首页> 外文期刊>Advanced synthesis & catalysis >Opposite Enantioselectivity in the Bioreduction of (Z)-beta-Aryl-beta-cyanoacrylates Mediated by the Tryptophan 116 Mutants of Old Yellow Enzyme 1: Synthetic Approach to (R)- and (S)-beta-Aryl-gamma-lactams
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Opposite Enantioselectivity in the Bioreduction of (Z)-beta-Aryl-beta-cyanoacrylates Mediated by the Tryptophan 116 Mutants of Old Yellow Enzyme 1: Synthetic Approach to (R)- and (S)-beta-Aryl-gamma-lactams

机译:老黄色酶色氨酸116突变体介导的(Z)-β-芳基-β-氰基丙烯酸酯生物还原中的对映选择性相反:(R)-和(S)-β-芳基-γ-内酰胺的合成方法

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摘要

The Trp 116 mutants of Old Yellow Enzyme 1 that catalyse the reduction of (Z)-beta-aryl-beta-cyanoacrylates give the opposite enantioselectivity according to the nature of the amino acid in position 116. Small amino acids (e.g., alanine) make the substrate bind to the enzyme's active site in a "classical" orientation, affording the (S)-enantiomer of the reduced product. When the size of the amino acid increases (e.g., leucine), a "flipped" binding mode is adopted by the substrate, which is converted into the corresponding (R)-derivative. With bulky amino acids (e.g., tryptophan in the wild-type) the reduction does not occur. The enantiomerically enriched cyanopropanoates thus prepared can be converted into the corresponding (S)- and (R)-beta-aryl-gamma-lactams, precursors of inhibitory neurotransmitters belonging to the class of gamma-aminobutyric acids, by a simple functional group interconversion in a sequential one-pot procedure.
机译:催化(Z)-β-芳基-β-氰基丙烯酸酯还原的Old Yellow Enzyme 1的Trp 116突变体根据116位氨基酸的性质给出相反的对映选择性。小的氨基酸(例如丙氨酸)生成底物以“经典”方向与酶的活性位点结合,得到还原产物的(S)-对映异构体。当氨基酸的大小增加时(例如,亮氨酸),底物采用“翻转”结合模式,其转化为相应的(R)-衍生物。对于大体积的氨基酸(例如,野生型色氨酸),不会发生还原。由此制备的对映体富集的氰基丙酸酯可通过简单的官能团相互转化而转化为相应的(S)-和(R)-β-芳基-γ-内酰胺类,它们是抑制性神经递质的前体,属于γ-氨基丁酸类。顺序一锅法。

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