首页> 外文期刊>Drug Design, Development and Therapy >Antidiabetic Bis-Maltolato-OxoVanadium(IV): Conversion of inactive trans- to bioactive cis-BMOV for possible binding to target PTP-1B
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Antidiabetic Bis-Maltolato-OxoVanadium(IV): Conversion of inactive trans- to bioactive cis-BMOV for possible binding to target PTP-1B

机译:抗糖尿病的Bis-Maltolato-OxoVanadium(IV):将非活性反式转变为生物活性的顺式BMOV以可能与靶标PTP-1B结合

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Abstract: The postulated transition of Bis-Maltolato-OxoVanadium(IV) (BMOV) from its inactive trans- into its cis-aquo-BMOV isomeric form in solution was simulated by means of computational molecular modeling. The rotational barrier was calculated with DFT – B3LYP under a stepwise optimization protocol with STO-3G, 3-21G, 3-21G*, and 6-31G ab initio basis sets. Our computed results are consistent with reports on the putative molecular mechanism of BMOV triggering the insulin-like cellular response (insulin mimetic) as a potent inhibitor of the protein tyrosine phosphatase-1B (PTP-1B). Initially, trans-BMOV is present in its solid dosage form but in aqueous solution, and during oral administration, it is readily converted into a mixture of “open-type” and “closed-type” complexes of cis-aquo-BMOV under equilibrium conditions. However, in the same measure as the “closed-type” complex binds to the cytosolic PTP-1B, it disappears from solution, and the equilibrium shifts towards the “closed-type” species. In full accordance, the computed binding mode of cis-BMOV is energetically favored over sterically hindered trans-BMOV. In view of our earlier report on prodrug hypothesis of vanadium organic compounds the present results suggest that cis-BMOV is the bioactive species.
机译:摘要:通过计算分子建模,模拟了Bis-Maltolato-OxoVanadium(IV)(BMOV)从溶液中的无活性反式转变为顺式-BMOV异构体的假定转变。旋转势垒是使用DFT – B3LYP在STO-3G,3-21G,3-21G *和6-31G从头算的基础上按逐步优化协议计算的。我们的计算结果与关于BMOV作为蛋白质酪氨酸磷酸酶1B(PTP-1B)的有效抑制剂触发胰岛素样细胞应答(模拟胰岛素)的推测分子机制的报道一致。最初,反式BMOV以其固体剂型存在,但以水溶液形式存在,并且在口服给药期间,很容易在平衡下转化为顺式-BMOV的“开放型”和“封闭型”复合物的混合物。条件。但是,以与“封闭型”复合物结合至胞质PTP-1B相同的方式,它从溶液中消失,平衡向“封闭型”物质转移。完全一致地,所计算的顺式-BMOV结合模式在能量上优于空间受阻的反式-BMOV。鉴于我们先前关于钒有机化合物的前药假说的报告,目前的结果表明,顺式BMOV是生物活性物种。

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