首页> 外文期刊>Chemical biology and drug design >Homology Modeling, Docking Studies and Molecular Dynamic Simulations Using Graphical Processing Unit Architecture to Probe the Type-11 Phosphodiesterase Catalytic Site: A Computational Approach for the Rational Design of Selective Inhibitors
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Homology Modeling, Docking Studies and Molecular Dynamic Simulations Using Graphical Processing Unit Architecture to Probe the Type-11 Phosphodiesterase Catalytic Site: A Computational Approach for the Rational Design of Selective Inhibitors

机译:使用图形处理单元体系结构探测11型磷酸二酯酶催化位点的同源性建模,对接研究和分子动力学模拟:一种选择性抑制剂合理设计的计算方法

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摘要

Phosphodiesterase 11 (PDE11) is the latest isoform of the PDEs family to be identified, acting on both cyclic adenosine monophosphate and cyclic guanosine monophosphate. The initial reports of PDE11 found evidence for PDE11 expression in skeletal muscle, prostate, testis, and salivary glands; however, the tissue distribution of PDE11 still remains a topic of active study and some controversy. Given the sequence similarity between PDE11 and PDE5, several PDE5 inhibitors have been shown to cross-react with PDE11. Accordingly, many non-selective inhibitors, such as IBMX, zaprinast, sildenafil, and dipyridamole, have been documented to inhibit PDE11. Only recently, a series of dihydrothieno[3,2-d]pyrimidin-4(3H)-one derivatives proved to be selective toward the PDE11 isoform. In the absence of experimental data about PDE11 X-ray structures, we found interesting to gain a better understanding of the enzyme-inhibitor interactions using in silico simulations. In this work, we describe a computational approach based on homology modeling, docking, and molecular dynamics simulation to derive a predictive 3D model of PDE11. Using a Graphical Processing Unit architecture, it is possible to perform long simulations, find stable interactions involved in the complex, and finally to suggest guideline for the identification and synthesis of potent and selective inhibitors.
机译:磷酸二酯酶11(PDE11)是待鉴定的PDEs家族的最新同工型,对环状腺苷单磷酸和环状鸟苷单磷酸都起作用。关于PDE11的最初报道发现在骨骼肌,前列腺,睾丸和唾液腺中有PDE11表达的证据。然而,PDE11的组织分布仍然是一个活跃的研究话题和一些争议。考虑到PDE11和PDE5之间的序列相似性,已显示几种PDE5抑制剂可与PDE11交叉反应。因此,已经记录了许多非选择性抑制剂,例如IBMX,zaprinast,西地那非和潘生丁抑制PDE11。仅在最近,一系列二氢噻吩并[3,2-d]嘧啶-4(3H)-衍生物被证明对PDE11同工型具有选择性。在缺乏有关PDE11 X射线结构的实验数据的情况下,我们发现有趣的是使用计算机模拟来更好地了解酶-抑制剂的相互作用。在这项工作中,我们描述了一种基于同源性建模,对接和分子动力学模拟的计算方法,以得出PDE11的预测性3D模型。使用图形处理单元架构,可以进行长时间的模拟,找到复杂的稳定相互作用,最后为有效和选择性抑制剂的鉴定和合成提供指导。

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