Norris S J, Charon N W, Cook R G, Fuentes M D, Limberger R J
Department of Pathology and Laboratory Medicine, Medical School, University of Texas Health Science Center, Houston 77225.
J Bacteriol. 1988 Sep;170(9):4072-82. doi: 10.1128/jb.170.9.4072-4082.1988.
The periplasmic flagella of many spirochetes contain multiple proteins. In this study, two-dimensional electrophoresis, Western blotting (immunoblotting), immunoperoxidase staining, and N-terminal amino acid sequence analysis were used to characterize the individual periplasmic flagellar proteins of Treponema pallidum subsp. pallidum (Nichols strain) and T. phagedenis Kazan 5. Purified T. pallidum periplasmic flagella contained six proteins (Mrs = 37,000, 34,500, 33,000, 30,000, 29,000, and 27,000), whereas T. phagedenis periplasmic flagella contained a major 39,000-Mr protein and a group of two major and two minor 33,000- to 34,000-Mr polypeptide species; 37,000- and 30,000-Mr proteins were also present in some T. phagedenis preparations. Immunoblotting with monospecific antisera and monoclonal antibodies and N-terminal sequence analysis indicated that the major periplasmic flagellar proteins were divided into two distinct classes, designated class A and class B. Class A proteins consisted of the 37-kilodalton (kDa) protein of T. pallidum and the 39-kDa polypeptide of T. phagedenis; class B included the T. pallidum 34.5-, 33-, and 30-kDa proteins and the four 33- and 34-kDa polypeptide species of T. phagedenis. The proteins within each class were immunologically cross-reactive and possessed similar N-terminal sequences (67 to 95% homology); no cross-reactivity or sequence homology was evident between the two classes. Anti-class A or anti-class B antibodies did not react with the 29- or 27-kDa polypeptides of T. pallidum or the 37- and 30-kDa T. phagedenis proteins, indicating that these proteins are antigenically unrelated to the class A and class B proteins. The lack of complete N-terminal sequence homology among the major periplasmic flagellar proteins of each organism indicates that they are most likely encoded by separate structural genes. Furthermore, the N-terminal sequences of T. phagedenis and T. pallidum periplasmic flagellar proteins are highly conserved, despite the genetic dissimilarity of these two species.
许多螺旋体的周质鞭毛含有多种蛋白质。在本研究中,采用二维电泳、蛋白质免疫印迹法(免疫印迹)、免疫过氧化物酶染色和N端氨基酸序列分析,对梅毒螺旋体亚种苍白亚种(Nichols株)和溃蚀性螺旋体Kazan 5株的单个周质鞭毛蛋白进行了表征。纯化的梅毒螺旋体周质鞭毛含有6种蛋白质(相对分子质量分别为37000、34500、33000、30000、29000和27000),而溃蚀性螺旋体周质鞭毛含有一种主要的相对分子质量为39000的蛋白质以及一组由两种主要和两种次要的相对分子质量在33000至34000之间的多肽;相对分子质量为37000和30000的蛋白质也存在于一些溃蚀性螺旋体制剂中。用单特异性抗血清和单克隆抗体进行免疫印迹以及N端序列分析表明,主要的周质鞭毛蛋白可分为两个不同的类别,分别命名为A类和B类。A类蛋白包括梅毒螺旋体的37千道尔顿(kDa)蛋白和溃蚀性螺旋体的39 kDa多肽;B类包括梅毒螺旋体的34.5 kDa、33 kDa和30 kDa蛋白以及溃蚀性螺旋体的四种相对分子质量为33 kDa和34 kDa的多肽。每类中的蛋白质具有免疫交叉反应性且具有相似的N端序列(同源性为67%至95%);两类之间没有明显的交叉反应性或序列同源性。抗A类或抗B类抗体不与梅毒螺旋体的29 kDa或27 kDa多肽或溃蚀性螺旋体的37 kDa和30 kDa蛋白反应,表明这些蛋白质与A类和B类蛋白在抗原性上无关。每个生物体主要周质鞭毛蛋白之间缺乏完整的N端序列同源性,这表明它们很可能由不同的结构基因编码。此外,尽管这两个物种在基因上存在差异,但溃蚀性螺旋体和梅毒螺旋体周质鞭毛蛋白的N端序列高度保守。