毒力
生物
细菌外膜
微生物学
毒力因子
补体系统
先天免疫系统
病菌
维生素连接蛋白
补体膜攻击复合物
突变体
系数H
大肠杆菌
基因
抗体
细胞生物学
免疫系统
遗传学
细胞外基质
纤维连接蛋白
作者
Sen Li,Wei Wang,Rongkun Yang,Xiaotong Zhu,Hongying Bai,Xiaojian Deng,Jiao Bai,Yang Zhang,Yuncai Xiao,Zili Li,Zheng‐Fei Liu,Zutao Zhou
出处
期刊:Virulence
[Informa]
日期:2023-06-16
卷期号:14 (1)
被引量:5
标识
DOI:10.1080/21505594.2023.2223060
摘要
Riemerella anatipestifer is an important bacterial pathogen in poultry. Pathogenic bacteria recruit host complement factors to resist the bactericidal effect of serum complement. Vitronectin (Vn) is a complementary regulatory protein that inhibits the formation of the membrane attack complex (MAC). Microbes use outer membrane proteins (OMPs) to hijack Vn for complement evasion. However, the mechanism by which R. anatipestifer achieves evasion is unclear. This study aimed to characterise OMPs of R. anatipestifer which interact with duck Vn (dVn) during complement evasion. Far-western assays and comparison of wild-type and mutant strains that were treated with dVn and duck serum demonstrated particularly strong binding of OMP76 to dVn. These data were confirmed with Escherichia coli strains expressing and not expressing OMP76. Combining tertiary structure analysis and homology modelling, truncated and knocked-out fragments of OMP76 showed that a cluster of critical amino acids in an extracellular loop of OMP76 mediate the interaction with dVn. Moreover, binding of dVn to R. anatipestifer inhibited MAC deposition on the bacterial surface thereby enhancing survival in duck serum. Virulence of the mutant strain ΔOMP76 was attenuated significantly relative to the wild-type strain. Furthermore, adhesion and invasion abilities of ΔOMP76 decreased, and histopathological changes showed that ΔOMP76 was less virulent in ducklings. Thus, OMP76 is a key virulence factor of R. anatipestifer. The identification of OMP76-mediated evasion of complement by recruitment of dVn contributes significantly to the understanding of the molecular mechanism by which R. anatipestifer escapes host innate immunity and provides a new target for the development of subunit vaccines.
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