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微孢子虫分泌效应蛋白及其在致病过程中的作用。

Microsporidia secretory effectors and their roles in pathogenesis.

作者信息

Ran Maoshuang, Yang Wenxin, Faryad Khan Muhammad Usman, Li Tian, Pan Guoqing

机构信息

State Key Laboratory of Resource Insects, Southwest University, Chongqing, China.

Chongqing Key Laboratory of Microsporidia Infection and Control, Southwest University, Chongqing, China.

出版信息

J Eukaryot Microbiol. 2024 Sep-Oct;71(5):e13046. doi: 10.1111/jeu.13046. Epub 2024 Sep 4.

DOI:10.1111/jeu.13046
PMID:39228342
Abstract

Microsporidia, a group of unicellular eukaryotic parasites, rely intensely on secretory effectors for successful invasion and proliferation within host cells. This review focuses on the identification, characterization, and functional roles of effectors, including secretory proteins and microRNAs. The adhesion proteins like the Ricin-B-lectin facilitate initial invasion, which binds to the host cell surface. Once inside, microsporidia deploy a range of effectors to modulate host immune responses, such as serpin proteins, and redirect host cell metabolism to meet the parasite's nutritional needs through hexokinase. Some effectors such as microRNAs, alter the host gene expression to create a more favorable intracellular parasitic environment. In conclusion, the secretory effectors of microsporidia play a pivotal role spanning from host cell invasion to intracellular establishment. In the future, more effectors secreted by microsporidia will be studied, which will not only help to elucidate the molecular mechanism of pathogenic manipulation of the host but also help to provide the potential targets for anti-parasitic treatments.

摘要

微孢子虫是一类单细胞真核寄生虫,在宿主细胞内成功入侵和增殖高度依赖分泌效应蛋白。本综述聚焦于效应蛋白的鉴定、表征及其功能作用,包括分泌蛋白和微小RNA。诸如蓖麻毒蛋白B凝集素之类的粘附蛋白有助于初始入侵,其可与宿主细胞表面结合。一旦进入宿主细胞,微孢子虫会部署一系列效应蛋白来调节宿主免疫反应,比如丝氨酸蛋白酶抑制剂蛋白,并通过己糖激酶重定向宿主细胞代谢以满足寄生虫的营养需求。一些效应蛋白如微小RNA,会改变宿主基因表达以营造更有利于细胞内寄生的环境。总之,微孢子虫的分泌效应蛋白在从宿主细胞入侵到细胞内定植的整个过程中发挥着关键作用。未来,将对更多微孢子虫分泌的效应蛋白展开研究,这不仅有助于阐明病原体操控宿主的分子机制,还能为抗寄生虫治疗提供潜在靶点。

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Microsporidia secretory effectors and their roles in pathogenesis.微孢子虫分泌效应蛋白及其在致病过程中的作用。
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