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首页> 外文期刊>The Biochemical Journal >A catalytic consensus motif for D-mannitol 2-dehydrogenase, a member of a polyol-specific long-chain dehydrogenase family, revealed by kinetic characterization of site-directed mutants of the enzyme from Pseudomonas fluorescens.
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A catalytic consensus motif for D-mannitol 2-dehydrogenase, a member of a polyol-specific long-chain dehydrogenase family, revealed by kinetic characterization of site-directed mutants of the enzyme from Pseudomonas fluorescens.

机译:D-甘露醇2-脱氢酶(多元醇特异性长链脱氢酶家族的成员)的催化共有基序,通过荧光假单胞菌的定点突变体的动力学表征揭示。

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摘要

Lys-295, Asn-300 and His-303 of D-mannitol 2-dehydrogenase from Pseudomonas fluorescens were mutated individually into alanine (K295A, N300A and H303A respectively). Purified mutants displayed catalytic efficiencies for NAD(+)-dependent oxidation of D-mannitol 300-fold (H303A), 1000-fold (N300A) and approx. 400000-fold (K295A) below the wild-type level. Comparison of primary kinetic isotope effects on kinetic parameters for D-fructose reduction by wild-type and mutants at pH 10.0 demonstrate that Asn-300 has an auxiliary role in stabilization of the transition state of hydride transfer, and His-303 contributes to substrate positioning. The large solvent isotope effect of 11+/-1 on k (cat) for mannitol oxidation by K295A at pH((2)H) 10.5 suggests a role for Lys-295 in general base enzymic catalysis. Positional conservation of Lys-295, Asn-300 and His-303 across a family of polyol-specific long-chain dehydrogenases suggests a unique catalytic signature: Lys-Xaa(4)-Asn-Xaa(2)-His (where 'Xaa' denotes 'anyamino acid').
机译:将荧光假单胞菌的D-甘露醇2-脱氢酶的Lys-295,Asn-300和His-303分别突变为丙氨酸(分别为K295A,N300A和H303A)。纯化的突变体显示了D-甘露醇300倍(H303A),1000倍(N300A)和大约NAD(+)依赖性氧化的催化效率。比野生型水平低400000倍(K295A)。比较主要动力学同位素对野生型和突变型pH值为10.0的D-果糖还原动力学参数的影响,表明Asn-300在稳定氢化物转移的过渡状态中具有辅助作用,而His-303有助于底物定位。在pH((2)H)为10.5的条件下,K295A对甘露糖醇的氧化作用,对k(cat)具有11 +/- 1的大溶剂同位素效应,表明Lys-295在一般的碱酶催化中具有一定的作用。 Lys-295,Asn-300和His-303在多元醇特异性长链脱氢酶家族中的位置保守性表明独特的催化特征:Lys-Xaa(4)-Asn-Xaa(2)-His(其中“ Xaa '表示'任何氨基酸')。

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