Vik S B, Hatefi Y
Biochem Int. 1984 Nov;9(5):547-55.
The NADH:ubiquinone, but not the NADH:ferricyanide, reductase activity of mitochondrial complex I (NADH:ubiquinone oxidoreductase) is inhibited by incubation of the enzyme at pH 6.0 and 0 degree C with ethoxyformic anhydride (EFA), and the inhibition is partially reversed by subsequent incubation of EFA-treated complex I with hydroxylamine. These results and spectral changes of EFA-treated complex I in the u.v. region are consistent with modification of essential histidyl or tyrosyl residues between the primary NADH dehydrogenase and the site of ubiquinone reduction. Treatment of complex I with EFA in the presence of high concentrations of Seconal or Demerol did not protect against EFA inactivation, suggesting that the site of EFA modification may not be the same as the inhibiton sites of Seconal and Demerol. However, the presence of NADH during incubation of complex I with EFA greatly enhanced the inhibition rate, indicating that the reduced conformation of complex I is more susceptible to attack by EFA.
将线粒体复合物I(NADH:泛醌氧化还原酶)在pH 6.0和0℃下与乙氧基甲酸酐(EFA)一起孵育,会抑制其NADH:泛醌还原酶活性,但不抑制NADH:铁氰化物还原酶活性,并且通过随后将经EFA处理的复合物I与羟胺一起孵育,抑制作用会部分逆转。这些结果以及经EFA处理的复合物I在紫外区域的光谱变化与初级NADH脱氢酶和泛醌还原位点之间的必需组氨酸或酪氨酸残基的修饰一致。在高浓度司可巴比妥或度冷丁存在下用EFA处理复合物I并不能防止其被EFA灭活,这表明EFA修饰的位点可能与司可巴比妥和度冷丁的抑制位点不同。然而,在复合物I与EFA孵育期间存在NADH会大大提高抑制率,表明复合物I的还原构象更容易受到EFA的攻击。