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入侵过程中宿主细胞质膜的穿孔需要棒状体胞吐作用。

Perforation of the host cell plasma membrane during invasion requires rhoptry exocytosis.

作者信息

Male Frances, Kegawa Yuto, Blank Paul S, Jiménez-Munguía Irene, Sidik Saima M, Valleau Dylan, Lourido Sebastian, Lebrun Maryse, Zimmerberg Joshua, Ward Gary E

机构信息

Department of Microbiology and Molecular Genetics, University of Vermont Larner College of Medicine, Burlington, Vermont, USA.

Section on Integrative Biophysics; Division of Basic and Translational Biophysics, Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD), National Institutes of Health (NIH), Bethesda, Maryland, USA.

出版信息

bioRxiv. 2024 Nov 11:2024.10.12.618018. doi: 10.1101/2024.10.12.618018.

Abstract

is an obligate intracellular parasite, and the delivery of effector proteins from the parasite into the host cell during invasion is critical for invasion itself and for parasite virulence. The effector proteins are released from specialized apical secretory organelles known as rhoptries. While much has been learned recently about the structure and composition of the rhoptry exocytic machinery and the function of individual rhoptry effector proteins that are exocytosed, virtually nothing is known about how the released proteins are translocated across the host cell plasma membrane. Previous electrophysiology experiments reported an unanticipated observation that invasion by is preceded by a transient increase in host cell plasma membrane conductance. Here, we confirm this electrophysiological observation and propose that the conductance transient represents a parasite-induced perforation in the host cell plasma membrane through which rhoptry proteins are delivered. As a first step towards testing this hypothesis, and to provide higher throughput than patch clamp electrophysiology, we developed an alternative assay to detect the perforation. This assay utilizes high-speed, multi-wavelength fluorescence imaging to enable simultaneous visualization of host cell perforation and parasite invasion. Using this assay, we interrogated a panel of mutant parasites conditionally depleted of key invasion-related proteins. Parasites lacking signaling proteins involved in triggering rhoptry secretion (, CLAMP) or components of the rhoptry exocytic machinery (, Nd9, RASP2) are defective in their ability to induce the perforation. These data are consistent with a model in which the perforating agents that disrupt host cell membrane integrity during invasion - and may thereby provide the conduit for delivery of rhoptry effector proteins - are stored within the rhoptries themselves and released upon contact with the host cell.

摘要

是一种专性细胞内寄生虫,在入侵过程中,效应蛋白从寄生虫传递到宿主细胞中,这对于入侵本身和寄生虫的毒力至关重要。效应蛋白从被称为棒状体的特殊顶端分泌细胞器中释放出来。虽然最近在棒状体胞吐机制的结构和组成以及胞吐的单个棒状体效应蛋白的功能方面已经有了很多了解,但对于释放的蛋白如何穿过宿主细胞质膜转运却几乎一无所知。先前的电生理学实验报告了一个意外的观察结果,即 入侵之前宿主细胞质膜电导会短暂增加。在这里,我们证实了这一电生理学观察结果,并提出电导瞬变代表寄生虫诱导的宿主细胞质膜穿孔,通过该穿孔棒状体蛋白被递送。作为检验这一假设的第一步,并且为了提供比膜片钳电生理学更高的通量,我们开发了一种替代测定法来检测穿孔。该测定法利用高速多波长荧光成像来同时可视化宿主细胞穿孔和寄生虫入侵。使用这种测定法,我们研究了一组有条件地耗尽关键入侵相关蛋白的突变寄生虫。缺乏参与触发棒状体分泌的信号蛋白( 、CLAMP)或棒状体胞吐机制成分( 、Nd9、RASP2)的寄生虫在诱导穿孔的能力上存在缺陷。这些数据与一个模型一致,即在入侵过程中破坏宿主细胞膜完整性的穿孔剂——从而可能为棒状体效应蛋白的递送提供通道——被储存在棒状体内,并在与宿主细胞接触时释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dae5/11601479/2af17b9bfd99/nihpp-2024.10.12.618018v2-f0001.jpg

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