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液泡型ATP酶的扰动:肌醇耗竭的一种新后果

Perturbation of the Vacuolar ATPase: A NOVEL CONSEQUENCE OF INOSITOL DEPLETION.

作者信息

Deranieh Rania M, Shi Yihui, Tarsio Maureen, Chen Yan, McCaffery J Michael, Kane Patricia M, Greenberg Miriam L

机构信息

From the Department of Biological Sciences, Wayne State University, Detroit, Michigan 48202.

the Department of Biochemistry and Molecular Biology, State University of New York Upstate Medical University, Syracuse, New York 13210, and.

出版信息

J Biol Chem. 2015 Nov 13;290(46):27460-72. doi: 10.1074/jbc.M115.683706. Epub 2015 Aug 31.

Abstract

Depletion of inositol has profound effects on cell function and has been implicated in the therapeutic effects of drugs used to treat epilepsy and bipolar disorder. We have previously shown that the anticonvulsant drug valproate (VPA) depletes inositol by inhibiting myo-inositol-3-phosphate synthase, the enzyme that catalyzes the first and rate-limiting step of inositol biosynthesis. To elucidate the cellular consequences of inositol depletion, we screened the yeast deletion collection for VPA-sensitive mutants and identified mutants in vacuolar sorting and the vacuolar ATPase (V-ATPase). Inositol depletion caused by starvation of ino1Δ cells perturbed the vacuolar structure and decreased V-ATPase activity and proton pumping in isolated vacuolar vesicles. VPA compromised the dynamics of phosphatidylinositol 3,5-bisphosphate (PI3,5P2) and greatly reduced V-ATPase proton transport in inositol-deprived wild-type cells. Osmotic stress, known to increase PI3,5P2 levels, did not restore PI3,5P2 homeostasis nor did it induce vacuolar fragmentation in VPA-treated cells, suggesting that perturbation of the V-ATPase is a consequence of altered PI3,5P2 homeostasis under inositol-limiting conditions. This study is the first to demonstrate that inositol depletion caused by starvation of an inositol synthesis mutant or by the inositol-depleting drug VPA leads to perturbation of the V-ATPase.

摘要

肌醇的耗竭对细胞功能有深远影响,并且与用于治疗癫痫和双相情感障碍的药物的治疗效果有关。我们之前已经表明,抗惊厥药物丙戊酸(VPA)通过抑制肌醇-3-磷酸合酶来消耗肌醇,该酶催化肌醇生物合成的第一步和限速步骤。为了阐明肌醇耗竭的细胞后果,我们在酵母缺失文库中筛选了对VPA敏感的突变体,并鉴定出液泡分选和液泡ATP酶(V-ATPase)中的突变体。ino1Δ细胞饥饿导致的肌醇耗竭扰乱了液泡结构,并降低了分离的液泡小泡中的V-ATPase活性和质子泵浦。VPA损害了磷脂酰肌醇3,5-二磷酸(PI3,5P2)的动态变化,并极大地降低了肌醇缺乏的野生型细胞中的V-ATPase质子转运。已知可增加PI3,5P2水平的渗透胁迫,既不能恢复PI3,5P2的稳态,也不能在VPA处理的细胞中诱导液泡碎片化,这表明V-ATPase的扰动是肌醇限制条件下PI3,5P2稳态改变的结果。这项研究首次证明,肌醇合成突变体饥饿或肌醇消耗药物VPA导致的肌醇耗竭会导致V-ATPase的扰动。

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