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Synthesis, Evaluation and Molecular Docking of Thiazolopyrimidine Derivatives as Dipeptidyl Peptidase IV Inhibitors

机译:噻唑并嘧啶衍生物作为二肽基肽酶IV抑制剂的合成,评价和分子对接

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摘要

A series of thiazolopyrimidine derivatives was designed, synthesized and screened for in-vitro inhibition of Dipeptidyl Peptidase IV (DPP IV). The SAR study indicated the influence of substituted chemical modifications on thiazolopyrimidine scaffold. Compound 9 (IC_(50) = 0.489 μM) and 10 (IC_(50) = 0.329 μM) having heterocyclic-substituted piperazine with acetamide linker resulted as most potent DPP IV inhibitors among all the compounds screened. Single dose (10 mg/ kg) of both the compounds 9 and 10 significantly reduced glucose excursion during oral glucose tolerance test in streptozotocin induced diabetic rat model. Molecular docking studies illustrated the probable binding mode and interactions of thiazolopyrimidine nucleus and its derivatives at binding site of receptor. The binding site for DPP IV is composed of active site region (catalytic triad of Ser630, Asp708 and His740) including S1 and S2 subpocket. The aryl moiety of compounds 9, 10 and 11 were observed to occupy S2 binding pocket and interacted with aromatic ring of Tyr662 and Tyr666 acquired through π-π interaction. Thus, it is indicated that occupancy of the highly hydrophobic S2 pocket is more important for DPP IV inhibitory activity. The present study on substituted thiazolopyrimidine derivatives shows good to moderate inhibitory potential of DPP IV enzyme.
机译:设计,合成和筛选了一系列噻唑并嘧啶衍生物,用于体外抑制二肽基肽酶IV(DPP IV)。 SAR研究表明取代的化学修饰对噻唑并嘧啶骨架的影响。在所有筛选的化合物中,最有效的DPP IV抑制剂是具有杂环取代的哌嗪和乙酰胺连接基的化合物9(IC_(50)= 0.489μM)和化合物10(IC_(50)= 0.329μM)。在链脲佐菌素诱发的糖尿病大鼠模型中,在口服葡萄糖耐量试验期间,化合物9和10的单剂量(10 mg / kg)均显着降低了葡萄糖偏移。分子对接研究表明了噻唑并嘧啶核及其衍生物在受体结合位点的可能结合方式和相互作用。 DPP IV的结合位点由活性位点区域(Ser630,Asp708和His740的催化三联体)组成,包括S1和S2亚口袋。观察到化合物9、10和11的芳基部分占据S2结合口袋,并与通过π-π相互作用获得的Tyr662和Tyr666的芳环相互作用。因此,表明对于DPP IV抑制活性而言,高度疏水的S 2口袋的占据更为重要。目前对取代的噻唑并嘧啶衍生物的研究显示出良好到中等的DPP IV酶抑制潜能。

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