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在酶上观察到的硫胺素二磷酸结合中间产物的实验进展,以及从这些观察中得出的机制信息。

Progress in the experimental observation of thiamin diphosphate-bound intermediates on enzymes and mechanistic information derived from these observations.

机构信息

Department of Chemistry, Rutgers University, Newark, NJ 07102, USA.

出版信息

Bioorg Chem. 2014 Dec;57:251-262. doi: 10.1016/j.bioorg.2014.08.002. Epub 2014 Sep 3.

Abstract

Thiamin diphosphate (ThDP), the vitamin B1 coenzyme is an excellent representative of coenzymes, which carry out electrophilic catalysis by forming a covalent complex with their substrates. The function of ThDP is to greatly increase the acidity of two carbon acids by stabilizing their conjugate bases, the ylide/carbene/C2-carbanion of the thiazolium ring and the C2α-carbanion/enamine, once the substrate binds to ThDP. In recent years, several ThDP-bound intermediates on such pathways have been characterized by both solution and solid-state methods. Prominent among these advances are X-ray crystallographic results identifying both oxidative and non-oxidative intermediates, rapid chemical quench followed by NMR detection of several intermediates which are stable under acidic conditions, solid-state NMR and circular dichroism detection of the states of ionization and tautomerization of the 4'-aminopyrimidine moiety of ThDP in some of the intermediates. These methods also enabled in some cases determination of the rate-limiting step in the complex series of steps. This review is an update of a review with the same title published by the authors in 2005 in this Journal. Much progress has been made in the intervening decade in the identification of the intermediates and their application to gain additional mechanistic insight.

摘要

硫胺素二磷酸(ThDP),维生素 B1 辅酶,是辅酶的杰出代表,通过与底物形成共价复合物来进行亲电催化。ThDP 的功能是通过稳定其共轭碱(噻唑鎓环的叶立德/碳烯/C2-碳负离子和 C2α-碳负离子/烯胺)来极大地增加两种碳二羧酸的酸性,一旦底物与 ThDP 结合。近年来,通过溶液和固态方法已经对这些途径中的几种 ThDP 结合中间体进行了表征。这些进展中突出的是 X 射线晶体学结果,确定了氧化和非氧化中间体,快速化学猝灭,随后通过 NMR 检测在酸性条件下稳定的几种中间体,固态 NMR 和圆二色性检测 ThDP 的 4'-氨基嘧啶部分在一些中间体中的电离和互变异构状态。这些方法还使在某些情况下能够确定复杂步骤系列中的限速步骤。这篇综述是作者在 2005 年在本期刊上发表的同名综述的更新。在这十年中,在鉴定中间体及其应用以获得更多的机制见解方面取得了很大进展。

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