4.7 Article

A broad-spectrum substrate for the human UDP-glucuronosyltransferases and its use for investigating glucuronidation inhibitors

期刊

出版社

ELSEVIER
DOI: 10.1016/j.ijbiomac.2021.03.073

关键词

Methylophiopogonanone A; UDP-glucuronosyltransferases (UGTs); Drug-drug interactions (DDI)

资金

  1. NSF of China [81922070, 81773687]
  2. National Key Research and Development Program of China [2017YFC1700200, 2017YFC1702000]
  3. Three-year Action Plan of Shanghai TCM Development [ZY-(2018-2020)-CCCX-5001]
  4. Shanghai Talent Development Fund [2019093]
  5. Program of Shanghai Academic/Technology Research Leader [18XD1403600]
  6. Shanghai Science and Technology Innovation Action Plans by Shanghai Science and Technology Committee [20S21901500, 20S21900900]
  7. Shanghai Education Development Foundation [18SG40]
  8. Shanghai Municipal Education Commission

向作者/读者索取更多资源

By studying a new broad-spectrum substrate for human UGTs, MOA, it can be used to assess inhibitory effects and specificities of UGT inhibitors in screening and characterizing.
Strong inhibition of the human UDP-glucuronosyltransferase enzymes (UGTs) may lead to undesirable effects, including hyperbilirubinaemia and drugiherb-drug interactions. Currently, there is no good way to examine the inhibitory effects and specificities of compounds toward all the important human UGTs, side-by-side and under identical conditions. Herein, we report a new, broad-spectrum substrate for human UGTs and its uses in screening and characterizing of UGT inhibitors. Following screening a variety of phenolic compound(s), we have found that methylophiopogonanone A (MOA) can be readily O-glucuronidated by all tested human UGTs, including the typical N-glucuronidating enzymes UGT1A4 and UGT2B10. MOA-O-glucuronidation yielded a single mono-O-glucuronide that was biosynthesized and purified for structural characterization and for constructing an LC-UV based MOA-O-glucuronidation activity assay, which was then used for investigating MOA-O-glucuronidation kinetics in recombinant human UGTs. The derived K-m values were crucial for selecting the most suitable assay conditions for assessing inhibitory potentials and specificity of test compound(s). Furthermore, the inhibitory effects and specificities of four known UGT inhibitors were reinvestigated by using MOA as the substrate for all tested UGTs. Collectively, MOA is a broad-spectrum substrate for the human UGTs, which offers a new and practical tool for assessing inhibitory effects and specificities of UGT inhibitors. (C) 2021 Elsevier B.V. All rights reserved.

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