppression of a ruvB mutation by a uvrD deletion.
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Genetic analysis of delta helD and delta uvrD mutations in combination with other genes in the RecF recombination pathway in Escherichia coli: suppression of a ruvB mutation by a uvrD deletion.

机译:Delta helD和delta uvrD突变与其他基因在大肠杆菌RecF重组途径中的遗传分析:通过uvrD缺失抑制ruvB突变。

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摘要

Helicase II (uvrD gene product) and helicase IV (helD gene product) have been shown previously to be involved in the RecF pathway of recombination. To better understand the role of these two proteins in homologous recombination in the RecF pathway [recBCsbcB(C) background, we investigated the interactions between helD, uvrD and the following RecF pathway genes: recF, recO, recN and ruvAB. We observed synergistic interactions between uvrD ant the recF, recN, recO and recG genes in both conjugational recombination and the repair of methylmethane sulfonate (MMS)-induced DNA damage. No synergistic interactions were detected between helD and the recF, recO and regN genes when conjugational recombination was analyzed. We did, however, detect synergistic interactions between helD and recF/recO in recombinational repair. Surprisingly, the uvrD deletion completely suppressed the phenotype of a ruvB mutation in a recBCsbcB(C) background. Both conjugational recombination efficiency and MMS-damaged DNA repair proficiency returned to wild-type levels in the deltauvrDruvB9 double mutant. Suppression of the effects of the ruvB mutation by a uvrD deletion was dependent on the recG and recN genes and not dependent on the recF/O/R genes. These data are discussed in the context of two "RecF" homologous recombination pathways operating in a recBCsbcB(C) strain background.
机译:先前已证明解旋酶II(uvrD基因产物)和解旋酶IV(helD基因产物)参与RecF重组途径。为了更好地了解这两种蛋白质在RecF途径[recBCsbcB(C)背景的同源重组中的作用,我们研究了helD,uvrD与以下RecF途径基因之间的相互作用:recF,recO,recN和ruvAB。我们观察到在结合重组和甲基磺酸甲酯(MMS)诱导的DNA损伤修复中uvrD和recF,recN,recO和recG基因之间的协同相互作用。分析共轭重组时,在helD与recF,recO和regN基因之间未发现协同作用。但是,我们确实检测到了重组修复中helD和recF / recO之间的协同相互作用。出人意料的是,uvrD删除完全抑制了recBCsbcB(C)背景中ruvB突变的表型。在deltauvrDruvB9双重突变体中,结合重组效率和MMS受损的DNA修复能力均恢复到野生型水平。 uvrD缺失对ruvB突变的抑制作用取决于recG和recN基因,而不取决于recF / O / R基因。这些数据是在recBCsbcB(C)菌株背景下操作的两个“ RecF”同源重组途径的背景下讨论的。

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