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来自布氏毛霉的乳酸脱氢酶催化丙酮酸还原的动力学机制。

The kinetic mechanism of pyruvate reduction by lactate dehydrogenase from Phycomyces blakesleeanus.

作者信息

Busto F, de Arriaga D, Soler J

出版信息

Int J Biochem. 1984;16(2):171-6. doi: 10.1016/0020-711x(84)90068-5.

Abstract

The kinetics of pyruvate reduction by lactate dehydrogenase from Phycomyces blakesleeanus NRRL 1555 (-) have been determined at pH 6.0. Initial rate studies performed in the pyruvate reduction direction suggest that a sequential mechanism is operating. Product inhibition studies with NAD+ and L(+)-lactate are consistent with an ordered sequential mechanism if we considered that NAD+ mimics the NADH that binds cooperatively on the enzyme and also the existence of dead-end complex responsible for substrate inhibition by pyruvate at this pH value.

摘要

已在pH 6.0条件下测定了来自布氏毛霉NRRL 1555 (-)的乳酸脱氢酶催化丙酮酸还原的动力学。在丙酮酸还原方向上进行的初始速率研究表明,一种有序机制在起作用。如果我们认为NAD+模拟了在酶上协同结合的NADH,并且存在导致丙酮酸在该pH值下产生底物抑制的死端复合物,那么用NAD+和L(+)-乳酸进行的产物抑制研究与有序顺序机制是一致的。

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