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RON5对于弓形虫移动连接复合体的组织和功能至关重要。

RON5 is critical for organization and function of the Toxoplasma moving junction complex.

作者信息

Beck Josh R, Chen Allan L, Kim Elliot W, Bradley Peter J

机构信息

Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, Los Angeles, California, United States of America.

出版信息

PLoS Pathog. 2014 Mar 20;10(3):e1004025. doi: 10.1371/journal.ppat.1004025. eCollection 2014 Mar.

Abstract

Apicomplexans facilitate host cell invasion through formation of a tight-junction interface between parasite and host plasma membranes called the moving junction (MJ). A complex of the rhoptry neck proteins RONs 2/4/5/8 localize to the MJ during invasion where they are believed to provide a stable anchoring point for host penetration. During the initiation of invasion, the preformed MJ RON complex is injected into the host cell where RON2 spans the host plasma membrane while RONs 4/5/8 localize to its cytosolic face. While much attention has been directed toward an AMA1-RON2 interaction supposed to occur outside the cell, little is known about the functions of the MJ RONs positioned inside the host cell. Here we provide a detailed analysis of RON5 to resolve outstanding questions about MJ complex organization, assembly and function during invasion. Using a conditional knockdown approach, we show loss of RON5 results in complete degradation of RON2 and mistargeting of RON4 within the parasite secretory pathway, demonstrating that RON5 plays a key role in organization of the MJ RON complex. While RON8 is unaffected by knockdown of RON5, these parasites are unable to invade new host cells, providing the first genetic demonstration that RON5 plays a critical role in host cell penetration. Although invasion is not required for injection of rhoptry effectors into the host cytosol, parasites lacking RON5 also fail to form evacuoles suggesting an intact MJ complex is a prerequisite for secretion of rhoptry bulb contents. Additionally, while the MJ has been suggested to function in egress, disruption of the MJ complex by RON5 depletion does not impact this process. Finally, functional complementation of our conditional RON5 mutant reveals that while proteolytic separation of RON5 N- and C-terminal fragments is dispensable, a portion of the C-terminal domain is critical for RON2 stability and function in invasion.

摘要

顶复门原虫通过在寄生虫与宿主质膜之间形成一种称为移动连接(MJ)的紧密连接界面来促进宿主细胞入侵。棒状体颈部蛋白RONs 2/4/5/8的复合体在入侵过程中定位于MJ,据信它们为宿主穿透提供了一个稳定的锚定点。在入侵开始时,预先形成的MJ RON复合体被注入宿主细胞,其中RON2跨越宿主质膜,而RONs 4/5/8定位于其胞质面。虽然很多注意力都集中在假定发生在细胞外的AMA1-RON2相互作用上,但对于位于宿主细胞内的MJ RONs的功能却知之甚少。在这里,我们对RON5进行了详细分析,以解决有关入侵过程中MJ复合体的组织、组装和功能的悬而未决的问题。使用条件性敲低方法,我们发现RON5的缺失导致RON2完全降解以及RON4在寄生虫分泌途径中的错误定位,这表明RON5在MJ RON复合体的组织中起关键作用。虽然RON8不受RON5敲低的影响,但这些寄生虫无法入侵新的宿主细胞,这首次通过遗传学证明RON5在宿主细胞穿透中起关键作用。尽管将棒状体效应蛋白注入宿主细胞质不需要入侵,但缺乏RON5的寄生虫也无法形成液泡,这表明完整的MJ复合体是棒状体球内容物分泌的先决条件。此外,虽然有人提出MJ在逸出过程中起作用,但RON5缺失对MJ复合体的破坏并不影响这一过程。最后,我们的条件性RON5突变体的功能互补表明,虽然RON5 N端和C端片段的蛋白水解分离是可有可无的,但C端结构域的一部分对于RON2的稳定性和入侵功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6ea/3961375/0b291eb22f40/ppat.1004025.g001.jpg

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