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首页> 外文期刊>Chemical biology and drug design >Synthesis, Evaluation and Molecular Docking of Prolyl-Fluoropyrrolidine Derivatives as Dipeptidyl Peptidase IV Inhibitors
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Synthesis, Evaluation and Molecular Docking of Prolyl-Fluoropyrrolidine Derivatives as Dipeptidyl Peptidase IV Inhibitors

机译:脯氨酰氟吡咯烷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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A series of prolyl-fluoropyrrolidine derivatives were designed, synthesized and screened for in vitro inhibition of dipeptidyl peptidase IV. The SAR study revealed the influence of substituted chemical modifications on dipeptidyl peptidase IV inhibitory activity. Among all the compounds screened, compound 9 (IC_(50) = 0.83 μM) and 10 (IC_(50) = 0.43 μM) possessing aryl substituted piperazine with acetamide linker resulted as most potent dipeptidyl peptidase IV inhibitors. Both the compounds 9 and 10 resulted significant reduction in glucose excursion during oral glucose tolerance test in streptozotocin-induced diabetic rat model at single dose of 10 mg/kg. Molecular docking studies were performed to illustrate the probable binding mode and interactions of prolyl-fluoropyrrolidine nucleus and its derivatives at binding site of receptor. The fluoropyrrolidine moiety of prolyl-fluoropyrrolidine derivatives occupied S1 pocket as observed in the crystal structure (PDB id: 2FJP). The compounds 9 and 10 were observed to occupy S2 binding pocket and were observed to have interaction with Arg125, Tyr547 and Ser630 acquired through hydrogen bond. The aryl moiety at piperazine ring was found to extend into the cavity and interacted with Arg358. The observed interactions signalled that occupancy of the highly hydrophobic S2 pocket is very crucial for dipeptidyl peptidase IV inhibitory activity.
机译:设计,合成和筛选了一系列脯氨酰-氟吡咯烷衍生物,用于体外抑制二肽基肽酶IV。 SAR研究揭示了取代的化学修饰对二肽基肽酶IV抑制活性的影响。在所有筛选的化合物中,具有最有效的二肽基肽酶IV抑制剂的化合物9(IC_(50)= 0.83μM)和10(IC_(50)= 0.43μM)具有芳基取代的哌嗪和乙酰胺接头。在链脲佐菌素诱导的糖尿病大鼠模型中,单剂量10 mg / kg的化合物在口服葡萄糖耐量试验期间,化合物9和10均导致葡萄糖偏移显着降低。进行分子对接研究以说明脯氨酰-氟吡咯烷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。如在晶体结构中观察到的,脯氨酰-氟吡咯烷衍生物的氟吡咯烷部分占据了S1袋(PDB id:2FJP)。观察到化合物9和10占据S2结合口袋,并且观察到与通过氢键获得的Arg125,Tyr547和Ser630具有相互作用。发现哌嗪环上的芳基部分延伸到空腔中并与Arg358相互作用。观察到的相互作用表明,高度疏水的S2口袋对二肽基肽酶IV抑制活性至关重要。

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