Involvement of the vacuolar proton-translocating ATPase in multiple steps of the endo-lysosomal system and in the contractile vacuole system of Dictyostelium discoideum

收缩液泡 液泡 盘基网柄菌 生物 内吞作用 细胞生物学 胞吐 小泡 质子泵 溶酶体 ATP酶 生物化学 吞噬作用 ATP水解 细胞 细胞质 基因
作者
Lesly A. Temesvari,Juan Rodriguez‐Paris,John M. Bush,Linyi Zhang,James A. Cardelli
出处
期刊:Journal of Cell Science [The Company of Biologists]
卷期号:109 (6): 1479-1495 被引量:79
标识
DOI:10.1242/jcs.109.6.1479
摘要

ABSTRACT We have investigated the effects of Concanamycin A (CMA), a specific inhibitor of vacuolar type H+-ATPases, on acidification and function of the endo-lysosomal and contractile vacuole (CV) systems of D. discoideum. This drug inhibited acidification and increased the pH of endo-lysosomal vesicles both in vivo and in vitro in a dose dependent manner. Treatment also inhibited endocytosis and exocytosis of fluid phase, and phagocytosis of latex beads. This report also confirms our previous conclusions (Cardelli et al. (1989)J. Biol. Chem. 264, 3454-3463) that maintenance of acidic pH in lumenal compartments is required for efficient processing and targeting of a lysosomal enzyme, α-mannosidase. CMA treatment com-promised the function of the contractile vacuole complex as amoebae exposed to a hypo-osmotic environment in the presence of CMA, swelled rapidly and ruptured. Fluorescence microscopy revealed that CMA treatment induced gross morphological changes in D. discoideum cells, characterized by the formation of large intracellular vacuoles containing fluid phase. The reticular membranes of the CV system were also no longer as apparent in drug treated cells. Finally, this is the first report describing cells that can adapt in the presence of CMA; in nutrient medium, D. dis-coideum overcame the effects of CMA after one hour of drug treatment even in the absence of protein synthesis. Upon adaptation to CMA, normal sized endo-lysosomal vesicles reappeared, endo-lysosomal pH decreased, and the rate of endocytosis, exocytosis and phagocytosis returned to normal. This study demonstrates that the V-H+-ATPase plays an important role in maintaining the integrity and function of the endo-lysosomal and CV systems and that D. discoideum can compensate for the loss of a functional V-H+-ATPase.

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