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R27编码的转移蛋白的一个子组件的功能依赖于TrhC核苷三磷酸结合基序,但形成过程并非如此。

A subassembly of R27-encoded transfer proteins is dependent on TrhC nucleoside triphosphate-binding motifs for function but not formation.

作者信息

Gilmour Matthew W, Taylor Diane E

机构信息

Department of Medical Microbiology and Immunology, University of Alberta, Edmonton, Alberta T6G 2R3, Canada.

出版信息

J Bacteriol. 2004 Mar;186(6):1606-13. doi: 10.1128/JB.186.6.1606-1613.2004.

Abstract

The transfer of plasmid DNA molecules between bacterial cells is achieved by a large array of conjugative transfer proteins which assemble into both cytoplasmic and membrane-associated complexes. TrhC is a membrane-associated protein that is required for the transfer of the IncHI1 resistance plasmid R27. Homologous proteins are encoded in all known conjugative systems, and each contains characteristic nucleoside triphosphate (NTP)-binding domains. An assembly of R27-encoded proteins was previously visualized by use of a TrhC-green fluorescent protein fusion, which appeared as discrete membrane-associated fluorescent foci. We have utilized this experimental system to determine the requirements for assembly of this TrhC-associated protein complex, and we found that 12 of the other 18 R27 transfer proteins are required for focus formation. An individual focus possibly represents a subassembly comprised of some or all of these transfer proteins. These data support the notion that the transfer apparatus is a multicomponent structure. In contrast, substitutions and deletions within TrhC NTP-binding motifs had minor effects on focus formation, but these mutations did affect plasmid transfer and bacteriophage susceptibility. These results indicate that TrhC requires intact NTP-binding motifs to function during conjugative transfer but that these motifs are not essential for the assembly of TrhC into a complex with other transfer proteins.

摘要

细菌细胞间质粒DNA分子的转移是通过大量的接合转移蛋白实现的,这些蛋白组装成细胞质和膜相关复合物。TrhC是一种膜相关蛋白,是IncHI1抗性质粒R27转移所必需的。在所有已知的接合系统中都编码有同源蛋白,并且每个都包含特征性的核苷三磷酸(NTP)结合结构域。先前通过使用TrhC-绿色荧光蛋白融合体观察到R27编码蛋白的组装,其表现为离散的膜相关荧光灶。我们利用这个实验系统来确定组装这个TrhC相关蛋白复合物的条件,并且我们发现其他18种R27转移蛋白中的12种是形成荧光灶所必需的。单个荧光灶可能代表由一些或所有这些转移蛋白组成的亚组装体。这些数据支持转移装置是多组分结构的观点。相比之下,TrhC NTP结合基序内的取代和缺失对荧光灶形成的影响较小,但这些突变确实影响质粒转移和噬菌体敏感性。这些结果表明,TrhC在接合转移过程中需要完整的NTP结合基序来发挥功能,但这些基序对于TrhC与其他转移蛋白组装成复合物不是必需的。

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