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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >cAMP-induced modulation of the growth yield of Saccharomyces cerevisiae during respiratory and respiro-fermentative metabolism
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cAMP-induced modulation of the growth yield of Saccharomyces cerevisiae during respiratory and respiro-fermentative metabolism

机译:cAMP诱导的酿酒酵母在呼吸和呼吸发酵代谢过程中的生长产量调节

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The aim of this study was to investigate the effects of an overactivation of the cAMP/protein kinase A signaling pathway on the energetic metabolism of growing yeast. By using a cAMP-permeant mutant strain, we show that the rise in interacellular cAMP activates both anabolic and catabolic pathways. Indeed, different physiological patterns were observed with respect to the growth condition: (i) When cells were grown with a limiting amount of lactate, cAMP addition markedly increased the growth rate, whereas it only slightly increased the mitochondrial and cellular protein content. In parallel, the respiratory rate increased and the growth yield, as assessed by direct microcalorimetry, was not significantly modified by cAMP. (ii) Under conditions where the growth rate was already optimal (high lactate concentration), exogenous cAMP led to a proliferation of well-coupled mitochondria within cells and to an accumulation of cellular and mitochondrial proteins. This phenomenon was associated with a rise in the respiratory activity, thus leading to a drop in the growth yield. (iii) Under conditions of catabolic repression (high glucose concentration), cAMP addition markedly increased the fermentation rate and decreased the growth yield. It is concluded that overactivation of the cAMP/PKA pathway leads to uncoupling between biomass synthesis and catabolism, under conditions where an optimal growth rate is sustained by either a fermentative or a respiratory metabolism.
机译:这项研究的目的是研究cAMP /蛋白激酶A信号通路过度活化对正在生长的酵母的能量代谢的影响。通过使用一个cAMP渗透突变株,我们表明细胞间cAMP的上升激活了同化和分解代谢途径。实际上,就生长条件而言,观察到了不同的生理模式:(i)当细胞以有限量的乳酸生长时,cAMP的添加显着提高了生长速率,而线粒体和细胞蛋白含量仅略微提高了。并行地,通过直接微量量热法评估,呼吸速率增加并且生长产量没有被cAMP显着改变。 (ii)在已经达到最佳生长速度(高乳酸浓度)的条件下,外源性cAMP导致细胞内线粒体偶联良好的增殖以及细胞和线粒体蛋白质的积累。这种现象与呼吸活动增加有关,从而导致生长产量下降。 (iii)在分解代谢抑制(高葡萄糖浓度)的条件下,添加cAMP显着提高了发酵速率并降低了生长产量。结论是,在通过发酵或呼吸代谢维持最佳生长速率的条件下,cAMP / PKA途径的过度激活导致生物质合成与分解代谢之间的解偶联。

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