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RP4接合转移装置的组件形成一种包膜结构,跨越供体细胞的内膜和外膜:对相关大分子运输系统的启示。

Components of the RP4 conjugative transfer apparatus form an envelope structure bridging inner and outer membranes of donor cells: implications for related macromolecule transport systems.

作者信息

Grahn A M, Haase J, Bamford D H, Lanka E

机构信息

Department of Biosciences and Institute of Biotechnology, FIN-00014 University of Helsinki, Finland.

出版信息

J Bacteriol. 2000 Mar;182(6):1564-74. doi: 10.1128/JB.182.6.1564-1574.2000.

Abstract

During bacterial conjugation, the single-stranded DNA molecule is transferred through the cell envelopes of the donor and the recipient cell. A membrane-spanning transfer apparatus encoded by conjugative plasmids has been proposed to facilitate protein and DNA transport. For the IncPalpha plasmid RP4, a thorough sequence analysis of the gene products of the transfer regions Tra1 and Tra2 revealed typical features of mainly inner membrane proteins. We localized essential RP4 transfer functions to Escherichia coli cell fractions by immunological detection with specific polyclonal antisera. Each of the gene products of the RP4 mating pair formation (Mpf) system, specified by the Tra2 core region and by traF of the Tra1 region, was found in the outer membrane fraction with one exception, the TrbB protein, which behaved like a soluble protein. The membrane preparation from Mpf-containing cells had an additional membrane fraction whose density was intermediate between those of the cytoplasmic and outer membranes, suggesting the presence of attachment zones between the two E. coli membranes. The Tra1 region is known to encode the components of the RP4 relaxosome. Several gene products of this transfer region, including the relaxase TraI, were detected in the soluble fraction, but also in the inner membrane fraction. This indicates that the nucleoprotein complex is associated with and/or assembled facing the cytoplasmic site of the E. coli cell envelope. The Tra1 protein TraG was predominantly localized to the cytoplasmic membrane, supporting its potential role as an interface between the RP4 Mpf system and the relaxosome.

摘要

在细菌接合过程中,单链DNA分子通过供体细胞和受体细胞的细胞壁进行转移。有人提出由接合质粒编码的跨膜转移装置有助于蛋白质和DNA的运输。对于IncPα质粒RP4,对转移区域Tra1和Tra2的基因产物进行的全面序列分析揭示了主要内膜蛋白的典型特征。我们通过用特异性多克隆抗血清进行免疫检测,将RP4的基本转移功能定位到大肠杆菌细胞组分中。RP4配对形成(Mpf)系统的每个基因产物,由Tra2核心区域和Tra1区域的traF指定,除了TrbB蛋白外,都在外膜组分中被发现,TrbB蛋白表现得像一种可溶性蛋白。来自含有Mpf的细胞的膜制备物有一个额外的膜组分,其密度介于细胞质膜和外膜之间,这表明在大肠杆菌的两个膜之间存在附着区。已知Tra1区域编码RP4松弛体的组分。该转移区域的几个基因产物,包括松弛酶TraI,在可溶性组分中被检测到,但也在内膜组分中被检测到。这表明核蛋白复合物与大肠杆菌细胞膜的细胞质位点相关联和/或面向该位点组装。Tra1蛋白TraG主要定位于细胞质膜,支持其作为RP4 Mpf系统和松弛体之间界面的潜在作用。

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