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具有蛋白酪氨酸磷酸酶1B和α-葡萄糖苷酶抑制活性的类胰岛素二羟基呫吨酮型香豆素及其分子机制的对接研究

Insulin-Mimetic Dihydroxanthyletin-Type Coumarins from with Protein Tyrosine Phosphatase 1B and α-Glucosidase Inhibitory Activities and Docking Studies of Their Molecular Mechanisms.

作者信息

Ali Md Yousof, Jannat Susoma, Jung Hyun Ah, Choi Jae Sue

机构信息

Department of Physiology and Pharmacology, Hotchkiss Brain Institute and Alberta Children's Hospital Research Institute, Cumming School of Medicine, University of Calgary, Calgary, AB T2N 4N1, Canada.

Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, AB T2N 4N1, Canada.

出版信息

Antioxidants (Basel). 2021 Feb 15;10(2):292. doi: 10.3390/antiox10020292.

Abstract

As a traditional medicine, has been used for the treatment of many diseases. The goal of this study was to evaluate the potential of four natural major dihydroxanthyletin-type coumarins-(+)--decursidinol, Pd-C-I, Pd-C-II, and Pd-C-III-to inhibit the enzymes, protein tyrosine phosphatase 1B (PTP1B) and α-glucosidase. In the kinetic study of the PTP1B enzyme's inhibition, we found that (+)--decursidinol, Pd-C-I, and Pd-C-II led to competitive inhibition, while Pd-C-III displayed mixed-type inhibition. Moreover, (+)--decursidinol exhibited competitive-type, and Pd-C-I and Pd-C-II mixed-type, while Pd-C-III showed non-competitive type inhibition of α-glucosidase. Docking simulations of these coumarins showed negative binding energies and a similar proximity to residues in the PTP1B and α-glucosidase binding pocket, which means they are closely connected and strongly binding with the active enzyme site. In addition, dihydroxanthyletin-type coumarins are up to 40 µM non-toxic in HepG2 cells and have substantially increased glucose uptake and decreased expression of PTP1B in insulin-resistant HepG2 cells. Further, coumarins inhibited ONOO-mediated albumin nitration and scavenged peroxynitrite (ONOO), and reactive oxygen species (ROS). Our overall findings showed that dihydroxanthyletin-type coumarins derived from . is used as a dual inhibitor for enzymes, such as PTP1B and α-glucosidase, as well as for insulin susceptibility.

摘要

作为一种传统药物,已被用于治疗多种疾病。本研究的目的是评估四种天然主要的二氢黄烷亭型香豆素——(+)-γ-去氢紫堇醇、Pd-C-I、Pd-C-II和Pd-C-III——抑制蛋白酪氨酸磷酸酶1B(PTP1B)和α-葡萄糖苷酶的潜力。在PTP1B酶抑制的动力学研究中,我们发现(+)-γ-去氢紫堇醇、Pd-C-I和Pd-C-II导致竞争性抑制,而Pd-C-III表现出混合型抑制。此外,(+)-γ-去氢紫堇醇表现出竞争型,Pd-C-I和Pd-C-II表现出混合型,而Pd-C-III对α-葡萄糖苷酶表现出非竞争型抑制。这些香豆素的对接模拟显示出负结合能,并且与PTP1B和α-葡萄糖苷酶结合口袋中的残基具有相似的接近度,这意味着它们与活性酶位点紧密相连且结合牢固。此外,二氢黄烷亭型香豆素在HepG2细胞中浓度高达40 µM时无毒,并且在胰岛素抵抗的HepG2细胞中显著增加了葡萄糖摄取并降低了PTP1B的表达。此外,香豆素抑制ONOO介导的白蛋白硝化并清除过氧亚硝酸盐(ONOO)和活性氧(ROS)。我们的总体研究结果表明,源自……的二氢黄烷亭型香豆素可作为PTP1B和α-葡萄糖苷酶等酶的双重抑制剂,以及用于改善胰岛素敏感性。 (注:原文中“derived from.”处表述不完整,翻译时保留了原文的不完整性)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25bc/7919472/7ded425f2461/antioxidants-10-00292-g001.jpg

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