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Molecular Docking-Based Design and Development of a Highly Selective Probe Substrate for UDP-glucuronosyltransferase 1A10

机译:基于分子对接的uDP-葡糖糖基转移酶1A10的高选择性探针基材的设计和开发

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摘要

Intestinal and hepatic glucuronidation by the UDP-glucuronosyltransferases (UGTs) greatly affect the bioavailability of phenolic compounds. UGT1A10 catalyzes glucuronidation reactions in the intestine, but not in the liver. Here, our aim was to develop selective, fluorescent substrates to easily elucidate UGT1A10 function. To this end, homology models were constructed and used to design new substrates, and subsequently, six novel C3-substituted (4-fluorophenyl, 4-hydroxyphenyl, 4-methoxyphenyl, 4-(dimethylamino)phenyl, 4-methylphenyl, or triazole) 7-hydroxycoumarin derivatives were synthesized from inexpensive starting materials. All tested compounds could be glucuronidated to nonfluorescent glucuronides by UGT1A10, four of them highly selectively by this enzyme. A new UGT1A10 mutant, 1A10-H210M, was prepared on the basis of the newly constructed model. Glucuronidation kinetics of the new compounds, in both wild-type and mutant UGT1A10 enzymes, revealed variable effects of the mutation. All six new C3-substituted 7-hydroxycoumarins were glucuronidated faster by human intestine than by liver microsomes, supporting the results obtained with recombinant UGTs. The most selective 4-(dimethylamino)phenyl and triazole C3-substituted 7-hydroxycoumarins could be very useful substrates in studying the function and expression of the human UGT1A10.
机译:UDP-葡糖醛阳糖基转移酶(UGTs)的肠和肝胰酸钠大大影响了酚类化合物的生物利用度。 UGT1A10催化肠内葡萄糖醛反应,但不在肝脏中。在这里,我们的目的是开发选择性,荧光基板以容易地阐明UGT1A10功能。为此,构建了同源性模型,用于设计新的底物,随后,六种新的C3取代(4-氟苯基,4-羟基苯基,4-甲氧基苯基,4-(二甲基氨基)苯基,4-甲基苯基或三唑)从廉价的原料合成7-羟基苏马林衍生物。所有测试的化合物都可以通过UGT1A10,通过该酶非常有选择地通过UGT1A10葡萄糖化至非荧光葡糖糖苷。基于新构建的模型制备新的UGT1A10突变体1A10-H210M。新化合物的葡萄糖醛酸动力学在野生型和突变型UGT1A10酶中,揭示了突变的可变效应。所有六种新的C3-取代的7-羟基苏拉酪蛋白由人肠比肝微粒体更快地血糖化,支持用重组UGT获得的结果。在研究人UGT1A10的功能和表达时,最有选择的4-(二甲基氨基)苯基和三唑C3取代的7-羟基苏马察素可能是非常有用的基材。

著录项

  • 来源
    《Molecular pharmaceutics》 |2018年第3期|共11页
  • 作者单位

    School of Pharmacy Faculty of Health Sciences University of Eastern Finland Box 1627 FI-70211;

    Department of Biological and Environmental Science and Department of Chemistry University of;

    Department of Biological and Environmental Science and Department of Chemistry University of;

    Department of Biological and Environmental Science and Department of Chemistry University of;

    Division of Pharmaceutical Chemistry and Technology Faculty of Pharmacy University of Helsinki P;

    School of Pharmacy Faculty of Health Sciences University of Eastern Finland Box 1627 FI-70211;

    Department of Biological and Environmental Science and Department of Chemistry University of;

    School of Pharmacy Faculty of Health Sciences University of Eastern Finland Box 1627 FI-70211;

    Division of Pharmaceutical Chemistry and Technology Faculty of Pharmacy University of Helsinki P;

    Department of Biological and Environmental Science and Department of Chemistry University of;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

    7-hydroxycoumarin derivative; drug metabolism; fluorescence; in silico; UDP-glucuronosyltransferase;

    机译:7-羟基苏格林衍生物;药物代谢;荧光;在硅;UDP-葡糖醛糖基转移酶;

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