Canella M, Sodini G
Eur J Biochem. 1975 Nov 1;59(1):119-25. doi: 10.1111/j.1432-1033.1975.tb02432.x.
Horse liver alcohol dehydrogenase was reacted with glyoxal at different pH values ranging from 6.0 to 9.0. At pH 9.0 the enzyme undergoes a rapid activation over the first minutes of reaction, followed by a decline of activity, which reaches 10% of that of the native enzyme. Chemical analysis of the inactivated enzyme after sodium borohydride reduction shows that 11 argi-ine and 11 lysine residues per mole are modified. At pH 7.7 the enzyme activity increases during the first hour of the reaction with glyoxal and then decreases slowly. Chemical analysis shows that 4 arginine and 3 lysine residues per mole are modified in the enzyme at the maximum of activation. At pH 7.0 the enzyme undergoes a 4-fold activation. Chemical analysis shows that in this activated enzyme 3 lysine and no arginine residues per mole have been modified. Steady-state kinetic analysis suggests that the activated enzyme is not subjected to substrate inhibition and that its Michaelis constant for ethanol is three times larger than that of the native enzyme. The possible role of arginine and lysine residues in the catalytic function of liver alcohol dehydrogenase is discussed.
将马肝醇脱氢酶与乙二醛在pH值范围为6.0至9.0的不同条件下进行反应。在pH 9.0时,酶在反应的最初几分钟内迅速激活,随后活性下降,降至天然酶活性的10%。硼氢化钠还原后对失活酶进行化学分析表明,每摩尔有11个精氨酸和11个赖氨酸残基被修饰。在pH 7.7时,酶活性在与乙二醛反应的第一个小时内增加,然后缓慢下降。化学分析表明,在激活最大值时,酶中每摩尔有4个精氨酸和3个赖氨酸残基被修饰。在pH 7.0时,酶经历了4倍的激活。化学分析表明,在这种激活的酶中,每摩尔有3个赖氨酸残基被修饰,没有精氨酸残基被修饰。稳态动力学分析表明,激活的酶不受底物抑制,其对乙醇的米氏常数是天然酶的三倍。讨论了精氨酸和赖氨酸残基在肝醇脱氢酶催化功能中的可能作用。