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酵母中的脂肪酸生物合成

Fatty acid biosynthesis in yeast.

作者信息

Schweizer E, Werkmeister K, Jain M K

出版信息

Mol Cell Biochem. 1978 Nov 1;21(2):95-107. doi: 10.1007/BF00240280.

Abstract

Fatty acid synthetase and acetyl CoA carboxylase mutants have been used to study several aspects of fatty acid biosynthesis in yeast: the contribution of the various enzymes of fatty acid biosynthesis and modification to the overall cellular fatty acid composition, the mechanism of fatty acyl chain elongation in yeast, the molecular structure and the reaction mechanism of the fatty acid synthetase complex and the genetic control of the biosynthesis of this multi-enzyme system. Genetic and biochemical evidence suggest an alpha6beta6 molecular structure of this complex, where alpha and beta are multifunctional proteins comprising, respectively, 3 and 5 of the various fatty acid synthetase component functions. The two subunits alpha and beta are synthesized on two different, unliked genes, fas 2 and fas 1. The biosynthesis of both is coordinated. The various component enzyme activities reside in distinct domains on the multifunctional chains. While most domains appear to be functionally independent, the three acyl transferases exhibit extensive mutual interactions. It is suggested that the biosynthesis of a multifunctional protein is favoured on the grounds of kinetics and regulation as compared with the formation of a complex of the corresponding individual enzymes.

摘要

脂肪酸合成酶和乙酰辅酶A羧化酶突变体已被用于研究酵母中脂肪酸生物合成的几个方面:脂肪酸生物合成和修饰的各种酶对整体细胞脂肪酸组成的贡献、酵母中脂肪酰链延长的机制、脂肪酸合成酶复合物的分子结构和反应机制以及这种多酶系统生物合成的遗传控制。遗传和生化证据表明该复合物具有α6β6分子结构,其中α和β是多功能蛋白,分别包含各种脂肪酸合成酶组分功能中的3种和5种。α和β这两个亚基在两个不同的、不相关的基因fas 2和fas 1上合成。两者的生物合成是协调的。各种组分酶活性存在于多功能链上不同的结构域中。虽然大多数结构域似乎在功能上是独立的,但三种酰基转移酶表现出广泛的相互作用。有人提出,与相应单个酶的复合物形成相比,基于动力学和调节的原因,多功能蛋白的生物合成更受青睐。

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