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On the Inhibition Mechanism of Glutathione Transferase P1 by Piperlongumine. Insight From Theory

机译:哌隆定对谷胱甘肽转移酶P1的抑制作用机理理论洞察力

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Piperlongumine (PL) is an anticancer compound whose activity is related to the inhibition of human glutathione transferase of pi class (GSTP1) overexpressed in cancerous tumors and implicated in the metabolism of electrophilic compounds. In the present work, the inhibition mechanism of hydrolyzed piperlongumine (hPL) has been investigated employing QM and QM/MM levels of theory. The potential energy surfaces (PESs) underline the contributions of Tyr residue close to G site in the catalytic pocket of the enzyme. The proposed mechanism occurs through a one-step process represented by the nucleophilic addition of the glutathione thiol to electrophilic species giving rise to the simultaneous C-S and H-C bonds formation. Both the used methods give barrier heights (19.8 and 21.5 kcal mol-1 at QM/MM and QM, respectively) close to that experimentally measured for the C-S bond formations. (23.8 kcal mol-1)
机译:Piperlongumine(PL)是一种抗癌化合物,其活性与抑制在癌性肿瘤中过度表达并涉及亲电子化合物代谢的pi类人谷胱甘肽转移酶(GSTP1)有关。在目前的工作中,已利用QM和QM / MM水平的理论研究了水解哌隆明(hPL)的抑制机理。势能表面(PESs)强调了靠近酶催化口袋G位的Tyr残基的贡献。所提出的机制是通过一步反应过程来实现的,该过程以谷胱甘肽硫醇亲核加成至亲电子物质为代表,从而导致同时形成C-S和H-C键。两种使用的方法均给出的势垒高度(分别在QM / MM和QM下分别为19.8和21.5 kcal mol-1)接近于C-S键形成的实验测量值。 (23.8大卡mol-1)

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