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接合松弛酶的多样性及其在质粒分类中的应用。

The diversity of conjugative relaxases and its application in plasmid classification.

作者信息

Garcillán-Barcia María Pilar, Francia María Victoria, de la Cruz Fernando

机构信息

Departamento de Biología Molecular e Instituto de Biomedicina y Biotecnología de Cantabria, Universidad de Cantabria-CSIC-IDICAN, Santander, Spain.

出版信息

FEMS Microbiol Rev. 2009 May;33(3):657-87. doi: 10.1111/j.1574-6976.2009.00168.x.

Abstract

Bacterial conjugation is an efficient and sophisticated mechanism of DNA transfer among bacteria. While mobilizable plasmids only encode a minimal MOB machinery that allows them to be transported by other plasmids, conjugative plasmids encode a complete set of transfer genes (MOB1T4SS). The only essential ingredient of the MOB machinery is the relaxase, the protein that initiates and terminates conjugative DNA processing. In this review we compared the sequences and properties of the relaxase proteins contained in gene sequence databases. Proteins were arranged in families and phylogenetic trees constructed from the family alignments. This allowed the classification of conjugative transfer systems in six MOB families:MOB(F), MOB(H), MOB(Q), MOB(C), MOB(P) and MOB(V). The main characteristics of each family were reviewed. The phylogenetic relationships of the coupling proteins were also analysed and resulted in phylogenies congruent to those of the cognate relaxases. We propose that the sequences of plasmid relaxases can be used for plasmid classification. We hope our effort will provide researchers with a useful tool for further mining and analysing the plasmid universe both experimentally and in silico.

摘要

细菌接合是细菌间DNA转移的一种高效且复杂的机制。可移动质粒仅编码一套最小的MOB机制,使其能够被其他质粒转运,而接合性质粒则编码一套完整的转移基因(MOB1T4SS)。MOB机制的唯一必需成分是松弛酶,即启动和终止接合性DNA加工的蛋白质。在本综述中,我们比较了基因序列数据库中所含松弛酶蛋白的序列和特性。将蛋白质按家族排列,并根据家族比对构建系统发育树。这使得接合转移系统可分为六个MOB家族:MOB(F)、MOB(H)、MOB(Q)、MOB(C)、MOB(P)和MOB(V)。对每个家族的主要特征进行了综述。还分析了偶联蛋白的系统发育关系,结果得到的系统发育与同源松弛酶的系统发育一致。我们提出,质粒松弛酶的序列可用于质粒分类。我们希望我们的工作将为研究人员提供一个有用的工具,以便在实验和计算机模拟方面进一步挖掘和分析质粒世界。

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