Arylmalonate Decarboxylase—A Versatile Biocatalyst for the Synthesis of Optically Pure Carboxylic Acids

A. Schweiger, K. Miyamoto, R. Kourist
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Abstract

Bacterial arylmalonate decarboxylase (AMDase) is an intriguing cofactor-independent enzyme with a broad substrate spectrum. Particularly, the highly stereoselective transformation of diverse arylmalonic acids into the corresponding chiral α-arylpropionates has contributed to the broad recognition of this biocatalyst. While, more than 30 years after its discovery, the native substrate and function of AMDase still remain undiscovered, contributions from multiple fields have ever since brought forth a powerful collection of AMDase variants to access a wide variety of optically pure α-substituted propionates. This review aims at providing a comprehensive overview of the development of AMDase from an enzyme with unknown function up to a powerful tailored biocatalyst for the synthesis of industrially relevant optically pure α-arylpropionates. Historical perspectives as well as recent achievements in the field will be covered within this work.
芳基丙二酸脱羧酶——合成光纯羧酸的多功能生物催化剂
细菌芳基克隆脱羧酶(AMDase)是一种有趣的不依赖于辅因子的酶,具有广泛的底物谱。特别是,不同芳基丙酸向相应的手性α-芳基丙酸的高度立体选择性转化有助于该生物催化剂的广泛识别。尽管在发现AMDase 30多年后,其天然底物和功能仍未被发现,但自那以后,来自多个领域的贡献带来了强大的AMDase变体集合,以获得各种光学纯的α-取代丙酸盐。这篇综述旨在全面概述AMDase的发展,从一种功能未知的酶到一种强大的定制生物催化剂,用于合成工业上相关的光学纯α-芳基丙酸盐。这项工作将涵盖历史观点以及该领域的最新成就。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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