Taguchi H, Armarego W L
Department of Natural Science, Kyoto Women's University, Japan.
Med Res Rev. 1998 Jan;18(1):43-89. doi: 10.1002/(sici)1098-1128(199801)18:1<43::aid-med3>3.0.co;2-s.
The history, biological, and medical aspects of glyceryl ethers, as well as their chemical syntheses, biosynthesis, and their chemical and physical properties are briefly reviewed as background information for appreciating the importance of the enzyme glyceryl-ether monooxygenase, and for embarking on new studies of this enzyme. The occurrence, isolation and general properties of the microsomal, membrane-bound, glyceryl-ether monooxygenase from rat liver are described. Radiometric, nonradiometric, and coupled and direct spectrophotometric assays for this enzyme are detailed. The effects of detergents on the kinetics of this enzyme are described together with the stoichiometry and the effects of inhibitors. The structure-activity relationships of pterin cofactors and of ether lipid substrates, including their stereospecificities, have been summarized from enzyme kinetic data which are also tabulated. The mechanism of enzymic hydroxylation of glyceryl ethers and a model for the active site of glyceryl-ether monooxygenase are proposed from these apparent kinetic data. Notes on useful future studies of this monooxygenase have been made.
甘油醚的历史、生物学和医学方面,以及它们的化学合成、生物合成及其化学和物理性质,作为理解甘油醚单加氧酶重要性以及开展该酶新研究的背景信息进行简要综述。描述了大鼠肝脏微粒体膜结合甘油醚单加氧酶的存在、分离及一般性质。详细介绍了该酶的放射性、非放射性以及偶联和直接分光光度法测定。描述了去污剂对该酶动力学的影响以及化学计量关系和抑制剂的作用。从酶动力学数据总结了蝶呤辅因子和醚脂底物的构效关系,包括它们的立体特异性,这些数据也列成了表格。根据这些明显的动力学数据,提出了甘油醚的酶促羟基化机制和甘油醚单加氧酶活性位点模型。对该单加氧酶未来有用的研究做了注释。