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ArgR和PepA是XerCD介导的ColE1二聚体解离的辅助蛋白,也是P1原噬菌体稳定维持所必需的。

ArgR and PepA, accessory proteins for XerCD-mediated resolution of ColE1 dimers, are also required for stable maintenance of the P1 prophage.

作者信息

Paul Sunirmal, Summers David

机构信息

Department of Genetics, Cambridge University, Downing Street, Cambridge CB2 3EH, UK.

出版信息

Plasmid. 2004 Jul;52(1):63-8. doi: 10.1016/j.plasmid.2004.04.003.

Abstract

Dimers of low copy number plasmids must be resolved to monomers to prevent interference with active partition. For the P1 prophage this is achieved by the Cre site-specific recombinase acting at lox. Multimerisation of multicopy plasmids threatens stability via copy number depression, and multimers of ColE1 are resolved by XerCD-mediated recombination at cer. Xer-cer is constrained to multimer resolution by accessory proteins ArgR and PepA. Recently, it has been shown that ArgR and PepA influence Cre-mediated recombination at a cer-lox hybrid site in vitro, defining the structure of the synaptic complex. We show here that both ArgR and PepA are required for stable maintenance of the P1 prophage. It is extremely difficult to establish P1 in a strain lacking PepA and the prophage was lost rapidly once selection was removed. ArgR plays a less crucial role although its absence significantly increased prophage loss. The effect of the accessory proteins is seen only at physiological concentrations of Cre; when the recombinase is expressed from a multicopy plasmid, the prophage is unstable even in the presence of ArgR and PepA. We propose that ArgR and PepA are involved in Cre-lox recombination in vivo, probably by constraining the system to resolution of prophage dimers.

摘要

低拷贝数质粒的二聚体必须分解为单体,以防止对活性分配产生干扰。对于P1原噬菌体而言,这是通过Cre位点特异性重组酶作用于lox位点来实现的。多拷贝质粒的多聚化会通过拷贝数降低威胁稳定性,而ColE1的多聚体则通过XerCD介导的在cer位点的重组来分解。Xer-cer受辅助蛋白ArgR和PepA的限制,只能进行多聚体分解。最近有研究表明,ArgR和PepA在体外会影响cer-lox杂交位点处的Cre介导的重组,从而确定了突触复合体的结构。我们在此表明,ArgR和PepA都是P1原噬菌体稳定维持所必需的。在缺乏PepA的菌株中极难建立P1原噬菌体,一旦去除选择压力,原噬菌体就会迅速丢失。ArgR的作用不太关键,尽管其缺失会显著增加原噬菌体的丢失率。辅助蛋白的作用仅在生理浓度的Cre存在时才可见;当重组酶从多拷贝质粒表达时,即使存在ArgR和PepA,原噬菌体也不稳定。我们提出,ArgR和PepA在体内参与Cre-lox重组,可能是通过将该系统限制在原噬菌体二聚体的分解上。

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