Reversible assembly and disassembly of V-ATPase during the lysosome regeneration cycle.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-05-01 Epub Date: 2024-03-06 DOI:10.1091/mbc.E23-08-0322
Ioana Sava, Luther J Davis, Sally R Gray, Nicholas A Bright, J Paul Luzio
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Abstract

Regulation of the luminal pH of late endocytic compartments in continuously fed mammalian cells is poorly understood. Using normal rat kidney fibroblasts, we investigated the reversible assembly/disassembly of the proton pumping V-ATPase when endolysosomes are formed by kissing and fusion of late endosomes with lysosomes and during the subsequent reformation of lysosomes. We took advantage of previous work showing that sucrosomes formed by the uptake of sucrose are swollen endolysosomes from which lysosomes are reformed after uptake of invertase. Using confocal microscopy and subcellular fractionation of NRK cells stably expressing fluorescently tagged proteins, we found net recruitment of the V1 subcomplex during sucrosome formation and loss during lysosome reformation, with a similar time course to RAB7a loss. Addition of invertase did not alter mTORC1 signalling, suggesting that the regulation of reversible V-ATPase assembly/disassembly in continuously fed cells differs from that in cells subject to amino acid depletion/refeeding. Using live cell microscopy, we demonstrated recruitment of a fluorescently tagged V1 subunit during endolysosome formation and a dynamic equilibrium and rapid exchange between the cytosolic and membrane bound pools of this subunit. We conclude that reversible V-ATPase assembly/disassembly plays a key role in regulating endolysosomal/lysosomal pH in continuously fed cells.

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溶酶体再生周期中 V-ATP 酶的可逆装配和拆卸。
人们对连续进食的哺乳动物细胞中晚期内细胞器腔内pH值的调控知之甚少。我们利用正常大鼠肾脏成纤维细胞,研究了当晚期内含体与溶酶体接吻融合形成内溶酶体时,以及随后溶酶体重组过程中质子泵 V-ATP 酶的可逆装配/解体。我们利用了以前的研究成果,该成果显示,蔗糖吸收后形成的蔗糖体是膨胀的内溶酶体,溶酶体在吸收转化酶后从蔗糖体中重新形成。利用共聚焦显微镜和稳定表达荧光标记蛋白的 NRK 细胞的亚细胞分馏,我们发现 V1 亚复合物在蔗糖体形成过程中净招募,在溶酶体重构过程中丢失,其时间过程与 RAB7a 丢失相似。加入转化酶不会改变 mTORC1 信号,这表明连续进食细胞中可逆 V-ATP 酶组装/解体的调控与氨基酸耗竭/再进食细胞中的调控不同。利用活细胞显微镜,我们展示了内溶酶体形成过程中荧光标记的 V1 亚基的招募,以及该亚基在细胞膜和膜结合池之间的动态平衡和快速交换。我们的结论是,可逆的 V-ATP 酶组装/解体在调节连续进食细胞的内溶酶体/溶酶体 pH 值中发挥着关键作用。[媒体:见正文] [媒体:见正文] [媒体:见正文] [媒体:见正文]。
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CiteScore
7.20
自引率
4.30%
发文量
567
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