Gadda Giovanni
Department of Chemistry, Center for Diagnostics and Therapeutics, Georgia State University, Atlanta, GA, United States; Department of Biology, Center for Diagnostics and Therapeutics, Georgia State University, Atlanta, GA, United States.
Enzymes. 2020;47:137-166. doi: 10.1016/bs.enz.2020.05.004. Epub 2020 Jul 18.
Choline oxidase catalyzes the four-electron, two-step, flavin-mediated oxidation of choline to glycine betaine. The enzyme is important both for medical and biotechnological reasons, because glycine betaine is one among a limited number of compatible solutes used by cells to counteract osmotic pressure. From a fundamental standpoint, choline oxidase has emerged as one of the paradigm enzymes for the oxidation of alcohols catalyzed by flavoproteins. Mechanistic, structural, and computational studies have elucidated the mechanism of action of the enzyme from Arthrobacter globiformis at the molecular level. Both choline and oxygen access to the active site cavity are gated and tightly controlled. Amino acid residues involved in substrate binding, and their contribution, have been identified. The mechanism of choline oxidation, with a hydride transfer reaction, an asynchronous transition state, the formation and stabilization of an alkoxide transient species, and a quantum mechanical mode of reaction, has been elucidated. The importance of nonpolar side chains for oxygen localization and of the positive charge harbored on the substrate for activation of oxygen for reaction with the reduced flavin have been recognized. Interesting phenomena, like the formation of a metastable photoinduced flavin-protein adduct, the reversible formation of a bicovalent flavoprotein, and the trapping of the enzyme in inactive conformations, have been described. This review summarizes the current status of our understanding on the structure-function-dynamics of choline oxidase.
胆碱氧化酶催化胆碱经黄素介导的四电子两步氧化反应生成甘氨酸甜菜碱。由于甘氨酸甜菜碱是细胞用于抵抗渗透压的少数几种相容性溶质之一,该酶在医学和生物技术领域都具有重要意义。从基础角度来看,胆碱氧化酶已成为黄素蛋白催化醇类氧化的典型酶之一。机理、结构和计算研究已在分子水平上阐明了球形节杆菌中该酶的作用机制。胆碱和氧气进入活性位点腔均受到门控且严格调控。已鉴定出参与底物结合的氨基酸残基及其贡献。胆碱氧化的机制,包括氢化物转移反应、异步过渡态、醇盐瞬态物种的形成与稳定以及量子力学反应模式,均已阐明。已认识到非极性侧链对氧定位的重要性以及底物上的正电荷对激活氧以与还原型黄素反应的重要性。还描述了一些有趣的现象,如亚稳态光诱导黄素 - 蛋白质加合物的形成、双共价黄素蛋白的可逆形成以及酶被捕获在无活性构象中。本综述总结了我们目前对胆碱氧化酶结构 - 功能 - 动力学的理解现状。