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脑膜炎奈瑟菌菌毛。结构分析以及与淋球菌菌毛结构和抗原关系的研究。

Pili of Neisseria meningitidis. Analysis of structure and investigation of structural and antigenic relationships to gonococcal pili.

作者信息

Stephens D S, Whitney A M, Rothbard J, Schoolnik G K

出版信息

J Exp Med. 1985 Jun 1;161(6):1539-53. doi: 10.1084/jem.161.6.1539.

Abstract

To provide information useful for the design of a pilus vaccine effective for the prevention of both meningococcal and gonococcal disease, the electron microscopic morphology of meningococcal pili and the structural and antigenic relationships of meningococcal pili to gonococcal pili were investigated. Meningococcal pili were 4-6 nm in width, extended 500-6,000 nm from the organism surface, and occurred singly or in bundles composed of 8-10 pili per bundle. Meningococcal pilin varied between 17,250 and 20,600 daltons. Pilin was present in outer membrane preparations of some meningococcal isolates that were nonpiliated by electron microscopic examination. Antibodies to gonococcal pili, cyanogen bromide cleavage fragments of gonococcal pilin, or synthetic peptide analogues corresponding to regions of the gonococcal pilin sequence, were used to detect common meningococcal and gonococcal antigenic determinants that might indicate the existence of a conserved sequence beyond residue 29. Antibody to intact gonococcal pili or to the variable CNBR-3 region of gonococcal pilin detected little shared antigenicity with meningococcal pilin. However, pilin from all tested meningococcal isolates reacted with antibody to the CNBR-2 fragment of gonococcal pilin, a region highly conserved among gonococcal strains. Meningococcal pilins were also broadly crossreactive with antibody to a synthetic peptide corresponding to residues 69-84 of the gonococcal sequence, a part of the CNBR-2 region that appears to be critical for gonococcal receptor-binding function. If a sequence similar to 69-84 is also important for receptor-binding function in meningococcal pili, a peptide corresponding to this region may elicit antibodies that block the adherence function of pili elaborated by both Neisseria gonorrhoeae and N. meningitidis.

摘要

为了提供有助于设计一种对预防脑膜炎球菌病和淋球菌病均有效的菌毛疫苗的信息,研究了脑膜炎球菌菌毛的电子显微镜形态以及脑膜炎球菌菌毛与淋球菌菌毛的结构和抗原关系。脑膜炎球菌菌毛宽度为4 - 6纳米,从菌体表面伸出500 - 6000纳米,单个出现或成束存在,每束由8 - 10根菌毛组成。脑膜炎球菌菌毛蛋白分子量在17250至20600道尔顿之间。在一些经电子显微镜检查无菌毛的脑膜炎球菌分离株的外膜制剂中也存在菌毛蛋白。使用针对淋球菌菌毛的抗体、淋球菌菌毛蛋白的溴化氰裂解片段或与淋球菌菌毛蛋白序列区域相对应的合成肽类似物,来检测可能表明在第29位残基之后存在保守序列的常见脑膜炎球菌和淋球菌抗原决定簇。针对完整淋球菌菌毛或淋球菌菌毛蛋白可变的CNBR - 3区域的抗体与脑膜炎球菌菌毛蛋白几乎没有共同抗原性。然而,所有测试的脑膜炎球菌分离株的菌毛蛋白都与针对淋球菌菌毛蛋白CNBR - 2片段的抗体发生反应,该区域在淋球菌菌株中高度保守。脑膜炎球菌菌毛蛋白也与针对对应于淋球菌序列第69 - 84位残基的合成肽的抗体广泛交叉反应,该区域是CNBR - 2区域的一部分,似乎对淋球菌受体结合功能至关重要。如果类似于69 - 84的序列对脑膜炎球菌菌毛的受体结合功能也很重要,那么对应于该区域的肽可能会引发能够阻断淋病奈瑟菌和脑膜炎奈瑟菌产生的菌毛黏附功能的抗体。

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