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Structure and substrate docking of a hydroxy(phenyl)pyruvate reductase from the higher plant Coleus blumei Benth.

机译:结构和底物的对接羟基丙酮酸还原酶(苯)的更高植物锦紫苏blumei Benth。

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Hydroxy(phenyl)pyruvate reductase [H(P)PR] belongs to the family of D-isomer-specific 2-hydroxyacid dehydrogenases and catalyzes the reduction of hydroxyphenylpyruvates as well as hydroxypyruvate and pyruvate to the corresponding lactates. Other non-aromatic substrates are also accepted. NADPH is the preferred cosubstrate. The crystal structure of the enzyme from Coleus blumei (Lamiaceae) has been determined at 1.47 A resolution. In addition to the apoenzyme, the structure of a complex with NADP(+) was determined at a resolution of 2.2 A. H(P)PR is a dimer with a molecular mass of 34 113 Da per subunit. The structure is similar to those of other members of the enzyme family and consists of two domains separated by a deep catalytic cleft. To gain insights into substrate binding, several compounds were docked into the cosubstrate complex structure using the program AutoDock. The results show two possible binding modes with similar docking energy. However, only binding mode A provides the necessary environment in the active centre for hydride and proton transfer during reduction, leading to the formation of the (R)-enantiomer of lactate and/or hydroxyphenyllactate.
机译:羟基(苯)丙酮酸还原酶(H (P)公关)的家庭D-isomer-specific 2-hydroxyacid脱氢酶和催化的还原hydroxyphenylpyruvates hydroxypyruvate相应的乳酸和丙酮酸。non-aromatic基质也接受了。是首选辅被用物。酶的结构从锦紫苏blumei(唇形科)已被确定为1.47决议。结构复杂的辅酶ii (+)2.2的决议决定。二聚体的分子质量34 113 Da /亚基。酶家族的其他成员,包括隔开的两个领域的深度催化间隙。几个化合物停靠到辅被用物使用程序复杂的结构AutoDock。与类似的对接能量模式。绑定模式提供了必要的环境在氢化活性中心和质子转移在减少,导致的乳酸(R)对映体的形成和/或

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