Anthony K G, Kathir P, Moore D, Ippen-Ihler K, Frost L S
Department of Biological Sciences, University of Alberta, Edmonton, Canada.
J Bacteriol. 1996 Jun;178(11):3194-200. doi: 10.1128/jb.178.11.3194-3200.1996.
The sequence of a region of the F plasmid containing the traLEKBP genes involved in plasmid transfer was compared to the equivalent regions of two IncFII plasmids, R100-1 and ColB2. The traLEK gene products of all three plasmids were virtually identical, with the most changes occurring in TraE. The TraB genes were also nearly identical except for an 11-codon extension at the 3' end of the R100-1 traB gene. The TraP protein of R100-l differed from those of F and ColB2 at its N terminus, while the ColB2 TraP protein contained a change of sequence in a predicted loop which was shown to be exposed in the periplasmic space by TnphoA mutagenesis. The effect of the altered TraP sequences was determined by complementing a traP mutant with clones expressing the traKBP genes of F, R100-1, and ColB2. The traP mutation in pOX38 (pOX38-traP474), a derivative of F, was found to have little effect on pilus production, pilus retraction, and filamentous phage growth and only a moderate effect on transfer. The transfer ability of pOX38-traP474 was shown to be affected by mutations in the rfa (lipopolysaccharide) locus and in ompA in the recipient cell in a manner similar to that for the wild-type pOX38-Km plasmid itself and could be complemented with the traP analogs from R100-1 and ColB2 to give an F-like phenotype. Thus, the TraP protein appears to play a minor role in conjugation and may interact with TraB, which varies in sequence along with TraP, in order to stabilize the proposed transmembrane complex formed by the tra operon products.
将含有参与质粒转移的traLEKBP基因的F质粒区域的序列与两个IncFII质粒R100 - 1和ColB2的相应区域进行了比较。所有三种质粒的traLEK基因产物几乎相同,其中变化最大的是TraE。除了R100 - 1 traB基因3'端有一个11密码子的延伸外,TraB基因也几乎相同。R100 - 1的TraP蛋白在其N端与F和ColB2的不同,而ColB2的TraP蛋白在一个预测的环中序列发生了变化,通过TnphoA诱变显示该环暴露于周质空间。通过用表达F、R100 - 1和ColB2的traKBP基因的克隆对traP突变体进行互补,确定了TraP序列改变的影响。发现F的衍生物pOX38(pOX38 - traP474)中的traP突变对菌毛产生、菌毛收缩和丝状噬菌体生长影响很小,对转移只有中等影响。pOX38 - traP474的转移能力被证明受到受体细胞中rfa(脂多糖)位点和ompA突变的影响,其方式与野生型pOX38 - Km质粒本身相似,并且可以用来自R100 - 1和ColB2的traP类似物进行互补以产生F样表型。因此,TraP蛋白似乎在接合中起次要作用,并且可能与TraB相互作用,TraB的序列与TraP一起变化,以便稳定由tra操纵子产物形成的拟跨膜复合物。