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刚地弓形虫会利用它不入侵的宿主细胞。

Toxoplasma co-opts host cells it does not invade.

机构信息

Department of Medicine (Infectious Disease), Stanford University School of Medicine, Stanford, California, United States of America.

出版信息

PLoS Pathog. 2012;8(7):e1002825. doi: 10.1371/journal.ppat.1002825. Epub 2012 Jul 26.

Abstract

Like many intracellular microbes, the protozoan parasite Toxoplasma gondii injects effector proteins into cells it invades. One group of these effector proteins is injected from specialized organelles called the rhoptries, which have previously been described to discharge their contents only during successful invasion of a host cell. In this report, using several reporter systems, we show that in vitro the parasite injects rhoptry proteins into cells it does not productively invade and that the rhoptry effector proteins can manipulate the uninfected cell in a similar manner to infected cells. In addition, as one of the reporter systems uses a rhoptry:Cre recombinase fusion protein, we show that in Cre-reporter mice infected with an encysting Toxoplasma-Cre strain, uninfected-injected cells, which could be derived from aborted invasion or cell-intrinsic killing after invasion, are actually more common than infected-injected cells, especially in the mouse brain, where Toxoplasma encysts and persists. This phenomenon has important implications for how Toxoplasma globally affects its host and opens a new avenue for how other intracellular microbes may similarly manipulate the host environment at large.

摘要

像许多细胞内微生物一样,原生动物寄生虫刚地弓形虫将效应蛋白注入它入侵的细胞。这些效应蛋白的一组是从称为棒状体的专门细胞器中注射的,这些细胞器以前被描述为仅在成功入侵宿主细胞时才排出其内容物。在本报告中,我们使用几种报告系统表明,在体外寄生虫将棒状体蛋白注入它不能有效入侵的细胞中,并且棒状体效应蛋白可以以类似于感染细胞的方式操纵未感染的细胞。此外,由于报告系统之一使用棒状体:Cre 重组酶融合蛋白,我们表明在感染囊泡形成的 Toxoplasma-Cre 株的 Cre 报告小鼠中,未感染注射的细胞(可能源自入侵失败或入侵后的细胞内在杀伤)实际上比感染注射的细胞更为常见,尤其是在老鼠的大脑中,弓形虫会形成囊泡并持续存在。这种现象对弓形虫如何全球影响其宿主具有重要意义,并为其他细胞内微生物如何以类似的方式操纵宿主环境开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab2d/3406079/4055785e18d5/ppat.1002825.g001.jpg

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