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Structures of Alcohol Dehydrogenases from Ralstonia and Sphingobium spp. Reveal the Molecular Basis for Their Recognition of ‘Bulky–Bulky’ Ketones

机译:Ralstonia和Sphingobium spp的酒精脱氢酶的结构。揭示其识别“大体积-大体积”酮的分子基础

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摘要

Alcohol dehydrogenases (ADHs) are applied in industrial synthetic chemistry for the production of optically active secondary alcohols. However, the substrate spectrum of many ADHs is narrow, and few, for example, are suitable for the reduction of prochiral ketones in which the carbonyl group is bounded by two bulky and/or hydrophobic groups; so-called ‘bulky–bulky’ ketones. Recently two ADHs, RasADH from Ralstonia sp. DSM 6428, and SyADH from Sphingobium yanoikuyae DSM 6900, have been described, which are distinguished by their ability to accept bulky–bulky ketones as substrates. In order to examine the molecular basis of the recognition of these substrates the structures of the native and NADPH complex of RasADH, and the NADPH complex of SyADH have been determined and refined to resolutions of 1.5, 2.9 and 2.5 Å, respectively. The structures reveal hydrophobic active site tunnels near the surface of the enzymes that are well-suited to the recognition of large hydrophobic substrates, as determined by modelling of the bulky–bulky substrate n-pentyl phenyl ketone. The structures also reveal the bases for NADPH specificity and (S)-stereoselectivity in each of the biocatalysts for n-pentyl phenyl ketone and related substrates.
机译:醇脱氢酶(ADHs)用于工业合成化学中,以生产旋光性仲醇。但是,许多ADH的底物谱很窄,例如,很少有适合还原前羰基的手性酮,其中羰基被两个大的和/或疏水的基团键合。所谓的“大块大块”酮。最近有两个ADH,来自Ralstonia sp。的RasADH。已经描述了DSM 6428和来自Sphingobium yanoikuyae DSM 6900的SyADH,它们的特征是能够接受大体积的酮类作为底物。为了检查识别这些底物的分子基础,已经确定了RasADH的天然和NADPH配合物以及SyADH的NADPH配合物的结构,并将其分别精制为1.5、2.9和2.5Å的分辨率。该结构揭示了酶表面附近的疏水性活性位点隧道,非常适合识别大型疏水性底物,这是通过对大而笨重的底物正戊基苯基酮进行建模确定的。该结构还揭示了在每种生物催化剂中正戊基苯基酮和相关底物的NADPH特异性和(S)-立体选择性的基础。

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