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不同沙门氏菌菌毛黏附素的黏附机制。

Adhesive mechanism of different Salmonella fimbrial adhesins.

机构信息

Department of Basic Veterinary, College of Veterinary Medicine, Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.

Department of Inflammation and Immunity, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, 44195, Ohio, USA.

出版信息

Microb Pathog. 2019 Dec;137:103748. doi: 10.1016/j.micpath.2019.103748. Epub 2019 Sep 12.

Abstract

Salmonellosis is a serious threat to human and animal health. Salmonella adhesion to the host cell is an initial and most crucial step in the pathogenesis of salmonellosis. Many factors are involved in the adhesion process of Salmonella infection. Fimbriae are one of the most important factors in the adhesion of Salmonella. The Salmonella fimbriae are assembled in three types of assembly pathways: chaperon-usher, nucleation-precipitation, and type IV fimbriae. These assembly pathways lead to multiple types of fimbriae. Salmonella fimbriae bind to host cell receptors to initiate adhesion. So far, many receptors have been identified, such as Toll-like receptors. However, several receptors that may be involved in the adhesive mechanism of Salmonella fimbriae are still un-identified. This review aimed to summarize the types of Salmonella fimbriae produced by different assembly pathways and their role in adhesion. It also enlisted previously discovered receptors involved in adhesion. This review might help readers to develop a comprehensive understanding of Salmonella fimbriae, their role in adhesion, and recently developed strategies to counter Salmonella infection.

摘要

沙门氏菌病是人类和动物健康的严重威胁。沙门氏菌黏附宿主细胞是沙门氏菌病发病机制中的初始和最关键的步骤。沙门氏菌感染的黏附过程涉及许多因素。菌毛是沙门氏菌黏附的最重要因素之一。沙门氏菌菌毛有三种组装途径:伴侣蛋白-usher、成核-沉淀和 IV 型菌毛。这些组装途径导致多种类型的菌毛。沙门氏菌菌毛结合宿主细胞受体以启动黏附。到目前为止,已经鉴定出许多受体,例如 Toll 样受体。然而,仍有一些可能参与沙门氏菌菌毛黏附机制的受体尚未被鉴定。本综述旨在总结不同组装途径产生的沙门氏菌菌毛的类型及其在黏附中的作用。它还列出了以前发现的参与黏附的受体。本综述可能有助于读者全面了解沙门氏菌菌毛、它们在黏附中的作用以及最近开发的对抗沙门氏菌感染的策略。

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