Frank J, Dijkstra M, Duine J A, Balny C
Laboratory of Microbiology and Enzymology, Delft University of Technology, The Netherlands.
Eur J Biochem. 1988 Jun 1;174(2):331-8. doi: 10.1111/j.1432-1033.1988.tb14102.x.
Several reaction rate constants in the catalytic cycle of methanol dehydrogenase (EC 1.1.99.8) in vitro were determined with stopped-flow spectrophotometry. The studies revealed that the high pH required for adequate activity of the enzyme is related to the strong pH dependency of the oxidation rates of the reduced and semiquinone enzyme forms, MDHred and MDHsem, with the artificial electron acceptor Wurster's blue. The rate-limiting step in the catalytic cycle is associated with the conversion of oxidized enzyme-substrate complex (MDHox.S) into reduced enzyme (MDHred) and product. The effect of activator (ammonium salts) was also confined to this step, but even saturating concentrations were unable to remove the limitation completely. Making use of the large deuterium isotope effect associated with substrate oxidation in the absence of activator, the transient MDHox.C2H3OH complex could be isolated and its slow decomposition into MDHred and formaldehyde could be demonstrated. Further evidence is presented to support the view that the different absorption spectra observed originate from genuine redox forms of methanol dehydrogenase with different redox states of the cofactor PQQ and not from enzyme-electron acceptor complexes. The results confirm and extend our original view on the mechanism of action and contradict the mechanism proposed by others [Parkes, C. & Abeles, R. H. (1984) Biochemistry 23, 6355-6363].
采用停流分光光度法测定了体外甲醇脱氢酶(EC 1.1.99.8)催化循环中的几个反应速率常数。研究表明,该酶充分发挥活性所需的高pH值与还原型和半醌型酶形式(MDHred和MDHsem)与人工电子受体沃斯特蓝的氧化速率对pH的强烈依赖性有关。催化循环中的限速步骤与氧化型酶 - 底物复合物(MDHox.S)转化为还原型酶(MDHred)和产物有关。激活剂(铵盐)的作用也仅限于此步骤,但即使是饱和浓度也无法完全消除这种限制。利用在无激活剂时底物氧化相关的大氘同位素效应,可分离出瞬态MDHox.C2H3OH复合物,并证明其缓慢分解为MDHred和甲醛。进一步的证据支持了以下观点:观察到的不同吸收光谱源自具有不同辅因子PQQ氧化还原状态的真正甲醇脱氢酶氧化还原形式,而非酶 - 电子受体复合物。这些结果证实并扩展了我们对作用机制的原始观点,与其他人提出的机制相矛盾[帕克斯,C. & 阿贝莱斯,R. H.(1984年)《生物化学》23,6355 - 6363]。