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首页> 外文期刊>Eukaryotic cell >Identification of In Vivo Enzyme Activities in the Cometabolism of Glucose and Acetate by Saccharomyces cerevisiae by Using 13C-Labeled Substrates
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Identification of In Vivo Enzyme Activities in the Cometabolism of Glucose and Acetate by Saccharomyces cerevisiae by Using 13C-Labeled Substrates

机译:通过使用13 C标签的底物鉴定酿酒酵母在葡萄糖和乙酸的新陈代谢中的体内酶活性。

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A detailed characterization of the central metabolic network of Saccharomyces cerevisiae CEN.PK 113-7D was carried out during cometabolism of different mixtures of glucose and acetate, using aerobic C-limited chemostats in which one of these two substrates was labeled with 13C. To confirm the role of malic enzyme, an isogenic strain with the corresponding gene deleted was grown under the same conditions. The labeling patterns of proteinogenic amino acids were analyzed and used to estimate metabolic fluxes and/or make inferences about the in vivo activities of enzymes of the central carbon metabolism and amino acid biosynthesis. Malic enzyme flux increased linearly with increasing acetate fraction. During growth on a very-high-acetate fraction, the activity of malic enzyme satisfied the biosynthetic needs of pyruvate in the mitochondria, while in the cytosol pyruvate was supplied via pyruvate kinase. In several cases enzyme activities were unexpectedly detected, e.g., the glyoxylate shunt for a very-low-acetate fraction, phosphoenolpyruvate carboxykinase for an acetate fraction of 0.46 C-mol of acetate/C-mol of substrate, and glucose catabolism to CO2 via the tricarboxylic acid cycle for a very-high-acetate fraction. Cytoplasmic alanine aminotransferase activity was detected, and evidence was found that α-isopropylmalate synthase has two active forms in vivo, one mitochondrial and the other a short cytoplasmic form.
机译:使用好氧限碳的化学恒温器(其中有两种底物之一),对酿酒酵母CEN.PK 113-7D的代谢中心代谢网络进行了详细表征。被标记为 13 C。为了证实苹果酸酶的作用,在相同条件下培养了缺失相应基因的同基因菌株。分析了蛋白质氨基酸的标记模式,并用于估计代谢通量和/或推断中央碳代谢和氨基酸生物合成酶的体内活性。苹果酸酶通量随乙酸盐分数的增加而线性增加。在以非常高的乙酸盐级分生长的过程中,苹果酸酶的活性满足了线粒体中丙酮酸的生物合成需求,而在细胞质中,丙酮酸是通过丙酮酸激酶提供的。在某些情况下,意外地检测到酶活性,例如乙醛酸分流器的乙酸盐含量非常低,磷酸烯醇丙酮酸羧化激酶的乙酸盐含量为0.46 C-mol乙酸/ C-mol底物,以及葡萄糖分解代谢为CO 2 获得非常高的乙酸酯级分。检测到细胞质的丙氨酸氨基转移酶活性,并发现证据表明,α-异丙基苹果酸合酶在体内具有两种活性形式,一种是线粒体,另一种是短细胞质。

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