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在大肠杆菌的一个rep突变体中,解旋酶UvrD和UvrD252会对抗RecQ、RecJ和RecFOR。

UvrD and UvrD252 counteract RecQ, RecJ, and RecFOR in a rep mutant of Escherichia coli.

作者信息

Lestini Roxane, Michel Bénédicte

机构信息

CNRS, Centre de Génétique Moléculaire, UPR 2167, Gif-sur-Yvette F-91198, Université Paris-Sud, Orsay F-91405, France.

出版信息

J Bacteriol. 2008 Sep;190(17):5995-6001. doi: 10.1128/JB.00620-08. Epub 2008 Jun 20.

Abstract

Rep and UvrD are two related Escherichia coli helicases, and inactivating both is lethal. Based on the observation that the synthetic lethality of rep and uvrD inactivation is suppressed in the absence of the recombination presynaptic proteins RecF, RecO, or RecR, it was proposed that UvrD is essential in the rep mutant to counteract a deleterious RecFOR-dependent RecA binding. We show here that the synthetic lethality of rep and uvrD mutations is also suppressed by recQ and recJ inactivation but not by rarA inactivation. Furthermore, it is independent of the action of UvrD in nucleotide excision repair and mismatch repair. These observations support the idea that UvrD counteracts a deleterious RecA binding to forks blocked in the rep mutant. An ATPase-deficient mutant of UvrD [uvrD(R284A)] is dominant negative in a rep mutant, but only in the presence of all RecQJFOR proteins, suggesting that the UvrD(R284A) mutant protein is deleterious when it counteracts one of these proteins. In contrast, the uvrD252 mutant (G30D), which exhibits a strongly decreased ATPase activity, is viable in a rep mutant, where it allows replication fork reversal. We conclude that the residual ATPase activity of UvrD252 prevents a negative effect on the viability of the rep mutant and allows UvrD to counteract the action of RecQ, RecJ, and RecFOR at forks blocked in the rep mutant. Models for the action of UvrD at blocked forks are proposed.

摘要

Rep和UvrD是两种相关的大肠杆菌解旋酶,使两者都失活是致死性的。基于在没有重组突触前蛋白RecF、RecO或RecR的情况下,rep和uvrD失活的合成致死性受到抑制这一观察结果,有人提出UvrD在rep突变体中是必需的,以对抗有害的RecFOR依赖性RecA结合。我们在此表明,recQ和recJ失活也能抑制rep和uvrD突变的合成致死性,但rarA失活则不能。此外,它与UvrD在核苷酸切除修复和错配修复中的作用无关。这些观察结果支持了UvrD对抗有害的RecA与rep突变体中受阻叉结合的观点。UvrD的ATP酶缺陷突变体[uvrD(R284A)]在rep突变体中具有显性负效应,但仅在所有RecQJFOR蛋白存在的情况下,这表明uvrD(R284A)突变蛋白在对抗这些蛋白之一时是有害的。相比之下,表现出ATP酶活性大幅降低的uvrD252突变体(G30D)在rep突变体中是可行的,它允许复制叉逆转。我们得出结论,UvrD252的残余ATP酶活性可防止对rep突变体的生存力产生负面影响,并使UvrD能够对抗RecQ、RecJ和RecFOR在rep突变体中受阻叉处的作用。本文提出了UvrD在受阻叉处作用的模型。

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