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缺乏柠檬酸合酶的酿酒酵母菌株中的代谢变化。

Metabolic changes in Saccharomyces cerevisiae strains lacking citrate synthases.

作者信息

Kispal G, Rosenkrantz M, Guarente L, Srere P A

机构信息

Pre-Clinical Science Unit, Veterans Administration Medical Center, Dallas, Texas 75216.

出版信息

J Biol Chem. 1988 Aug 15;263(23):11145-9.

PMID:3136154
Abstract

The yeast, Saccharomyces cerevisiae, contains two citrate synthase isoenzymes, mitochondrial (CS1) and cytosolic (CS2). In this study, we have examined the metabolic consequences of the absence of CS1, CS2, and both isoenzymes in the respective mutant strains CS1-, CS2-, and CS1-CS2-. No significant differences were found in the growth rates of the parental, CS1-, or CS2- strains when grown in the single carbon sources galactose, glycerol, lactate, pyruvate, or glutamate. However, in nonfermentable carbon sources, the lag period in growth of CS1- was approximately 4 times that of the parental strain and the CS2- mutant. This difference was found even in glutamate. The CS1- mutant failed to grow on acetate in either complete or minimal liquid medium. Total cellular citrate concentration in the CS1- compared to the parental strain was higher when the cells were grown in lactate or pyruvate. On these same substrates, the malate concentration was 2-fold higher in the CS1-mutant when compared to the parental or CS2- strains. The production of 14CO2 by CS1- from [1-14C]acetate was 36% and that from [2-14C]acetate was 9.2% of the amount from the parental or CS2- strains. The 14CO2 production from [1-14C]glutamate was 28% and 20% in CS1- and CS1-CS2-, respectively, compared to the parental strain. Since these results are not easily explained solely by the absence of mitochondrial citrate synthase enzyme, we also determined the activity of some other enzymes of the citric acid cycle and electron transport chain. We found decreased activity of pyruvate dehydrogenase complex, alpha-ketoglutarate dehydrogenase complex, and aconitase, while the rest of the citric acid cycle enzymes and oxidative enzymes did not change significantly. The same changes in enzyme activities were found in two different yeast strains carrying the same citrate synthase mutations.

摘要

酵母酿酒酵母含有两种柠檬酸合酶同工酶,即线粒体(CS1)和胞质(CS2)。在本研究中,我们检测了相应突变株CS1 -、CS2 -和CS1 - CS2 -中缺失CS1、CS2以及两种同工酶后的代谢后果。当在半乳糖、甘油、乳酸、丙酮酸或谷氨酸等单一碳源中生长时,亲本菌株、CS1 -菌株或CS2 -菌株的生长速率未发现显著差异。然而,在非发酵碳源中,CS1 -菌株生长的延迟期约为亲本菌株和CS2 -突变体的4倍。即使在谷氨酸中也发现了这种差异。CS1 -突变体在完全或基本液体培养基中均无法在乙酸盐上生长。当细胞在乳酸或丙酮酸中生长时,与亲本菌株相比,CS1 -菌株中细胞总柠檬酸浓度更高。在相同的这些底物上,与亲本或CS2 -菌株相比,CS1 -突变体中的苹果酸浓度高出2倍。CS1 -菌株从[1 - 14C]乙酸盐产生的14CO2是亲本或CS2 -菌株产生量的36%,从[2 - 14C]乙酸盐产生的14CO2是9.2%。与亲本菌株相比,CS1 -和CS1 - CS2 -中从[1 - 14C]谷氨酸产生的14CO2分别为28%和20%。由于这些结果仅靠线粒体柠檬酸合酶的缺失难以解释,我们还测定了柠檬酸循环和电子传递链中其他一些酶的活性。我们发现丙酮酸脱氢酶复合体、α -酮戊二酸脱氢酶复合体和乌头酸酶的活性降低,而柠檬酸循环的其他酶和氧化酶没有显著变化。在携带相同柠檬酸合酶突变的两种不同酵母菌株中也发现了相同的酶活性变化。

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