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工程化对映选择性胺氧化酶用于药物砌块和生物碱天然产物的合成。

Engineering an enantioselective amine oxidase for the synthesis of pharmaceutical building blocks and alkaloid natural products.

机构信息

School of Chemistry, Manchester Institute of Biotechnology, University of Manchester, 131 Princess Street, Manchester M1 7DN, United Kingdom.

出版信息

J Am Chem Soc. 2013 Jul 24;135(29):10863-9. doi: 10.1021/ja4051235. Epub 2013 Jul 15.

Abstract

The development of cost-effective and sustainable catalytic methods for the production of enantiomerically pure chiral amines is a key challenge facing the pharmaceutical and fine chemical industries. This challenge is highlighted by the estimate that 40-45% of drug candidates contain a chiral amine, fueling a demand for broadly applicable synthetic methods that deliver target structures in high yield and enantiomeric excess. Herein we describe the development and application of a "toolbox" of monoamine oxidase variants from Aspergillus niger (MAO-N) which display remarkable substrate scope and tolerance for sterically demanding motifs, including a new variant, which exhibits high activity and enantioselectivity toward substrates containing the aminodiphenylmethane (benzhydrylamine) template. By combining rational structure-guided engineering with high-throughput screening, it has been possible to expand the substrate scope of MAO-N to accommodate amine substrates containing bulky aryl substituents. These engineered MAO-N biocatalysts have been applied in deracemization reactions for the efficient asymmetric synthesis of the generic active pharmaceutical ingredients Solifenacin and Levocetirizine as well as the natural products (R)-coniine, (R)-eleagnine, and (R)-leptaflorine. We also report a novel MAO-N mediated asymmetric oxidative Pictet-Spengler approach to the synthesis of (R)-harmicine.

摘要

开发具有成本效益和可持续性的催化方法,用于生产手性纯的手性胺,是制药和精细化工行业面临的关键挑战。这一挑战的突出表现是,估计有 40-45%的候选药物含有手性胺,这就需要广泛应用的合成方法,以高产率和对映过量的方式提供目标结构。在此,我们描述了从黑曲霉(MAO-N)中开发和应用单胺氧化酶变体的“工具箱”,这些变体显示出出色的底物范围和对空间要求高的基序的耐受性,包括一种新变体,它对含有氨二苯基甲烷(苯并海因)模板的底物表现出高活性和对映选择性。通过合理的结构导向工程与高通量筛选相结合,有可能扩展 MAO-N 的底物范围,以适应含有大体积芳基取代基的胺底物。这些经过工程设计的 MAO-N 生物催化剂已应用于外消旋反应中,以高效不对称合成通用的活性药物成分索利那新和左西替利嗪以及天然产物(R)-coniine、(R)-eleagnine 和(R)-leptaflorine。我们还报告了一种新型的 MAO-N 介导的不对称氧化 Pictet-Spengler 方法,用于合成(R)-harmicine。

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