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一种用于保留半乳糖基转移酶的新型荧光探针。

A novel fluorescent probe for retaining galactosyltransferases.

机构信息

School of Pharmacy, University of East Anglia, Norwich, NR4 7TJ UK.

出版信息

Chembiochem. 2010 Jul 5;11(10):1392-8. doi: 10.1002/cbic.201000013.

Abstract

Glycosyltransferases (GTs) are a large class of carbohydrate-active enzymes that are involved, in both pro- and eukaryotic organisms, in numerous important biological processes, from cellular adhesion to carcinogenesis. GTs have enormous potential as molecular targets for chemical biology and drug discovery. For the full realisation of this potential, operationally simple and generally applicable GT bioassays, especially for inhibitor screening, are indispensable tools. In order to facilitate the development of GT high-throughput screening assays for the identification of GT inhibitors, we have developed novel, fluorescent derivatives of UDP-galactose (UDP-Gal) that are recognised as donor analogues by several different retaining galactosyltransferases (GalTs). We demonstrate for one of these derivatives that fluorescence emission is quenched upon specific binding to individual GalTs, and that this effect can be used as the read-out in ligand-displacement experiments. The novel fluorophore acts as an excellent sensor for several different enzymes and is suitable for the development of a new type of GalT bioassay, whose modular nature and operational simplicity will significantly facilitate inhibitor screening. Importantly, the structural differences between the natural donor UDP-Gal and the new fluorescent derivatives are minimal, and the general assay principle described herein may therefore also be applicable to other GalTs and/or proteins that use nucleotides or nucleotide conjugates as their cofactor.

摘要

糖基转移酶(GTs)是一大类糖基活性酶,它们在原核和真核生物中参与许多重要的生物过程,从细胞黏附到癌变。GTs 具有作为化学生物学和药物发现的分子靶标的巨大潜力。为了充分发挥这一潜力,操作简单且普遍适用的 GT 生物测定法,特别是用于抑制剂筛选的方法,是不可或缺的工具。为了促进 GT 高通量筛选测定法的开发,以鉴定 GT 抑制剂,我们开发了 UDP-半乳糖(UDP-Gal)的新型荧光衍生物,这些衍生物被几种不同的保留半乳糖基转移酶(GalTs)识别为供体类似物。我们证明了这些衍生物中的一种,其荧光发射在与单个 GalTs 特异性结合时被猝灭,并且可以将这种效应用作配体置换实验中的读出信号。新型荧光团可以作为几种不同酶的优异传感器,并且适用于开发新型 GalT 生物测定法,其模块化性质和操作简单性将极大地促进抑制剂筛选。重要的是,天然供体 UDP-Gal 与新的荧光衍生物之间的结构差异很小,因此本文中描述的一般测定原理也可能适用于其他使用核苷酸或核苷酸缀合物作为辅助因子的 GalTs 和/或蛋白质。

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