Fernandez R C, Weiss A A
Department of Molecular Genetics, Biochemistry and Microbiology, University of Cincinnati, Ohio 45267.
Infect Immun. 1994 Nov;62(11):4727-38. doi: 10.1128/iai.62.11.4727-4738.1994.
We have characterized a new virulence factor in Bordetella pertussis: serum resistance. Compared with Escherichia coli HB101, wild-type B. pertussis was relatively resistant to classical-pathway, complement-dependent killing by normal human serum. However, a mutant of B. pertussis (BPM2041) which is less virulent in mice and which has Tn5 lac inserted in a previously uncharacterized bvg-regulated gene was found to be at least 10-fold more susceptible to serum killing than the wild type. We have named this locus brk, for Bordetella resistance to killing. We have cloned and sequenced the brk locus, and it encodes two divergently transcribed open reading frames (ORFs), termed BrkA and BrkB. Both ORFs are necessary for serum resistance. Within the 300 bases which separate the two ORFs and upstream of each ORF are putative sites for BvgA binding. BrkA shows 29% identity to pertactin and has two RGD motifs in addition to a conserved proteolytic processing site and an outer membrane targeting signal. Like pertactin, BrkA is involved in adherence and invasion. Despite the similarities, a pertactin mutant was found to be not as sensitive to serum killing as the BrkA or BrkB mutants. BrkB is similar to ORFs in E. coli and Mycobacterium leprae and displays domains of homology to various transporters. On the basis of its hydropathy profile, BrkB is predicted to be a cytoplasmic membrane protein. By Southern blot, brk sequences were found in Bordetella bronchiseptica and Bordetella parapertussis but not in Bordetella avium.
血清抗性。与大肠杆菌HB101相比,野生型百日咳博德特氏菌对正常人血清通过经典途径进行的补体依赖性杀伤具有相对抗性。然而,在小鼠中毒力较低且Tn5 lac插入到一个先前未鉴定的bvg调控基因中的百日咳博德特氏菌突变体(BPM2041),被发现对血清杀伤的敏感性至少比野生型高10倍。我们将这个基因座命名为brk,即博德特氏菌抗杀伤基因座。我们已经克隆并测序了brk基因座,它编码两个反向转录的开放阅读框(ORF),分别称为BrkA和BrkB。两个ORF对于血清抗性都是必需的。在分隔两个ORF的300个碱基内以及每个ORF的上游是BvgA结合的假定位点。BrkA与百日咳杆菌粘附素具有29%的同一性,除了一个保守的蛋白水解加工位点和一个外膜靶向信号外,还有两个RGD基序。与百日咳杆菌粘附素一样,BrkA参与粘附和侵袭。尽管有这些相似性,但发现百日咳杆菌粘附素突变体对血清杀伤的敏感性不如BrkA或BrkB突变体。BrkB与大肠杆菌和麻风分枝杆菌中的ORF相似,并显示出与各种转运蛋白的同源结构域。根据其亲水性图谱,预测BrkB是一种细胞质膜蛋白。通过Southern印迹法发现,支气管败血博德特氏菌和副百日咳博德特氏菌中有brk序列,但鸟博德特氏菌中没有。