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cGMP 在酿酒酵母中的代谢作用:鼠源磷酸二酯酶-5 活性通过改变 cAMP/cGMP 平衡来影响酵母细胞增殖。

Metabolic role of cGMP in S. cerevisiae: the murine phosphodiesterase-5 activity affects yeast cell proliferation by altering the cAMP/cGMP equilibrium.

机构信息

Department of Biology and Biotechnology "C. Darwin", Sapienza University of Rome, Piazzale A. Moro, Rome 5, 00185, Italy.

出版信息

FEMS Yeast Res. 2019 May 1;19(3). doi: 10.1093/femsyr/foz016.

DOI:10.1093/femsyr/foz016
PMID:30772891
Abstract

In higher eukaryotes, cAMP and cGMP are signal molecules of major transduction pathways while phosphodiesterases (PDE) are a superfamily of cAMP/cGMP hydrolysing enzymes, modulatory components of these routes. Saccharomyces cerevisiae harbours two genes for PDE: Pde2 is a high affinity cAMP-hydrolysing enzyme, while Pde1 can hydrolyse both cAMP and cGMP. To gain insight into the metabolic role of cGMP in the physiology of yeast, the murine Pde5a1 gene encoding a specific cGMP-hydrolysing enzyme, was expressed in S. cerevisiae pdeΔ strains. pde1Δ and pde2Δ PDE5A1-transformed strain displayed opposite growth-curve profiles; while PDE5A1 recovered the growth delay of pde1Δ, PDE5A1 reversed the growth profile of pde2Δ to that of the untransformed pde1Δ. Growth test analysis and the use of Adh2 and Adh1 as respiro-fermentative glycolytic flux markers confirmed that PDE5A1 altered the metabolism by acting on Pde1-Pde2/cyclic nucleotides content and also on the TORC1 nutrient-sensing cascade. cGMP is required during the log-phase of cell proliferation to adjust/modulate cAMP levels inside well-defined ranges. A model is presented proposing the role of cGMP in the cAMP/PKA pathway. The expression of the PDE5A1 cassette in other mutant strains might constitute the starting tool to define cGMP metabolic role in yeast nutrient signaling.

摘要

在高等真核生物中,cAMP 和 cGMP 是主要转导途径的信号分子,而磷酸二酯酶(PDE)是 cAMP/cGMP 水解酶的超家族,是这些途径的调节组成部分。酿酒酵母含有两个 PDE 基因:Pde2 是一种高亲和力的 cAMP 水解酶,而 Pde1 可以水解 cAMP 和 cGMP。为了深入了解 cGMP 在酵母生理学中的代谢作用,我们在 S. cerevisiae pdeΔ 菌株中表达了编码特定 cGMP 水解酶的鼠源性 PDE5A1 基因。pde1Δ 和 pde2Δ PDE5A1 转化菌株显示出相反的生长曲线谱;而 PDE5A1 恢复了 pde1Δ 的生长延迟,PDE5A1 使 pde2Δ 的生长曲线恢复为未转化的 pde1Δ。生长试验分析和使用 Adh2 和 Adh1 作为呼吸发酵糖酵解通量标记物证实,PDE5A1 通过作用于 Pde1-Pde2/环核苷酸含量以及 TORC1 营养感应级联来改变代谢。cGMP 在细胞增殖的对数期是必需的,以将 cAMP 水平调节/维持在特定范围内。提出了一个模型,提出了 cGMP 在 cAMP/PKA 途径中的作用。在其他突变菌株中表达 PDE5A1 盒可能构成定义酵母营养信号中 cGMP 代谢作用的起始工具。

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