Roston Daniel, Kohen Amnon
Department of Chemistry, University of Iowa, Iowa City, IA, 52242, USA.
J Labelled Comp Radiopharm. 2014 Feb;57(2):75-7. doi: 10.1002/jlcr.3143. Epub 2013 Dec 11.
Isotopically labeled enzymatic substrates and biological metabolites are useful for many mechanistic analyses, particularly the study of kinetic and equilibrium isotope effects, determining the stereospecificity of enzymes, and resolving metabolic pathways. Here, we present the one-pot synthesis, purification, and kinetic analysis of 7R-[(2) H]-phenyl-[(14) C]-benzyl alcohol. The procedure involves a chemoenzymatic synthesis that couples formate dehydrogenase to alcohol dehydrogenase with a catalytic amount of nicotinamide cofactor. The reaction goes to completion overnight, and the measurement of a competitive kinetic isotope effect on the enzymatic oxidation of the purified product identified no (1) H contamination. This measurement is very sensitive to such isotopic contamination and verified the high level of isotopic and enantiomeric purity yielded by the new synthetic procedure.
同位素标记的酶底物和生物代谢物可用于许多机理分析,特别是动力学和平衡同位素效应的研究、确定酶的立体特异性以及解析代谢途径。在此,我们展示了7R-[(2)H]-苯基-[(14)C]-苄醇的一锅法合成、纯化及动力学分析。该过程涉及一种化学酶促合成,即将甲酸脱氢酶与乙醇脱氢酶与催化量的烟酰胺辅因子偶联。反应在一夜之间完成,对纯化产物的酶促氧化进行的竞争性动力学同位素效应测量未发现(1)H污染。该测量对这种同位素污染非常敏感,并验证了新合成方法所产生的高同位素纯度和对映体纯度。