Eskes Elja, Deprez Marie-Anne, Wilms Tobias, Winderickx Joris
Functional Biology, KU Leuven, Kasteelpark Arenberg 31 box 2433, 3001, Heverlee, Belgium.
Curr Genet. 2018 Feb;64(1):155-161. doi: 10.1007/s00294-017-0743-2. Epub 2017 Aug 30.
Recent research further clarified the molecular mechanisms that link nutrient signaling and pH homeostasis with the regulation of growth and survival of the budding yeast Saccharomyces cerevisiae. The central nutrient signaling kinases PKA, TORC1, and Sch9 are intimately associated to pH homeostasis, presumably allowing them to concert far-reaching phenotypical repercussions of nutritional cues. To exemplify such repercussions, we briefly describe consequences for phosphate uptake and signaling and outline interactions between phosphate homeostasis and the players involved in intra- and extracellular pH control. Inorganic phosphate uptake, its subcellular distribution, and its conversion into polyphosphates are dependent on the proton gradients created over different membranes. Conversely, polyphosphate metabolism appears to contribute in determining the intracellular pH. Additionally, inositol pyrophosphates are emerging as potent determinants of growth potential, in this way providing feedback from phosphate metabolism onto the central nutrient signaling kinases. All these data point towards the importance of phosphate metabolism in the reciprocal regulation of nutrient signaling and pH homeostasis.
最近的研究进一步阐明了将营养信号传导和pH稳态与芽殖酵母酿酒酵母的生长和存活调节联系起来的分子机制。核心营养信号激酶PKA、TORC1和Sch9与pH稳态密切相关,大概使它们能够协调营养信号的深远表型影响。为了举例说明这种影响,我们简要描述了对磷酸盐摄取和信号传导的影响,并概述了磷酸盐稳态与参与细胞内和细胞外pH控制的因素之间的相互作用。无机磷酸盐的摄取、其亚细胞分布以及其转化为多磷酸盐取决于在不同膜上产生的质子梯度。相反,多磷酸盐代谢似乎有助于确定细胞内pH。此外,肌醇焦磷酸正在成为生长潜力的有力决定因素,从而提供从磷酸盐代谢到核心营养信号激酶的反馈。所有这些数据都表明磷酸盐代谢在营养信号传导和pH稳态的相互调节中的重要性。