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Evidence that the slow conformation change controlling NADH release from the enzyme is rate-limiting during the oxidation of propionaldehyde by aldehyde dehydrogenase.

机译:在醛脱氢酶氧化丙醛过程中限制NADH从酶中释放的缓慢构象变化的证据是限速的。

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摘要

The displacement of NADH from the aldehyde dehydrogenase X NADH complex by NAD+ was followed at pH 7.0, and the data were fitted by a non-linear least-squares iterative procedure. At pH 7.0 the decay constants for the dissociation of NADH from aldehyde dehydrogenase X NADH complexes (1.62 +/- 0.09 s-1 and 0.25 +/- 0.004 s-1) were similar to the values previously determined by MacGibbon, Buckley & Blackwell [(1977) Biochem. J. 165, 455-462] at pH 7.6, and apparent differences between these values and those reported by Dickinson [(1985) Biochem. J. 225, 159-165] are resolved. Experiments at low concentrations of propionaldehyde show that isomerization of a binary E X NADH complex is part of the normal catalytic mechanism of the enzyme. Evidence is presented that the active-site concentration of aldehyde dehydrogenase is halved when enzyme is pre-diluted to low concentrations before addition of NAD+ and substrate. The consequences of this for the reported values of kcat. are discussed. A general mechanism for the aldehyde dehydrogenase-catalysed oxidation of propionaldehyde which accounts for the published kinetic data, at concentrations of aldehyde which bind only at the active site, is presented.
机译:在pH 7.0下,跟踪NAD从醛脱氢酶X NADH复合物中取代NADH的情况,并通过非线性最小二乘迭代程序拟合数据。在pH 7.0时,NADH从醛脱氢酶X NADH复合物中解离的衰减常数(1.62 +/- 0.09 s-1和0.25 +/- 0.004 s-1)与先前由MacGibbon,Buckley和Blackwell [ (1977)生物化学。 J. 165,455-462]在pH 7.6时,这些值与Dickinson [(1985)Biochem。 J. 225,159-165]。在低浓度丙醛下进行的实验表明,二元E X NADH配合物的异构化是该酶正常催化机制的一部分。有证据表明,在添加NAD +和底物之前将酶预先稀释至低浓度,醛脱氢酶的活性位点浓度减半。这对于报告的kcat值的后果。讨论。提出了醛脱氢酶催化丙醛氧化的一般机理,该机理解释了在仅在活性位点结合的醛浓度下公布的动力学数据。

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