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一种用于构建底物选择性水解人工酯酶的诱钓转换方法。

A Bait-and-Switch Method for the Construction of Artificial Esterases for Substrate-Selective Hydrolysis.

作者信息

Hu Lan, Zhao Yan

机构信息

Department of Chemistry, Iowa State University, Ames, IA, 50011-3111, USA.

出版信息

Chemistry. 2019 Jun 7;25(32):7702-7710. doi: 10.1002/chem.201900560. Epub 2019 May 13.

Abstract

Outcomes of chemical reactions are generally dominated by the intrinsic reactivities of reaction partners, but enzymes frequently override such constraints to transform less reactive molecules in the presence of more reactive ones. Despite the attractiveness of such catalysis, it is difficult to build synthetic catalysts with these features. Micellar imprinting is a powerful method to create template-complementary binding sites inside protein-sized water-soluble nanoparticles. When a photocleavable functional monomer was used to bind two phosphonate/phosphate templates as transition-state analogues, active sites with predetermined size and shape were formed inside doubly cross-linked micelles through molecular imprinting. Postmodification replaced the binding group with a catalytic pyridyl group, forming highly selective artificial esterases. The catalysts displayed enzyme-like kinetics and turnover numbers that were in the hundreds. The selectivity of the catalysts, derived from the substrate-complementary imprinted active sites, enabled transformation of less reactive esters in the presence of more reactive ones.

摘要

化学反应的结果通常由反应伙伴的内在反应活性决定,但酶常常能突破这些限制,在存在更具反应活性分子的情况下转化反应活性较低的分子。尽管这种催化作用颇具吸引力,但构建具有这些特性的合成催化剂却很困难。胶束印迹法是在蛋白质大小的水溶性纳米颗粒内部创建与模板互补的结合位点的一种强大方法。当使用可光裂解的功能单体结合两个膦酸酯/磷酸酯模板作为过渡态类似物时,通过分子印迹在双重交联的胶束内部形成了具有预定大小和形状的活性位点。后修饰用催化性吡啶基团取代了结合基团,形成了高选择性的人工酯酶。这些催化剂表现出类似酶的动力学特性,周转数可达数百。源自与底物互补的印迹活性位点的催化剂选择性,使得在存在更具反应活性酯的情况下能够转化反应活性较低的酯。

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