首页> 外文期刊>Journal of bacteriology >Identification and Characterization ofMAE1, the Saccharomyces cerevisiae Structural Gene Encoding Mitochondrial Malic Enzyme
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Identification and Characterization ofMAE1, the Saccharomyces cerevisiae Structural Gene Encoding Mitochondrial Malic Enzyme

机译:酿酒酵母结构基因编码线粒体苹果酸酶MAE1的鉴定与表征。

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Pyruvate, a precursor for several amino acids, can be synthesized from phosphoenolpyruvate by pyruvate kinase. Nevertheless, pyk1 pyk2 mutants of Saccharomyces cerevisiae devoid of pyruvate kinase activity grew normally on ethanol in defined media, indicating the presence of an alternative route for pyruvate synthesis. A candidate for this role is malic enzyme, which catalyzes the oxidative decarboxylation of malate to pyruvate. Disruption of open reading frame YKL029c, which is homologous to malic enzyme genes from other organisms, abolished malic enzyme activity in extracts of glucose-grown cells. Conversely, overexpression ofYKL029c/MAE1 from the MET25 promoter resulted in an up to 33-fold increase of malic enzyme activity. Growth studies with mutants demonstrated that presence of either Pyk1p or Mae1p is required for growth on ethanol. Mutants lacking both enzymes could be rescued by addition of alanine or pyruvate to ethanol cultures. Disruption of MAE1 alone did not result in a clear phenotype. Regulation of MAE1 was studied by determining enzyme activities and MAE1 mRNA levels in wild-type cultures and by measuring β-galactosidase activities in a strain carrying a MAE1::lacZ fusion. Both in shake flask cultures and in carbon-limited chemostat cultures,MAE1 was constitutively expressed. A three- to fourfold induction was observed during anaerobic growth on glucose. Subcellular fractionation experiments indicated that malic enzyme in S. cerevisiae is a mitochondrial enzyme. Its regulation and localization suggest a role in the provision of intramitochondrial NADPH or pyruvate under anaerobic growth conditions. However, since null mutants could still grow anaerobically, this function is apparently not essential.
机译:丙酮酸是几种氨基酸的前体,可以通过丙酮酸激酶由磷酸烯醇丙酮酸合成。然而,没有丙酮酸激酶活性的啤酒酵母的 pyk1 pyk2 突变体在限定的培养基中在乙醇中正常生长,表明存在丙酮酸合成的另一种途径。这种作用的候选者是苹果酸酶,其催化苹果酸氧化脱羧成丙酮酸。与其他生物的苹果酸酶基因同源的开放阅读框 YKL029c 的破坏,消除了葡萄糖生长细胞提取物中苹果酸酶的活性。相反,来自 MET25 启动子的 YKL029c / MAE1 的过表达导致苹果酶活性增加多达33倍。突变体的生长研究表明,在乙醇上生长需要Pyk1p或Mae1p的存在。缺少这两种酶的突变体可以通过向乙醇培养物中添加丙氨酸或丙酮酸来拯救。单独破坏 MAE1 并不能产生明确的表型。通过测定野生型培养物中的酶活性和 MAE1 mRNA水平,并通过测量携带 MAE1的菌株中的β-半乳糖苷酶活性,研究了 MAE1 的调控。 em> :: lacZ 融合。在摇瓶培养和碳限制的恒化器培养中, MAE1 均组成型表达。在葡萄糖厌氧生长过程中观察到三到四倍的诱导。亚细胞分离实验表明,苹果酸酶在 S中。啤酒酵母是一种线粒体酶。它的调节和定位表明在厌氧生长条件下提供线粒体内NADPH或丙酮酸的作用。但是,由于无效突变体仍可以厌氧生长,因此该功能显然不是必需的。

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