Maneewannakul K, Ippen-Ihler K
Department of Medical Microbiology and Immunology, Texas A&M University Health Science Center, College Station 77843.
J Bacteriol. 1993 Mar;175(5):1528-31. doi: 10.1128/jb.175.5.1528-1531.1993.
F plasmid derivatives carrying kan insertion mutations in the transfer region genes traR, trbJ, and trbH were constructed. Standard tests indicated that these loci are not essential for F pilus production or F transfer among Escherichia coli K-12 hosts. Among the traR and trbH mutants tested, the orientation of the kan cassette had no effect on the mutant phenotype. In each case, there was no significant effect on the appearance of F pili, the transfer frequency, or the plating efficiency of F-pilus-specific phages. The trbJ insertion carrying a kan gene oriented in the direction opposite to tra transcription had very little effect on phage sensitivity but markedly reduced the plasmid transfer efficiency. However, the kan insertion mutation at the same site, in the tra orientation, did not seem to affect either property. Analysis of clones carrying trbJ sequences regulated by a phage T7 promoter showed that trbJ expresses an approximately 11-kDa protein product. The TrbJ protein was not expressed from clones carrying a kan insertion or stop codon linker insertion in the trbJ sequence. However, it was expressed from clones that did not include sequences at the beginning of the 113-codon open reading frame in this region. Our data indicated that translation of trbJ must be initiated at the more distal GUG codon in this frame. This would result in expression of a 93-amino-acid polypeptide.
构建了在转移区域基因traR、trbJ和trbH中携带卡那霉素插入突变的F质粒衍生物。标准测试表明,这些基因座对于大肠杆菌K-12宿主间F菌毛的产生或F转移并非必需。在所测试的traR和trbH突变体中,卡那霉素盒的方向对突变体表型没有影响。在每种情况下,对F菌毛的出现、转移频率或F菌毛特异性噬菌体的平板效率均无显著影响。携带以与tra转录相反方向定向的卡那基因的trbJ插入对噬菌体敏感性影响很小,但显著降低了质粒转移效率。然而,在tra方向上同一位置的卡那霉素插入突变似乎对这两种特性均无影响。对携带由噬菌体T7启动子调控的trbJ序列的克隆进行分析表明,trbJ表达一种约11 kDa的蛋白质产物。TrbJ蛋白在trbJ序列中携带卡那霉素插入或终止密码子接头插入的克隆中不表达。然而,它在不包括该区域113个密码子开放阅读框起始处序列的克隆中表达。我们的数据表明,trbJ的翻译必须在此阅读框中更靠后的GUG密码子处起始。这将导致一个93个氨基酸的多肽的表达。