Miller J F, Lanka E, Malamy M H
J Bacteriol. 1985 Sep;163(3):1067-73. doi: 10.1128/jb.163.3.1067-1073.1985.
By the use of deletions, point mutations, and gene fusions, we show that the protein product of the F factor pifC gene is responsible for F factor inhibition of plasmid RP4 conjugal transfer. Deletion analysis of pif sequences carried by pSC101-F chimeric plasmids demonstrated that removal of all or part of the pifC coding sequence greatly decreased or abolished the ability of these plasmids to inhibit RP4 transfer. Amber mutations in the pifC gene eliminated inhibition in an Su- host strain but not in and Su+ (supF) host. Plasmids carrying nonpolar pifC mutations did not decrease the efficiency of RP4 transfer when present in trans. Whereas pifC+ plasmids inhibited RP4 transfer, the presence of RP4 in the same cell as F' lac increased F'lac Pif activity approximately 1,000-fold. This effect most likely resulted from the binding of the pifC product to RP4 DNA and concomitant derepression of the F factor pif operon. PifC inhibited trans mobilization of pMS204, a nonconjugative plasmid carrying the RP4 oriT locus, by the RP1 derivative pUB307. pMS204 had no trans effect on pif operon expression, whereas pUB307 increased F'lac Pif expression, as did RP4. Our results suggest that the pifC product inhibits expression of one or more RP4 genes, the products of which are required for conjugal transfer of RP4 and are required in trans for mobilization of nonconjugal RP4 oriT containing plasmids.
通过使用缺失、点突变和基因融合技术,我们发现F因子pifC基因的蛋白质产物负责F因子对质粒RP4接合转移的抑制作用。对pSC101 - F嵌合质粒携带的pif序列进行缺失分析表明,去除全部或部分pifC编码序列会大大降低或消除这些质粒抑制RP4转移的能力。pifC基因中的琥珀突变在Su - 宿主菌株中消除了抑制作用,但在Su +(supF)宿主中则没有。携带非极性pifC突变的质粒在反式存在时不会降低RP4转移的效率。虽然pifC + 质粒抑制RP4转移,但当RP4与F'lac存在于同一细胞中时,会使F'lac Pif活性增加约1000倍。这种效应很可能是由于pifC产物与RP4 DNA结合以及随之而来的F因子pif操纵子的去阻遏所致。PifC抑制了由RP1衍生物pUB307介导的携带RP4 oriT位点的非接合性质粒pMS204的转移动。pMS204对pif操纵子表达没有反式作用,而pUB307则像RP4一样增加了F'lac Pif的表达。我们的结果表明,pifC产物抑制一个或多个RP4基因的表达,这些基因的产物是RP4接合转移所必需的,并且是反式动员含有非接合性RP4 oriT的质粒所必需的。