Goodwin M G, Anthony C
Department of Biochemistry, University of Southampton, U.K.
Biochem J. 1996 Sep 1;318 ( Pt 2)(Pt 2):673-9. doi: 10.1042/bj3180673.
The quinoprotein methanol dehydrogenase (MDH) contains a Ca2+ ion at the active site. Ca(2-)-free enzyme (from a processing mutant) was used to obtain enzyme containing Sr2+ or Ba2+, the Ba(2+)-MDH being the first enzyme to be described in which a Ba2+ ion functions at the active site. The activation energy for oxidation of methanol by Ba(2+)-MDH is less than half that of the reaction catalysed by Ca(2+)-MDH (a difference of 21.4 kJ/mol), and the Vmax value is 2-fold higher. The affinities of Ba(2+)-MDH for substrate and activator are very much less than those of Ca(2+)-MDH; the Km for methanol is 3.5 mM (compared with 3 microM) and the KA for ammonia is 52 mM (compared with 2 mM). The different activity of Ba(2+)-MDH is probably due to a change in the conformation of the active site, leading to a decrease in the free energy of substrate binding and hence a decrease in activation energy. The kinetic model for Ba(2+)-MDH with respect to substrate and activator is consistent with previous models for Ca(2+)-MDH. The pronounced deuterium isotope effect (6.0-7.6) is influenced by ammonia, and is consistent with activation of the pyrroloquinoline quinone reduction step by ammonia. Because of its low affinity for substrates, it is possible to prepare the oxidized form of Ba(2+)-MDH. No spectral intermediates could be detected during reduction by added substrate, and so it is not possible to distinguish between those mechanisms involving covalent substrate addition and those involving only hydride transfer.
醌蛋白甲醇脱氢酶(MDH)的活性位点含有一个Ca2+离子。使用无Ca2+的酶(来自一个加工突变体)来获得含有Sr2+或Ba2+的酶,其中Ba(2+)-MDH是第一个被描述的在活性位点有Ba2+离子起作用的酶。Ba(2+)-MDH催化甲醇氧化的活化能不到Ca(2+)-MDH催化反应活化能的一半(相差21.4 kJ/mol),且Vmax值高2倍。Ba(2+)-MDH对底物和激活剂的亲和力远低于Ca(2+)-MDH;甲醇的Km为3.5 mM(相比之下Ca(2+)-MDH为3 μM),氨的KA为52 mM(相比之下Ca(2+)-MDH为2 mM)。Ba(2+)-MDH活性不同可能是由于活性位点构象的改变,导致底物结合自由能降低,从而活化能降低。Ba(2+)-MDH关于底物和激活剂的动力学模型与之前Ca(2+)-MDH的模型一致。明显的氘同位素效应(6.0 - 7.6)受氨影响,且与氨对吡咯喹啉醌还原步骤的活化作用一致。由于其对底物亲和力低,有可能制备出Ba(2+)-MDH的氧化形式。在添加底物还原过程中未检测到光谱中间体,因此无法区分涉及共价底物添加的机制和仅涉及氢化物转移的机制。