Tormos José R, Suarez Marina B, Fitzpatrick Paul F
Department of Chemistry and Biochemistry, St. Mary's University, San Antonio, TX 78228, United States.
Department of Geological Sciences, University of Texas-San Antonio, San Antonio, TX 78249, United States.
Arch Biochem Biophys. 2016 Dec 15;612:115-119. doi: 10.1016/j.abb.2016.10.018. Epub 2016 Nov 1.
A large number of flavoproteins catalyze the oxidation of amines. Because of the importance of these enzymes in metabolism, their mechanisms have previously been studied using deuterium, nitrogen, and solvent isotope effects. While these results have been valuable for computational studies to distinguish among proposed mechanisms, a measure of the change at the reacting carbon has been lacking. We describe here the measurement of a C kinetic isotope effect for a representative amine oxidase, polyamine oxidase. The isotope effect was determined by analysis of the isotopic composition of the unlabeled substrate, N, N'-dibenzyl-1,4-diaminopropane, to obtain a pH-independent value of 1.025. The availability of a C isotope effect for flavoprotein-catalyzed amine oxidation provides the first measure of the change in bond order at the carbon involved in this carbon-hydrogen bond cleavage and will be of value to understanding the transition state structure for this class of enzymes.
大量的黄素蛋白催化胺的氧化反应。由于这些酶在新陈代谢中的重要性,此前人们利用氘、氮和溶剂同位素效应研究了它们的作用机制。虽然这些结果对于区分所提出的机制的计算研究很有价值,但一直缺乏对反应碳原子变化的衡量方法。我们在此描述了对一种代表性胺氧化酶——多胺氧化酶的碳动力学同位素效应的测量。通过分析未标记底物N,N'-二苄基-1,4-二氨基丙烷的同位素组成来确定同位素效应,从而获得一个与pH无关的值1.025。黄素蛋白催化的胺氧化反应的碳同位素效应的可用性,首次测量了参与这种碳氢键断裂的碳原子处键级的变化,对于理解这类酶的过渡态结构具有重要价值。