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酵母氨酸脱氢酶。底物抑制研究。

Saccharopine dehydrogenase. Substrate inhibition studies.

作者信息

Fujioka M

出版信息

J Biol Chem. 1975 Dec 10;250(23):8986-9.

PMID:172502
Abstract

In the direction of reductive condensation of alpha-ketoglutarate and lysine, saccharopine dehydrogenase (N6-(glutar-2-yl)-L-lysine:NAD oxidoreductase (lysine-forming) is inhibited by high concentrations of alpha-ketoglutarate and lysine, but not by NADH. NAD+ and saccharopine show no substrate inhibition in the reverse direction. Substrate inhibition by alpha-ketoglutarate and lysine is linear uncompetitive versus NADH. However, when the inhibition is examined with alpha-ketoglutarate or lysine as the variable substrate, the double reciprocal plots show a family of curved lines concave up. The curvature is more pronounced with increasing concentrations of the inhibitory substrate, suggesting an interaction of variable substrate with the enzyme form carrying the inhibitory substrate. These inhibition patterns, the lack of interaction of structural analogs of lysine such as ornithine and norleucine with the E-NAD+ complex (Fujioka M., and Nakatani, Y. (1972) Eur. J. Biochem. 25, 301-307), the identity of values of inhibition constants of alpha-ketoglutarate and lysine obtained with either one as the substrate inhibitor, and the substrate inhibition data in the presence of a reaction product, NAD+, are consistent with the mechanism that substrate inhibition results from the formation of a dead-end E-NAD+-alpha-ketoglutarate complex followed by the addition of lysine to this abortive complex.

摘要

在α-酮戊二酸和赖氨酸还原缩合的方向上,saccharopine脱氢酶(N6-(戊-2-基)-L-赖氨酸:NAD氧化还原酶(形成赖氨酸))受到高浓度α-酮戊二酸和赖氨酸的抑制,但不受NADH的抑制。NAD+和saccharopine在反向反应中未表现出底物抑制。α-酮戊二酸和赖氨酸的底物抑制对NADH呈线性非竞争性。然而,当以α-酮戊二酸或赖氨酸作为可变底物检测抑制作用时,双倒数图显示出一组向上凹的曲线。随着抑制性底物浓度的增加,曲率更加明显,这表明可变底物与携带抑制性底物的酶形式之间存在相互作用。这些抑制模式、赖氨酸的结构类似物如鸟氨酸和正亮氨酸与E-NAD+复合物之间缺乏相互作用(藤冈M.和中谷Y.(1972年)欧洲生物化学杂志25卷,301 - 307页)、以α-酮戊二酸或赖氨酸作为底物抑制剂时获得的α-酮戊二酸和赖氨酸抑制常数的值相同,以及在反应产物NAD+存在下的底物抑制数据,都与底物抑制是由形成无活性的E-NAD+-α-酮戊二酸复合物,随后赖氨酸添加到这个流产复合物中的机制一致。

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