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涉及形成瞬态非经典碳正离子的糖基水解酶的基于机制的失活剂。

A mechanism-based inactivator of glycoside hydrolases involving formation of a transient non-classical carbocation.

机构信息

Department of Chemistry, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.

Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.

出版信息

Nat Commun. 2014 Dec 5;5:5590. doi: 10.1038/ncomms6590.

Abstract

The design of mechanism-based enzyme inactivators to generate chemical probes for biological research is an important challenge in carbohydrate chemistry. Here we describe the synthesis and biological evaluation of a novel carbocyclic mechanism-based inactivator of galactosidases (glycoside hydrolase families 27 and 36). Upon catalysis of this unnatural substrate, a transient non-classical carbocation forms within the enzyme active site. We show that the inactivation event, which proceeds via a bicyclobutonium ion intermediate, leads to a single alkylation event that occurs on the enzymatic nucleophile, an aspartic acid residue in this case. We also show that the catalytic proficiencies for enzymatic hydrolysis of substrates and inactivation by our bicyclo[4.1.0]heptyl analogue of galactose differ by only a factor of 20. This inactivator has the potential for further development as a useful biological research tool for both basic research and biotechnological applications.

摘要

设计基于机制的酶失活剂以生成用于生物研究的化学探针是碳水化合物化学中的一个重要挑战。在这里,我们描述了一种新型碳环基于机制的半乳糖苷酶(糖苷水解酶家族 27 和 36)失活剂的合成和生物学评价。在该非天然底物的催化下,在酶活性位点内形成瞬态非经典碳正离子。我们表明,失活事件通过双环[4.1.0]庚基离子中间体进行,导致单一的烷基化事件发生在酶的亲核试剂上,在这种情况下是天冬氨酸残基。我们还表明,对于底物的酶水解和我们的半乳糖双环[4.1.0]庚基类似物的失活的催化效率仅相差 20 倍。这种失活剂有可能进一步开发成为用于基础研究和生物技术应用的有用的生物研究工具。

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