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Structural basis of stereospecific reduction by quinuclidinone reductase

机译:奎宁环酮还原酶立体定向还原的结构基础

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摘要

Chiral molecule (R)-3-quinuclidinol, a valuable compound for the production of various pharmaceuticals, is efficiently synthesized from 3-quinuclidinone by using NADPH-dependent 3-quinuclidinone reductase (RrQR) from Rhodotorula rubra. Here, we report the crystal structure of RrQR and the structure-based mutational analysis. The enzyme forms a tetramer, in which the core of each protomer exhibits the α/β Rossmann fold and contains one molecule of NADPH, whereas the characteristic substructures of a small lobe and a variable loop are localized around the substrate-binding site. Modeling and mutation analyses of the catalytic site indicated that the hydrophobicity of two residues, I167 and F212, determines the substrate-binding orientation as well as the substrate-binding affinity. Our results revealed that the characteristic substrate-binding pocket composed of hydrophobic amino acid residues ensures substrate docking for the stereospecific reaction of RrQR in spite of its loose interaction with the substrate.
机译:手性分子(R)-3-奎宁环醇,一种用于生产各种药物的有价值的化合物,是通过使用红景天的NADPH依赖性3-奎宁环酮还原酶(RrQR)从3-奎宁环酮高效合成的。在这里,我们报告RrQR的晶体结构和基于结构的突变分析。该酶形成四聚体,其中每个原核的核心均表现出α/βRossmann折叠并包含一分子NADPH,而小叶和可变环的特征性亚结构位于底物结合位点附近。催化位点的建模和突变分析表明,两个残基I167和F212的疏水性决定了底物结合方向以及底物结合亲和力。我们的结果表明,由疏水性氨基酸残基组成的特征性底物结合口袋可确保底物对接RrQR的立体特异性反应,尽管它与底物的相互作用较松散。

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