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用于筛选各种化合物对尿苷二磷酸葡萄糖醛酸基转移酶抑制作用的生物发光UGT-Glo检测法的自动化与小型化

Automation and miniaturization of the bioluminescent UGT-Glo assay for screening of UDP-glucuronosyltransferase inhibition by various compounds.

作者信息

Larson Brad, Kelts Jessica L, Banks Peter, Cali James J

机构信息

BioTek Instruments, Inc., Highland Park, Winooski, VT 05404, USA.

出版信息

J Lab Autom. 2011 Feb;16(1):38-46. doi: 10.1016/j.jala.2010.05.005. Epub 2010 Jul 24.

Abstract

The uridine 5'-diphospho-glucuronosyltransferase (UGT) family of enzymes is involved in the metabolism of various compounds. These enzymes transfer a hydrophilic glucuronic acid moiety to their substrates, rendering them more water soluble and amenable to excretion. The UGTs act on various endogenous substrates, such as bilirubin, 17β-estradiol, and testosterone, and drugs and other xenobiotics. The function of these enzymes is essential for the clearance of drugs and toxicants, and alteration of UGT activity is a potential cause of adverse drug-drug interactions in vivo. This has stimulated an increased interest in the study of UGT function and inhibition, and the desire to profile new drug entities against UGT enzymes, similar to CYP450 profiling. However, certain factors have hindered the development of a robust method for UGT profiling. Current methods for assessing UGT enzyme activity are laborious and involve protein precipitation and/or chromatographic separation steps, which are not amenable to rapid screening applications for UGT inhibitors or substrates. The approach presented here is a bioluminescent assay for measuring UGT enzyme activity and inhibition in vitro. Using flexible, robust instrumentation in a 384-well microplate format, this study highlights the quick and easy assay implementation for estimation of inhibition kinetics with a variety of known and suspected UGT substrates and inhibitors.

摘要

尿苷5'-二磷酸葡萄糖醛酸基转移酶(UGT)家族的酶参与多种化合物的代谢。这些酶将亲水性葡萄糖醛酸部分转移到其底物上,使其更易溶于水并便于排泄。UGT作用于各种内源性底物,如胆红素、17β-雌二醇和睾酮,以及药物和其他外源性物质。这些酶的功能对于药物和毒物的清除至关重要,UGT活性的改变是体内药物相互作用产生不良反应的潜在原因。这激发了人们对UGT功能和抑制作用研究的兴趣增加,以及与CYP450分析类似的针对UGT酶对新药实体进行分析的愿望。然而,某些因素阻碍了一种强大的UGT分析方法的发展。目前评估UGT酶活性的方法繁琐,涉及蛋白质沉淀和/或色谱分离步骤,不适用于UGT抑制剂或底物的快速筛选应用。本文介绍的方法是一种用于体外测量UGT酶活性和抑制作用的生物发光测定法。本研究使用384孔微孔板形式的灵活、强大的仪器,突出了使用各种已知和可疑的UGT底物及抑制剂进行抑制动力学评估时快速简便的测定方法。

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