首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Terminal Alkenes from Acrylic Acid Derivatives via Non‐Oxidative Enzymatic Decarboxylation by Ferulic Acid Decarboxylases
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Terminal Alkenes from Acrylic Acid Derivatives via Non‐Oxidative Enzymatic Decarboxylation by Ferulic Acid Decarboxylases

机译:阿魏酸脱羧酶通过非氧化酶促脱羧作用衍生自丙烯酸衍生物的末端烯烃

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摘要

Fungal ferulic acid decarboxylases (FDCs) belong to the UbiD‐family of enzymes and catalyse the reversible (de)carboxylation of cinnamic acid derivatives through the use of a prenylated flavin cofactor. The latter is synthesised by the flavin prenyltransferase UbiX. Herein, we demonstrate the applicability of FDC/UbiX expressing cells for both isolated enzyme and whole‐cell biocatalysis. FDCs exhibit high activity with total turnover numbers (TTN) of up to 55000 and turnover frequency (TOF) of up to 370 min−1. Co‐solvent compatibility studies revealed FDC's tolerance to some organic solvents up 20 % v/v. Using the in‐vitro (de)carboxylase activity of holo‐FDC as well as whole‐cell biocatalysts, we performed a substrate profiling study of three FDCs, providing insights into structural determinants of activity. FDCs display broad substrate tolerance towards a wide range of acrylic acid derivatives bearing (hetero)cyclic or olefinic substituents at C3 affording conversions of up to >99 %. The synthetic utility of FDCs was demonstrated by a preparative‐scale decarboxylation.
机译:真菌阿魏酸脱羧酶(FDC)属于酶的UbiD家族,通过使用异戊烯基黄素辅助因子催化肉桂酸衍生物的可逆(脱)羧化。后者由黄素异戊二烯基转移酶UbiX合成。在本文中,我们证明了FDC / UbiX表达细胞可用于分离的酶和全细胞生物催化。 FDC具有很高的活动性,总周转次数(TTN)高达55000,周转频率(TOF)高达370 min -1 。共溶剂相容性研究表明,FDC对某些有机溶剂的耐受性高达20%v / v。利用全FDC的体外(脱)羧化酶活性以及全细胞生物催化剂,我们对三种FDC进行了底物分析研究,从而提供了对活性的结构决定因素的认识。 FDC对多种在C3处带有(杂)环或烯烃取代基的丙烯酸衍生物具有广泛的底物耐受性,可提供高达> 99%的转化率。 FDC的合成用途已通过制备规模的脱羧反应得到证明。

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