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Plasmodium UIS3 sequesters host LC3 to avoid elimination by autophagy in hepatocytes

机译:纤维化素UIS3螯合宿主LC3以避免肝细胞中的自噬消除

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摘要

The causative agent of malaria, Plasmodium, replicates inside a membrane-bound parasitophorous vacuole (PV), which shields this intracellular parasite from the cytosol of the host cell(1). One common threat for intracellular pathogens is the homeostatic process of autophagy, through which cells capture unwanted intracellular material for lysosomal degradation(2). During the liver stage of a malaria infection, Plasmodium parasites are targeted by the autophagy machinery of the host cell, and the PV membrane (PVM) becomes decorated with several autophagy markers, including LC3 (microtubule-associated protein 1 light chain 3)(3,4). Here we show that Plasmodium berghei parasites infecting hepatic cells rely on the PVM transmembrane protein UIS3 to avoid elimination by host-cell-mediated autophagy. We found that UIS3 binds host LC3 through a non-canonical interaction with a specialized surface on LC3 where host proteins with essential functions during autophagy also bind. UIS3 acts as a bona fide autophagy inhibitor by competing with host LC3-interacting proteins for LC3 binding. Our work identifies UIS3, one of the most promising candidates for a genetically attenuated vaccine against malaria5, as a unique and potent mediator of autophagy evasion in Plasmodium. We propose that the protein-protein interaction between UIS3 and host LC3 represents a target for antimalarial drug development.
机译:疟疾,疟原虫的致病剂在膜结合的寄生液泡(PV)内重复,其将该细胞内寄生虫从宿主细胞(1)的胞嘧啶屏蔽。细胞内病原体的一种常见威胁是自噬的稳态过程,通过该稳压过程,细胞捕获不需要的细胞内材料以进行溶酶体降解(2)。在疟疾感染的肝脏阶段,寄生血管素由宿主细胞的自噬机械靶向,PV膜(PVM)用几种自噬标志物装饰,包括LC3(微管相关蛋白1轻链3)(3 ,4)。在这里,我们表明,宠物血浆寄生虫感染肝细胞依赖于PVM跨膜蛋白UIS3,以避免通过宿主细胞介导的自噬消除。我们发现UIS3通过与LC3上的专门表面的非规范相互作用结合宿主LC3,其中宿主蛋白质在自噬中具有基本功能的蛋白质也结合。 UIS3通过与宿主LC3相互作用的蛋白质竞争LC3结合来充当真正的自噬抑制剂。我们的工作识别UIS3,其对疟疾5的基因减毒疫苗最有前途的候选人之一是疟原虫中自噬逃逸的独特和有效的介质。我们提出UIS3和宿主LC3之间的蛋白质 - 蛋白质相互作用代表抗疟药的药物发育的靶标。

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