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pH homeostasis links the nutrient sensing PKA/TORC1/Sch9 ménage-à-trois to stress tolerance and longevity

机译:pH稳态将养分感应PKA / TORC1 / Sch9ménage-trois与压力耐受力和寿命联系起来

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摘要

The plasma membrane H+-ATPase Pma1 and the vacuolar V-ATPase act in close harmony to tightly control pH homeostasis, which is essential for a vast number of physiological processes. As these main two regulators of pH are responsive to the nutritional status of the cell, it seems evident that pH homeostasis acts in conjunction with nutrient-induced signalling pathways. Indeed, both PKA and the TORC1-Sch9 axis influence the proton pumping activity of the V-ATPase and possibly also of Pma1. In addition, it recently became clear that the proton acts as a second messenger to signal glucose availability via the V-ATPase to PKA and TORC1-Sch9. Given the prominent role of nutrient signalling in longevity, it is not surprising that pH homeostasis has been linked to ageing and longevity as well. A first indication is provided by acetic acid, whose uptake by the cell induces toxicity and affects longevity. Secondly, vacuolar acidity has been linked to autophagic processes, including mitophagy. In agreement with this, a decline in vacuolar acidity was shown to induce mitochondrial dysfunction and shorten lifespan. In addition, the asymmetric inheritance of Pma1 has been associated with replicative ageing and this again links to repercussions on vacuolar pH. Taken together, accumulating evidence indicates that pH homeostasis plays a prominent role in the determination of ageing and longevity, thereby providing new perspectives and avenues to explore the underlying molecular mechanisms.
机译:质膜H + -ATPase Pma1和液泡V-ATPase紧密协调地作用,以紧密控制pH稳态,这对于许多生理过程都是必不可少的。由于这两个主要的pH调节剂对细胞的营养状况有响应,因此看来pH稳态与营养素诱导的信号通路共同起作用。确实,PKA和TORC1-Sch9轴都影响V-ATPase以及可能还有Pma1的质子泵送活性。另外,最近变得清楚的是,质子充当第二信使,通过V-ATPase向PKA和TORC1-Sch9发出葡萄糖可用性信号。鉴于营养信号传导在长寿中的重要作用,因此pH稳态也与衰老和长寿相关联就不足为奇了。醋酸是第一个适应症,醋酸被细胞摄取会诱导毒性并影响寿命。其次,液泡酸度与包括噬菌体在内的自噬过程有关。与此一致的是,液泡酸度的下降显示出可诱导线粒体功能障碍并缩短了寿命。此外,Pma1的不对称遗传与复制性衰老有关,这再次与液泡pH值产生影响。综上所述,越来越多的证据表明,pH稳态在决定衰老和寿命方面起着重要作用,从而为探索潜在的分子机制提供了新的视角和途径。

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