Hayek Summer R, Rane Hallie S, Parra Karlett J
Department of Biochemistry and Molecular Biology, University of New Mexico Health Sciences Center, Albuquerque, NM, United States.
Front Physiol. 2019 Feb 15;10:127. doi: 10.3389/fphys.2019.00127. eCollection 2019.
The ability of cells to adapt to fluctuations in glucose availability is crucial for their survival and involves the vacuolar proton-translocating ATPase (V-ATPase), a proton pump found in all eukaryotes. V-ATPase hydrolyzes ATP via its V domain and uses the energy released to transport protons across membranes via its V domain. This activity is critical for pH homeostasis and generation of a membrane potential that drives cellular metabolism. A number of stimuli have been reported to alter V-ATPase assembly in yeast and higher eukaryotes. Glucose flux is one of the strongest and best-characterized regulators of V-ATPase; this review highlights current models explaining how glycolysis and V-ATPase are coordinated in both the model fungus and in mammalian systems. Glucose-dependent assembly and trafficking of V-ATPase, V-ATPase-dependent modulations in glycolysis, and the recent discovery that glucose signaling through V-ATPase acts as a molecular switch to dictate anabolic versus catabolic metabolism are discussed. Notably, metabolic plasticity and altered glycolytic flux are critical drivers of numerous human pathologies, and the expression and activity of V-ATPase is often altered in disease states or can be pharmacologically manipulated as treatment. This overview will specifically discuss connections between V-ATPase and glycolysis in cancer.
细胞适应葡萄糖可用性波动的能力对其生存至关重要,这涉及液泡质子转运ATP酶(V-ATP酶),一种在所有真核生物中都存在的质子泵。V-ATP酶通过其V结构域水解ATP,并利用释放的能量通过其V结构域跨膜转运质子。这种活性对于pH稳态和驱动细胞代谢的膜电位的产生至关重要。据报道,许多刺激会改变酵母和高等真核生物中V-ATP酶的组装。葡萄糖通量是V-ATP酶最强且特征最明确的调节因子之一;本综述重点介绍了解释糖酵解和V-ATP酶在模式真菌和哺乳动物系统中如何协调的当前模型。讨论了V-ATP酶的葡萄糖依赖性组装和运输、糖酵解中V-ATP酶依赖性调节,以及最近发现的通过V-ATP酶的葡萄糖信号传导作为决定合成代谢与分解代谢的分子开关。值得注意的是,代谢可塑性和糖酵解通量改变是许多人类疾病的关键驱动因素,V-ATP酶的表达和活性在疾病状态下经常改变,或者可以作为治疗手段进行药理调控。本概述将具体讨论癌症中V-ATP酶与糖酵解之间的联系。