Distinct Short-Term Response of Intracellular Amino Acids in Saccharomyces cerevisiae and Pichia pastoris to Oxidative and Reductive Stress

Burcu Şirin Kaya, E. Nikerel
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Abstract

Despite being frequently encountered, the effect of oxidative or reductive stress on the intracellular metabolism and the response of the intracellular metabolome of yeasts is severely understudied. Non-conventional yeasts are attracting increasing attention due to their large substrate portfolio of non-canonical pathways as well as their production and secretion of proteins. To understand the effects of both stresses on yeast, the conventional model yeast S. cerevisiae and the non-conventional model yeast P. pastoris were perturbed with 5 mM of hydrogen peroxide for oxidative stress and 20 mM of dithiothreitol for reductive stress in well-defined chemostat cultures at a steady state, and fermentation profiles, intracellular amino acid levels, and intracellular glutathione levels were measured. Although stable profiles of extracellular metabolites were observed, significant changes were measured in intracellular amino acid levels within the first five minutes. Collectively, the amino acids ranged from 0.5 to 400 µmol/gDW, with the most significant increase upon the induction of oxidative stress being seen in cysteine (up to 90%) for S. cerevisiae and in aspartate (up to 80%) for P. pastoris. Upon the induction of reductive stress, asparagine nearly halves in S. cerevisiae, while tryptophan decreases by 60% in P. pastoris. By inspecting the time traces of each amino acid, possible mechanisms of pathway kinetics are speculated. This work furthers our understanding of the response of metabolism to oxidative stress in two model yeasts.
酿酒酵母和酿醋酵母细胞内氨基酸对氧化和还原压力的不同短期反应
氧化或还原压力对酵母菌细胞内代谢的影响以及细胞内代谢组的反应尽管经常遇到,但研究却严重不足。非常规酵母因其非典型途径的大量底物组合以及蛋白质的生产和分泌而日益受到关注。为了了解这两种胁迫对酵母的影响,在稳定状态下,用 5 mM 过氧化氢(氧化胁迫)和 20 mM 二硫苏糖醇(还原胁迫)对常规模式酵母 S. cerevisiae 和非常规模式酵母 P. pastoris 进行了扰动,并测量了发酵曲线、细胞内氨基酸水平和细胞内谷胱甘肽水平。虽然观察到了稳定的细胞外代谢物曲线,但在最初的五分钟内,细胞内氨基酸水平发生了显著变化。总的来说,氨基酸含量范围在 0.5 至 400 µmol/gDW 之间,在诱导氧化应激时,半胱氨酸的增加最为显著(S. cerevisiae 达 90%),天门冬氨酸的增加最为显著(P. pastoris 达 80%)。在诱导还原应激时,S. cerevisiae 的天冬酰胺几乎减少一半,而 P. pastoris 的色氨酸则减少 60%。通过观察每种氨基酸的时间轨迹,我们推测了通路动力学的可能机制。这项工作进一步加深了我们对两种模式酵母的新陈代谢对氧化应激反应的理解。
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