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结节拟杆菌菌毛结构亚基和基础蛋白抗原的变异

Variation in the structural subunit and basal protein antigens of Bacteroides nodosus fimbriae.

作者信息

Anderson B J, Kristo C L, Egerton J R, Mattick J S

出版信息

J Bacteriol. 1986 May;166(2):453-60. doi: 10.1128/jb.166.2.453-460.1986.

Abstract

The fimbriae of Bacteroides nodosus play a major role in protective immunity against ovine footrot and are an important determinant in the serological classification system that divides field isolates into at least eight serogroups and 16 serotypes. Purified fimbriae contain two polypeptide antigens, the structural subunit of the fimbrial strand (molecular weight about 17,000) and a basal protein (molecular weight about 80,000), both of which exhibit structural variation. Fimbriae were prepared from all prototype strains, as well as from a number of other isolates representative of each of the B. nodosus serotypes, and analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Substantial variation was observed in the electrophoretic mobility of the fimbrial subunits from the prototypes of each of the eight serogroups. With the exception of serogroup H, which is an unusual case, the apparent molecular weights of the fimbrial subunits ranged from about 16,500 in serogroup D to 19,000 in serogroup F (serotype 1); in serogroup A, B, C and E, the apparent molecular weights were clustered in the range of 17,000 to 17,500, whereas serogroup G was about 18,500. Serogroup H fimbriae appeared to consist of two smaller polypeptides, which in the prototype (H1) had apparent molecular weights of about 6,000 and 10,000 and which seem to have arisen as a consequence of an internal proteolytic nick in the original subunit. Electrophoretic variation in the fimbrial subunit was also observed between different serotypes, although with the exceptions of serogroups F and H, this was not as pronounced as between the serogroups. Examination of a number of isolates classified within the same serotypes showed that some variation, although minor, also occurred at this level. The basal antigen exhibited significant variation at all levels of the serotypic hierarchy in a manner apparently unrelated to the classification system. Among the range of isolates examined, the apparent molecular weight of this antigen varied from about 77,000 to 88,000.

摘要

结节拟杆菌的菌毛在抵抗绵羊腐蹄病的保护性免疫中起主要作用,并且是血清学分类系统中的一个重要决定因素,该系统将田间分离株分为至少8个血清群和16个血清型。纯化的菌毛含有两种多肽抗原,菌毛丝的结构亚基(分子量约17,000)和一种基础蛋白(分子量约80,000),二者均表现出结构变异。从所有原型菌株以及许多代表每种结节拟杆菌血清型的其他分离株中制备菌毛,并通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳进行分析。在八个血清群中每个血清群的原型菌毛亚基的电泳迁移率中观察到显著差异。除了情况特殊的H血清群外,菌毛亚基的表观分子量范围从D血清群中的约16,500到F血清群(血清型1)中的19,000;在A、B、C和E血清群中,表观分子量集中在17,000至17,500范围内,而G血清群约为18,500。H血清群菌毛似乎由两种较小的多肽组成,在原型(H1)中其表观分子量约为6,000和10,000,似乎是原始亚基内部蛋白水解切口的结果。在不同血清型之间也观察到菌毛亚基的电泳差异,尽管除了F和H血清群外,这种差异不如血清群之间那么明显。对分类在相同血清型内的一些分离株的检查表明,在这个水平上也发生了一些差异,尽管很小。基础抗原在血清型层次结构的所有水平上均表现出显著差异,其方式显然与分类系统无关。在所检查的一系列分离株中,该抗原的表观分子量从约77,000变化到88,000。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a32a/214626/8b1d75667e96/jbacter00210-0102-a.jpg

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