Fujioka M, Takata Y, Ogawa H, Okamoto M
J Biol Chem. 1980 Feb 10;255(3):937-42.
Saccharopine dehydrogenase (epsilon-N-(L-glutaryl-2)-L-lysine: NAD oxidoreductase (L-lysine-forming) EC 1.5.1.7) from baker's yeast is inactivated by diethyl pyrocarbonate. Spectrophotometric studies show that the inactivation results from the modification of 3 histidyl residues/molecule of enzyme. The sulfhydryl content of the enzyme is unchanged by modification. The reversibility of inactivation by hydroxylamine and the pH dependence of inactivation are also consistent with the inactivation being due to modification of the histidyl residue. Although the coenzyme and substrates are without effect when added singly, the inactivation is completely protected by alpha-ketoglutarate in the presence of a saturating concentration of NADH. Since alpha-ketoglutarate binds only to the enzyme . NADH complex, the results suggest that the inactivation is due to modification of the residue at or near the substrate-binding site. Under the conditions where the inactivation is largely protected by NADH plus alpha-ketoglutarate, 2 histidyl residues appear to be modified suggesting that only 1 residue involved in the catalytic activity. The modification appears to prevent the binding of alpha-ketoglutarate, but not of the coenzyme, to the enzyme. The protein fluorescence of the native and modified enzymes is quenched by NAD+ and NADH. However, the NADH titration curve of the modified enzyme is not affected by alpha-ketoglutarate, in contrast to the native enzyme which shows an increase in the apparent affinity for the coenzyme in the presence of alpha-ketoglutarate.
来自面包酵母的酵母氨酸脱氢酶(ε-N-(L-谷氨酰-2)-L-赖氨酸:NAD氧化还原酶(形成L-赖氨酸),EC 1.5.1.7)被焦碳酸二乙酯灭活。分光光度研究表明,灭活是由于每分子酶中的3个组氨酸残基被修饰所致。酶的巯基含量不受修饰影响。羟胺使灭活可逆以及灭活对pH的依赖性也与灭活是由于组氨酸残基的修饰一致。虽然单独添加辅酶和底物没有作用,但在饱和浓度的NADH存在下,α-酮戊二酸可完全保护酶不被灭活。由于α-酮戊二酸仅与酶·NADH复合物结合,结果表明灭活是由于底物结合位点处或其附近的残基被修饰。在很大程度上被NADH加α-酮戊二酸保护而不被灭活的条件下,似乎有2个组氨酸残基被修饰,这表明只有1个残基参与催化活性。这种修饰似乎阻止了α-酮戊二酸与酶的结合,但不影响辅酶与酶的结合。天然酶和修饰酶的蛋白质荧光都被NAD +和NADH淬灭。然而,与天然酶在α-酮戊二酸存在下对辅酶的表观亲和力增加相反,修饰酶的NADH滴定曲线不受α-酮戊二酸影响。