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参与质粒RP4接合转移的松弛酶(TraI)和TraG蛋白的必需基序。

Essential motifs of relaxase (TraI) and TraG proteins involved in conjugative transfer of plasmid RP4.

作者信息

Balzer D, Pansegrau W, Lanka E

机构信息

Max-Planck-Institut für Molekulare Genetik, Berlin, Germany.

出版信息

J Bacteriol. 1994 Jul;176(14):4285-95. doi: 10.1128/jb.176.14.4285-4295.1994.

Abstract

Two essential transfer genes of the conjugative plasmid RP4 were altered by site-directed mutagenesis: traG of the primase operon and traI of the relaxase operon. To evaluate effects on the transfer phenotype of the point mutations, we have reconstituted the RP4 transfer system by fusion of the transfer regions Tra1 and Tra2 to the small multicopy replicon ColD. Deletions in traG or traI served to determine the Tra phenotype of mutant plasmids by trans complementation. Two motifs of TraG which are highly conserved among TraG-like proteins in several other conjugative DNA transfer systems were found to be essential for TraG function. One of the motifs resembles that of a nucleotide binding fold of type B. The relaxase (TraI) catalyzes the specific cleaving-joining reaction at the transfer origin needed to initiate and terminate conjugative DNA transfer (W. Pansegrau, W. Schröder, and E. Lanka, Proc. Natl. Acad. Sci. USA 90:2925-2929, 1993). Phenotypes of mutations in three motifs that belong to the active center of the relaxase confirmed previously obtained biochemical evidence for the contributions of the motifs to the catalytic activity of TraI. Expression of the relaxase operon is greatly increased in the absence of an intact TraI protein. This finding suggests that the relaxosome which assembles only in the presence of the TraI in addition to its enzymatic activity plays a role in gene regulation.

摘要

通过定点诱变改变了接合质粒RP4的两个必需转移基因:引发酶操纵子的traG和松弛酶操纵子的traI。为了评估点突变对转移表型的影响,我们通过将转移区域Tra1和Tra2与小多拷贝复制子ColD融合,重建了RP4转移系统。traG或traI中的缺失用于通过反式互补确定突变体质粒的Tra表型。发现在其他几种接合DNA转移系统中,TraG样蛋白中高度保守的TraG的两个基序对于TraG功能至关重要。其中一个基序类似于B型核苷酸结合结构域。松弛酶(TraI)催化在转移起点处的特异性切割-连接反应,这是启动和终止接合DNA转移所必需的(W. Pansegrau、W. Schröder和E. Lanka,《美国国家科学院院刊》90:2925-2929,1993)。属于松弛酶活性中心的三个基序中的突变表型证实了先前获得的关于这些基序对TraI催化活性贡献的生化证据。在没有完整TraI蛋白的情况下,松弛酶操纵子的表达大大增加。这一发现表明,除了其酶活性外,仅在TraI存在时组装的松弛体在基因调控中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2382/205640/3994b566e2fb/jbacter00032-0103-a.jpg

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