de Château M, Holst E, Björck L
Department of Cell and Molecular Biology, Lund University, P. O. Box 94, S-221 00 Lund, Sweden.
J Biol Chem. 1996 Oct 25;271(43):26609-15. doi: 10.1074/jbc.271.43.26609.
The anaerobic bacterium Peptostreptococcus magnus is a human commensal and pathogen. Previous work has shown that strains of P. magnus isolated from patients with gynecological disease (vaginosis) frequently express an immunoglobulin (Ig) light chain-binding protein called protein L. Here we report that strains isolated from localized suppurative infections bind human serum albumin (HSA), whereas commensal isolates bind neither Ig nor HSA. The HSA-binding protein PAB was extracted from the bacterial surface or isolated from the culture supernatant of the P. magnus strain ALB8. Protein PAB was shown to have two homologous HSA-binding domains, GA and uGA. GA is absent in the sequence of a related protein from another P. magnus strain and shows a high degree of homology to the HSA-binding domains of streptococcal protein G. Therefore GA is believed to have recently been shuffled as a module from genes of other bacterial species into the protein PAB gene. This GA module was shown to exhibit a much higher affinity for HSA than uGA and was also found to be present in all of the isolates tested from localized suppurative infections, indicating a role in virulence. Moreover, when peptostreptococci or streptococci expressing the GA module were grown in the presence of HSA, the growth rate was substantially increased. Thus, the HSA binding activity of the GA module adds selective advantages to the bacteria, which increases their virulence in the case of P. magnus strains.
厌氧细菌大消化链球菌是一种人体共生菌和病原菌。先前的研究表明,从患有妇科疾病(阴道病)的患者中分离出的大消化链球菌菌株经常表达一种名为蛋白L的免疫球蛋白(Ig)轻链结合蛋白。在此我们报告,从局部化脓性感染中分离出的菌株能结合人血清白蛋白(HSA),而共生菌株既不结合Ig也不结合HSA。HSA结合蛋白PAB是从细菌表面提取的,或者是从大消化链球菌菌株ALB8的培养上清液中分离出来的。蛋白PAB被证明有两个同源的HSA结合结构域,GA和uGA。在另一株大消化链球菌的相关蛋白序列中不存在GA,并且它与链球菌蛋白G的HSA结合结构域具有高度同源性。因此,GA被认为是最近作为一个模块从其他细菌物种的基因重排到蛋白PAB基因中的。结果表明,该GA模块对HSA的亲和力比uGA高得多,并且在所有从局部化脓性感染中测试的分离株中都存在,这表明它在毒力方面发挥作用。此外,当表达GA模块的消化链球菌或链球菌在HSA存在的情况下生长时,生长速率会显著提高。因此,GA模块的HSA结合活性为细菌增加了选择性优势,这在大消化链球菌菌株的情况下增加了它们的毒力。