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对ColE1 MbeC的分析揭示了一个切口辅助蛋白的扩展的带状-螺旋-螺旋家族。

Analysis of ColE1 MbeC unveils an extended ribbon-helix-helix family of nicking accessory proteins.

作者信息

Varsaki Athanasia, Moncalián Gabriel, Garcillán-Barcia Maria del Pilar, Drainas Constantin, de la Cruz Fernando

机构信息

Department of Chemistry, University of Ioannina, Greece.

出版信息

J Bacteriol. 2009 Mar;191(5):1446-55. doi: 10.1128/JB.01342-08. Epub 2008 Dec 29.

Abstract

MbeC is a 13-kDa ColE1-encoded protein required for efficient mobilization of ColE1, a plasmid widely used in cloning vector technology. MbeC protein was purified and used for in vitro DNA binding, which showed that it binds specifically double-stranded DNA (dsDNA) containing the ColE1 oriT. Amino acid sequence comparison and secondary structure prediction imply that MbeC is related to the ribbon-helix-helix (RHH) protein family. Alignment with RHH members pointed to a conserved arginine (R13 in MbeC) that was mutated to alanine. The mutant MbeC(R13A) was unable to bind either single-stranded DNA or dsDNA. Limited proteolysis fragmented MbeC in two stable folding domains: the N-terminal domain, which contains the RHH motif, and the C-terminal domain, which comprises a signature shared by nicking accessory proteins. The results indicate that MbeC plays a similar role in conjugation as TraY and TrwA of plasmids F and R388, respectively. Thus, it appears that an extended, possibly universal mechanism of DNA conjugative processing exists, in which oriT-processing is carried out by relaxases assisted by homologous nicking accessory proteins. This mechanism seems to be shared by all major conjugative systems analyzed thus far.

摘要

MbeC是一种由ColE1编码的13千道尔顿蛋白质,是ColE1高效转移所必需的,ColE1是一种广泛应用于克隆载体技术的质粒。MbeC蛋白经过纯化后用于体外DNA结合实验,结果表明它能特异性结合含有ColE1 oriT的双链DNA(dsDNA)。氨基酸序列比较和二级结构预测表明MbeC与带状螺旋-螺旋(RHH)蛋白家族有关。与RHH成员的比对指出一个保守的精氨酸(MbeC中的R13)突变为丙氨酸。突变体MbeC(R13A)无法结合单链DNA或dsDNA。有限蛋白酶解将MbeC切割成两个稳定的折叠结构域:包含RHH基序的N端结构域和包含切口辅助蛋白共有的一个特征序列的C端结构域。结果表明,MbeC在接合过程中分别与质粒F和R388的TraY和TrwA发挥相似的作用。因此,似乎存在一种扩展的、可能普遍的DNA接合加工机制,其中oriT加工由同源切口辅助蛋白协助的松弛酶进行。到目前为止,所有分析过的主要接合系统似乎都共享这种机制。

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