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粟酒裂殖酵母中支链氨基酸的生物合成:乙酰羟酸合成酶的特性

Biosynthesis of branched-chain amino acids in Schizosaccharomyces pombe: properties of acetohydroxy acid synthetase.

作者信息

McDonald R A, Satyanarayana T, Kaplan J G

出版信息

J Bacteriol. 1973 Apr;114(1):332-40. doi: 10.1128/jb.114.1.332-340.1973.

Abstract

The regulatory properties of acetohydroxy acid synthetase (AHAS), the first enzyme in the biosynthetic pathway to valine and the second in the isoleucine pathway, were investigated in the fission yeast Schizosaccharomyces pombe. The enzyme was partially purified from crude extracts by protamine sulfate treatment, ammonium sulfate fractionation, and gel filtration through Sephadex G-25. AHAS from S. pombe is unique in that its activity shows a single peak around pH 6.5; high sensitivity to feedback inhibition by valine at this pH (K(i) = 0.1 mM) indicates that the enzyme is involved in valine biosynthesis. Pyruvate saturation kinetics of AHAS extracted from cells grown on glycerol as sole carbon and energy source were normal and hyperbolic. In contrast, the enzyme from glucose-grown cells exhibited sigmoidal saturation kinetics, an effect which disappeared when the synthetase from such cells was partially purified. This phenomenon was shown to be due to competition for pyruvate between AHAS and pyruvate decarboxylase; the latter enzyme is present in large amounts in cells fermenting glucose. Valine inhibition is noncompetitive in nature, and this effector exhibits homotropic cooperative effects; isoleucine is a less-potent inhibitor of AHAS activity. Mercurial treatment reversibly desensitized the enzyme to valine inhibition. On the basis of these data, the S. pombe AHAS appears to be an allosteric regulatory enzyme with the properties of a negative V system.

摘要

在裂殖酵母粟酒裂殖酵母中研究了乙酰羟酸合成酶(AHAS)的调节特性,该酶是缬氨酸生物合成途径中的第一种酶,也是异亮氨酸途径中的第二种酶。通过硫酸鱼精蛋白处理、硫酸铵分级分离以及通过葡聚糖凝胶G-25进行凝胶过滤,从粗提物中部分纯化了该酶。粟酒裂殖酵母的AHAS具有独特之处,即其活性在pH 6.5左右呈现单峰;在此pH值下对缬氨酸的反馈抑制高度敏感(K(i)=0.1 mM),这表明该酶参与缬氨酸的生物合成。从以甘油作为唯一碳源和能源生长的细胞中提取的AHAS的丙酮酸饱和动力学是正常的双曲线型。相比之下,从以葡萄糖生长的细胞中提取的该酶表现出S形饱和动力学,当从这些细胞中部分纯化合成酶时,这种效应消失。已证明这种现象是由于AHAS和丙酮酸脱羧酶之间对丙酮酸的竞争所致;后一种酶在发酵葡萄糖的细胞中大量存在。缬氨酸抑制本质上是非竞争性的,并且这种效应物表现出同向协同效应;异亮氨酸是AHAS活性的较弱抑制剂。汞处理使该酶对缬氨酸抑制产生可逆的脱敏作用。基于这些数据,粟酒裂殖酵母AHAS似乎是一种具有负V系统特性的别构调节酶。

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