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支链酮酸脱氢酶的动力学特性

Kinetic characterization of branched chain ketoacid dehydrogenase.

作者信息

Boyer B, Odessey R

机构信息

Louisiana State University Medical Center, Department of Physiology, New Orleans 70112-1393.

出版信息

Arch Biochem Biophys. 1991 Feb 15;285(1):1-7. doi: 10.1016/0003-9861(91)90321-9.

Abstract

Initial velocity and product inhibition experiments were performed to characterize the kinetic mechanism of branched chain ketoacid dehydrogenase (the branched chain complex) activity. The results were directly compared to predicted patterns for a three-site ping-pong mechanism. Product inhibition experiments confirmed that NADH is competitive versus NAD+ and isovaleryl CoA is competitive versus CoA. Furthermore, both NADH and isovaleryl CoA were uncompetitive versus ketoisovaleric acid. These results are consistent with a ping-pong mechanism and are similar to pyruvate dehydrogenase and alpha-ketoglutarate dehydrogenase. However, inhibition patterns for isovaleryl CoA versus NAD+ and NADH versus CoA are not consistent with a ping-pong mechanism. These patterns may result from a steric interaction between the flavoprotein and transacetylase subunits of the complex. To determine the kinetic mechanism of the substrates and feedback inhibitors (NADH and isovaleryl CoA) of the branched chain complex, it was necessary to define the interaction of the inhibitors at nonsaturating fixed substrate (CoA and NAD+) concentrations. While the competitive inhibition patterns were maintained, slope replots for NADH versus NAD+ at nonsaturating CoA concentrations were parabolic. This unexpected finding resembles a linear mixed type of inhibition where the inhibition is a combination of pure competitive and noncompetitive inhibition.

摘要

进行了初始速度和产物抑制实验,以表征支链酮酸脱氢酶(支链复合物)活性的动力学机制。将结果直接与三点乒乓机制的预测模式进行比较。产物抑制实验证实,NADH对NAD+具有竞争性,异戊酰辅酶A对辅酶A具有竞争性。此外,NADH和异戊酰辅酶A对酮异戊酸均为非竞争性。这些结果与乒乓机制一致,且与丙酮酸脱氢酶和α-酮戊二酸脱氢酶相似。然而,异戊酰辅酶A对NAD+以及NADH对辅酶A的抑制模式与乒乓机制不一致。这些模式可能是由于复合物中黄素蛋白和转乙酰酶亚基之间的空间相互作用所致。为了确定支链复合物的底物和反馈抑制剂(NADH和异戊酰辅酶A)的动力学机制,有必要在非饱和固定底物(辅酶A和NAD+)浓度下定义抑制剂之间的相互作用。虽然保持了竞争性抑制模式,但在非饱和辅酶A浓度下,NADH对NAD+的斜率重绘图呈抛物线形。这一意外发现类似于线性混合型抑制,即抑制作用是纯竞争性抑制和非竞争性抑制的组合。

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