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Job Sharing in the Endomembrane System: Vacuolar Acidification Requires the Combined Activity of V-ATPase and V-PPase

机译:膜系统中的工作共享:液泡酸化需要V-ATPase和V-PPase的联合活性

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摘要

The presence of a large central vacuole is one of the hallmarks of a prototypical plant cell, and the multiple functions of this compartment require massive fluxes of molecules across its limiting membrane, the tonoplast. Transport is assumed to be energized by the membrane potential and the proton gradient established by the combined activity of two proton pumps, the vacuolar H+-pyrophosphatase (V-PPase) and the vacuolar H+-ATPase (V-ATPase). Exactly how labor is divided between these two enzymes has remained elusive. Here, we provide evidence using gain-and loss-of-function approaches that lack of the V-ATPase cannot be compensated for by increased V-PPase activity. Moreover, we show that increased V-ATPase activity during cold acclimation requires the presence of the V-PPase. Most importantly, we demonstrate that a mutant lacking both of these proton pumps is conditionally viable and retains significant vacuolar acidification, pointing to a so far undetected contribution of the trans-Golgi network/early endosome-localized V-ATPase to vacuolar pH.
机译:大型中央液泡的存在是原型植物细胞的标志之一,该隔室的多种功能需要大量分子流过其限制膜(液泡膜)。假定通过膜电位和由两个液泡H +-焦磷酸酶(V-PPase)和液泡H + -ATPase(V-ATPase)的联合质子泵建立的质子梯度来激发转运。究竟如何在这两种酶之间分配劳动力仍然难以捉摸。在这里,我们提供了使用功能获得和丧失的方法的证据,即无法通过增加V-PPase活性来弥补缺乏V-ATPase的情况。此外,我们表明冷驯化过程中增加的V-ATPase活性需要V-PPase的存在。最重要的是,我们证明了缺少这两个质子泵的突变体在条件上是可行的,并且保留了明显的液泡酸化作用,这表明迄今为止尚未发现反式高尔基体/早期内体定位的V-ATPase对液泡pH的贡献。

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