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The three zinc-containing alcohol dehydrogenases from baker's yeast, Saccharomyces cerevisiae

机译:面包酵母酿酒酵母中的三种含锌醇脱氢酶

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This review is a summary of our current knowledge of the structure, function and mechanism of action of the three zinc-containing alcohol dehydrogenases, YADH-1, YADH-2 and YADH-3, in baker's yeast, Saccharomyces cerevisiae. The opening section deals with the substrate specificity of the enzymes, covering the steady-state kinetic data for its most known substrates. In the following sections, the kinetic mechanism for this enzyme is reported, along with the values of all rate constants in the mechanism. The complete primary structures of the three isoenzymes of YADH are given, and the model of the 3D structure of the active site is presented. All known artificial mutations in the primary structure of the YADH are covered in full and described in detail. Further, the chemical mechanism of action for YADH is presented along with the complement of steady-state and ligand-binding data supporting this mechanism. Finally, the bio-organic chemistry of the hydride-transfer reactions catalyzed by the enzyme is covered: this chemistry explains the narrow substrate specificity and the enantioselectivity of the yeast enzyme.
机译:这篇综述总结了我们目前对面包酵母酵母中三种含锌醇脱氢酶YADH-1,YADH-2和YADH-3的结构,功能和作用机理的认识。开头部分涉及酶的底物特异性,涵盖了其最已知底物的稳态动力学数据。在以下各节中,将报告该酶的动力学机理以及该机理中所有速率常数的值。给出了YADH三种同工酶的完整一级结构,并给出了活性位点的3D结构模型。 YADH一级结构中所有已知的人工突变均已完整涵盖并进行了详细描述。此外,提出了YADH的化学作用机理,以及支持该机理的稳态和配体结合数据的补充。最后,涵盖了酶催化的氢化物转移反应的生物有机化学:该化学解释了酵母酶狭窄的底物特异性和对映选择性。

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