Holt A, Degenhardt O S, Berry P D, Kapty J S, Mithani S, Smith D J, Di Paolo M L
Department of Pharmacology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Canada.
J Neural Transm (Vienna). 2007;114(6):733-41. doi: 10.1007/s00702-007-0680-1. Epub 2007 Mar 31.
We and others have observed that substrates for copper-containing amine oxidases cause substrate inhibition at high concentrations. Through use of a novel "pseudoquantitative" rapid equilibrium approach, kinetic analyses with human and bovine enzymes indicate that these effects are consistent with substrates binding to oxidised and reduced enzyme forms. Small cations compete with binding of substrates to oxidised and reduced enzyme, influencing both substrate turnover and substrate inhibition patterns. Cations reduce affinity of the resting bovine enzyme for spermidine, but not benzylamine, indicating that the predominant effect of cations on substrate oxidation results from binding to an anionic site outside the active site. However, binding of cations to the active site of the reduced form of both enzymes attenuates substrate inhibition with both spermidine and benzylamine. Our observations have significant practical implications for researchers assaying kinetic behaviour of these enzymes, and particularly those developing novel inhibitors of human copper-containing amine oxidases.
我们以及其他研究人员观察到,含铜胺氧化酶的底物在高浓度时会导致底物抑制。通过使用一种新型的“伪定量”快速平衡方法,对人和牛的酶进行动力学分析表明,这些效应与底物结合氧化型和还原型酶形式一致。小阳离子与底物竞争氧化型和还原型酶的结合,影响底物周转和底物抑制模式。阳离子降低了静息牛酶对亚精胺的亲和力,但对苄胺没有影响,这表明阳离子对底物氧化的主要作用是通过结合到活性位点之外的阴离子位点。然而,阳离子与两种酶还原形式的活性位点结合会减弱亚精胺和苄胺的底物抑制作用。我们的观察结果对研究这些酶动力学行为的研究人员具有重要的实际意义,尤其是那些开发新型人含铜胺氧化酶抑制剂的研究人员。