Toxoplasma gondii Vps11, a subunit of HOPS and CORVET tethering complexes, is essential for the biogenesis of secretory organelles

菱形 生物 细胞生物学 拉布 内体 生物发生 细胞器 细胞器生物发生 高尔基体 分泌途径 囊泡转运蛋白 蛋白质靶向 液泡 微核 弓形虫 跨膜蛋白 顶复亚门 GTP酶 膜蛋白 小泡 细胞内 细胞质 内质网 受体 生物化学 遗传学 免疫学 抗体 基因 疟疾 恶性疟原虫
作者
Juliette Morlon‐Guyot,Sandra Pastore,Laurence Berry,Maryse Lebrun,Wassim Daher
出处
期刊:Cellular Microbiology [Wiley]
卷期号:17 (8): 1157-1178 被引量:56
标识
DOI:10.1111/cmi.12426
摘要

Apicomplexan parasites harbour unique secretory organelles (dense granules, rhoptries and micronemes) that play essential functions in host infection. Toxoplasma gondii parasites seem to possess an atypical endosome-like compartment, which contains an assortment of proteins that appear to be involved in vesicular sorting and trafficking towards secretory organelles. Recent studies highlighted the essential roles of many regulators such as Rab5A, Rab5C, sortilin-like receptor and syntaxin-6 in secretory organelle biogenesis. However, little is known about the protein complexes that recruit Rab-GTPases and SNAREs for membrane tethering in Apicomplexa. In mammals and yeast, transport, tethering and fusion of vesicles from early endosomes to lysosomes and the vacuole, respectively, are mediated by CORVET and HOPS complexes, both built on the same Vps-C core that includes Vps11 protein. Here, we show that a T. gondii Vps11 orthologue is essential for the biogenesis or proper subcellular localization of secretory organelle proteins. TgVps11 is a dynamic protein that associates with Golgi endosomal-related compartments, the vacuole and immature apical secretory organelles. Conditional knock-down of TgVps11 disrupts biogenesis of dense granules, rhoptries and micronemes. As a consequence, parasite motility, invasion, egress and intracellular growth are affected. This phenotype was confirmed with additional knock-down mutants of the HOPS complex. In conclusion, we show that apicomplexan parasites use canonical regulators of the endolysosome system to accomplish essential parasite-specific functions in the biogenesis of their unique secretory organelles.
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