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Biosynthesis of Branched-Chain Amino Acids in Yeast: Correlation of Biochemical Blocks and Genetic Lesions in Leucine Auxotrophs

机译:酵母中支链氨基酸的生物合成:亮氨酸营养缺陷型的生化成分与遗传损伤的相关性

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The three enzymatic steps in the conversion of α-ketoisovalerate to α-ketoisocaproate were examined in wild-type and in leucine auxotrophic stocks of yeast. Procedures for the reliable assay of each of the enzymatic steps in crude extracts were devised. Crude extracts of the prototrophic haploid stock catalyzed all three enzymatic steps. Examination of a series of leucine auxotrophs permitted a correlation between the three enzymatic steps and the genetic lesions affecting 10 different loci. This examination revealed that a single locus (le-6) affected primarily α-isopropylmalate synthetase, the first step in the pathway. Lesions in six loci (le-1, le-4, le-5, le-7, le-8, and le-10) lead primarily to a deficiency in the activity of the second enzyme in the pathway, α-isopropylmalate isomerase. Stocks with lesions in three loci (le-2, le-3, and le-9) were primarily blocked in the third step of the pathway, catalyzed by β-isopropylmalate dehydrogenase. The results with the mutants provide strong evidence that the pathway for leucine biosynthesis proposed by Strassman and his colleagues is the sole significant pathway in yeast.
机译:在酵母的野生型和亮氨酸营养缺陷型原种中检查了α-酮异戊酸转化为α-酮异己酸的三个酶促步骤。设计了粗提物中每个酶促步骤的可靠测定方法。原养单倍体原液的粗提物催化所有三个酶促步骤。一系列亮氨酸营养缺陷型的检查允许三个酶促步骤和影响10个不同基因座的遗传损伤之间的相关性。这项检查表明,一个基因座( le -6)主要影响α-异丙基苹果酸合成酶,这是该途径的第一步。六个位点( le -1, le -4, le -5, le -7,< em> le -8和 le -10)主要导致该途径中的第二种酶α-异丙基苹果酸异构酶的活性下降。在三个基因座( le -2, le -3和 le -9)中有病变的种群在阻断的第三步中被首先封锁β-异丙基苹果酸脱氢酶催化。突变体的结果提供了有力的证据,证明斯特拉斯曼及其同事提出的亮氨酸生物合成途径是酵母中唯一的重要途径。

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