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本文引用的文献

1
EXP1 is critical for nutrient uptake across the parasitophorous vacuole membrane of malaria parasites.EXP1 对疟原虫寄生泡膜的营养吸收至关重要。
PLoS Biol. 2019 Sep 30;17(9):e3000473. doi: 10.1371/journal.pbio.3000473. eCollection 2019 Sep.
2
A crucial role for the C-terminal domain of exported protein 1 during the mosquito and hepatic stages of the Plasmodium berghei life cycle.疟原虫伯氏疟原虫生命周期中,输出蛋白1的C末端结构域在蚊子和肝脏阶段发挥关键作用。
Cell Microbiol. 2019 Oct;21(10):e13088. doi: 10.1111/cmi.13088. Epub 2019 Jul 30.
3
Deletion of Plasmodium falciparum Protein RON3 Affects the Functional Translocation of Exported Proteins and Glucose Uptake.缺失疟原虫蛋白 RON3 会影响分泌蛋白的功能转运和葡萄糖摄取。
mBio. 2019 Jul 9;10(4):e01460-19. doi: 10.1128/mBio.01460-19.
4
Recent advances in proximity-based labeling methods for interactome mapping.用于相互作用组图谱绘制的基于邻近标记方法的最新进展。
F1000Res. 2019 Jan 31;8. doi: 10.12688/f1000research.16903.1. eCollection 2019.
5
PfVPS45 Is Required for Host Cell Cytosol Uptake by Malaria Blood Stage Parasites.PfVPS45 是疟原虫血期进入宿主细胞质所必需的。
Cell Host Microbe. 2019 Jan 9;25(1):166-173.e5. doi: 10.1016/j.chom.2018.11.010. Epub 2018 Dec 20.
6
Knockdown of the translocon protein EXP2 in Plasmodium falciparum reduces growth and protein export.敲低恶性疟原虫转位蛋白 EXP2 减少生长和蛋白质输出。
PLoS One. 2018 Nov 15;13(11):e0204785. doi: 10.1371/journal.pone.0204785. eCollection 2018.
7
Integrative proteomics and bioinformatic prediction enable a high-confidence apicoplast proteome in malaria parasites.整合蛋白质组学和生物信息学预测使疟原虫中的质体蛋白组具有高度可信度。
PLoS Biol. 2018 Sep 13;16(9):e2005895. doi: 10.1371/journal.pbio.2005895. eCollection 2018 Sep.
8
Malaria parasite translocon structure and mechanism of effector export.疟原虫转位通道结构与效应子输出机制。
Nature. 2018 Sep;561(7721):70-75. doi: 10.1038/s41586-018-0469-4. Epub 2018 Aug 27.
9
EXP2 is a nutrient-permeable channel in the vacuolar membrane of Plasmodium and is essential for protein export via PTEX.EXP2 是疟原虫液泡膜上的一种营养可渗透通道,对于通过 PTEX 进行蛋白质输出是必需的。
Nat Microbiol. 2018 Oct;3(10):1090-1098. doi: 10.1038/s41564-018-0222-7. Epub 2018 Aug 27.
10
Rounding precedes rupture and breakdown of vacuolar membranes minutes before malaria parasite egress from erythrocytes.裂殖子从红细胞逸出前几分钟,液泡膜就开始先发生皱缩,随后破裂。
Cell Microbiol. 2018 Oct;20(10):e12868. doi: 10.1111/cmi.12868. Epub 2018 Jul 10.

EXP1 对于疟原虫内的 EXP2 空泡的形成是必需的。

EXP1 is required for organisation of EXP2 in the intraerythrocytic malaria parasite vacuole.

机构信息

Department of Biomedical Sciences, Iowa State University, Ames, Iowa.

Department of Biological Chemistry, University of California, Los Angeles, Los Angeles, California.

出版信息

Cell Microbiol. 2020 May;22(5):e13168. doi: 10.1111/cmi.13168. Epub 2020 Feb 12.

DOI:10.1111/cmi.13168
PMID:31990132
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7138706/
Abstract

Intraerythrocytic malaria parasites reside within a parasitophorous vacuole membrane (PVM) that closely overlays the parasite plasma membrane. Although the PVM is the site of several transport activities essential to parasite survival, the basis for organisation of this membrane system is unknown. Here, we performed proximity labeling at the PVM with BioID2, which highlighted a group of single-pass integral membrane proteins that constitute a major component of the PVM proteome but whose function remains unclear. We investigated EXP1, the longest known member of this group, by adapting a CRISPR/Cpf1 genome editing system to install the TetR-DOZI-aptamers system for conditional translational control. Importantly, although EXP1 was required for intraerythrocytic development, a previously reported in vitro glutathione S-transferase activity could not account for this essential EXP1 function in vivo. EXP1 knockdown was accompanied by profound changes in vacuole ultrastructure, including apparent increased separation of the PVM from the parasite plasma membrane and formation of abnormal membrane structures. Furthermore, although activity of the Plasmodium translocon of exported proteins was not impacted by depletion of EXP1, the distribution of the translocon pore-forming protein EXP2 but not the HSP101 unfoldase was substantially altered. Collectively, our results reveal a novel PVM defect that indicates a critical role for EXP1 in maintaining proper organisation of EXP2 within the PVM.

摘要

疟原虫在虫体滋养液泡膜(PVM)内寄生,该膜与疟原虫质膜紧密重叠。虽然 PVM 是对寄生虫生存至关重要的几种转运活动的发生部位,但该膜系统的组织基础尚不清楚。在这里,我们使用 BioID2 在 PVM 上进行邻近标记,该方法突出显示了一组单次跨膜整合膜蛋白,它们构成 PVM 蛋白质组的主要成分,但它们的功能尚不清楚。我们通过适应 CRISPR/Cpf1 基因组编辑系统来安装 TetR-DOZI-适体系统,以实现条件翻译控制,从而研究了该组中最长的 EXP1。重要的是,尽管 EXP1 是红内期发育所必需的,但之前报道的体外谷胱甘肽 S-转移酶活性不能解释 EXP1 在体内的这种必需功能。EXP1 敲低伴随着液泡超微结构的深刻变化,包括 PVM 与疟原虫质膜的明显分离和异常膜结构的形成。此外,尽管 EXP1 的耗尽并未影响质膜输出蛋白转运体的活性,但转运体孔形成蛋白 EXP2 的分布而非 HSP101 解旋酶的分布发生了显著改变。总之,我们的结果揭示了一种新的 PVM 缺陷,表明 EXP1 在维持 EXP2 在 PVM 中的正确组织中起着关键作用。