多杀性巴氏杆菌
微生物学
毒力
生物
细菌胶囊
免疫系统
多糖
吞噬作用
分泌物
毒力因子
胶囊
先天免疫系统
发病机制
补体系统
免疫
细菌
免疫学
基因
生物化学
植物
遗传学
作者
Lijun Guan,Qian Zhang,Yun Xue,Jinqian Yang,Zhanqin Zhao
标识
DOI:10.1016/j.micpath.2020.104380
摘要
Pasteurella multocida possesses a viscous capsule polysaccharide on the cell surface, which is a critical structural component and virulence factor. Capsular polysaccharides are structurally similar to vertebrate glycosaminoglycans, providing an immunological mechanism for bacterial molecular mimicry, resistance to phagocytosis, and immune evasion during the infection process. Based on the capsular antigen, P. multocida is divided into A, B, D, E, and F five serogroups. Previously, we systematically reported the biosynthesis and regulation mechanisms of the P. multocida capsule. In this paper, we take serogroup A capsular polysaccharide as the representative, systematically illuminating the P. multocida capsular virulence and epidemiology, molecular camouflage, adhesion and colonization, anti-phagocytosis, anti-complement system, cell invasion and signal transduction mechanism, to provide a theoretical basis for the research of molecular pathogenic mechanism of P. multocida capsule and the development of polysaccharides vaccine.
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