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噻唑烷-4-酮衍生物库作为蛋白酪氨酸磷酸酶 1B(PTP1B)抑制剂:发现新型抗糖尿病药物的尝试。

A Library of Thiazolidin-4-one Derivatives as Protein Tyrosine Phosphatase 1B (PTP1B) Inhibitors: An Attempt To Discover Novel Antidiabetic Agents.

机构信息

Ramanbhai Patel College of Pharmacy, Charotar University of Science and Technology, Changa, Anand, 388421, India.

Department of Pharmaceutical Chemistry Parul Institute of Pharmacy, Parul University, Vadodara, Gujarat, 391760, India.

出版信息

ChemMedChem. 2020 Jul 3;15(13):1229-1242. doi: 10.1002/cmdc.202000055. Epub 2020 Jun 3.

Abstract

Protein tyrosine phosphatase 1B (PTP1B) is an important target for the treatment of diabetes. A series of thiazolidin-4-one derivatives 8-22 was designed, synthesized and investigated as PTP1B inhibitors. The new molecules inhibited PTP1B with IC values in the micromolar range. 5-(Furan-2-ylmethylene)-2-(4-nitrophenylimino)thiazolidin-4-one (17) exhibited potency with a competitive type of enzyme inhibition. structure-activity relationship studies revealed various structural facets important for the potency of these analogues. The findings revealed a requirement for a nitro group-including hydrophobic heteroaryl ring for PTP1B inhibition. Molecular docking studies afforded good correlation with experimental results. H-bonding and π-π interactions were responsible for optimal binding and effective stabilization of virtual protein-ligand complexes. Furthermore, in-silico pharmacokinetic properties of test compounds predicted their drug-like characteristics for potential oral use as antidiabetic agents.Additionally, a binding site model demonstrating crucial pharmacophoric characteristics influencing potency and binding affinity of inhibitors has been proposed, which can be employed in the design of future potential PTP1B inhibitors.

摘要

蛋白酪氨酸磷酸酶 1B(PTP1B)是治疗糖尿病的重要靶点。设计、合成并研究了一系列噻唑烷-4-酮衍生物 8-22 作为 PTP1B 抑制剂。这些新分子以微摩尔范围的 IC 值抑制 PTP1B。5-(呋喃-2-亚甲基)-2-(4-硝基苯亚氨基)噻唑烷-4-酮(17)表现出具有竞争性酶抑制作用的效力。构效关系研究揭示了这些类似物效力的各种结构方面。研究结果表明,需要硝基基团-包括疏水性杂芳环才能抑制 PTP1B。分子对接研究与实验结果具有良好的相关性。氢键和 π-π 相互作用负责虚拟蛋白-配体复合物的最佳结合和有效稳定。此外,预测了测试化合物的计算药物动力学特性,表明它们具有作为潜在口服抗糖尿病药物的特性。此外,提出了一个结合位点模型,该模型展示了影响抑制剂效力和结合亲和力的关键药效特征,可用于设计未来潜在的 PTP1B 抑制剂。

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