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Further Insights in the Binding Mode of Selective Inhibitors to Human PDE4D Enzyme Combining Docking and Molecular Dynamics

机译:选择性抑制剂对人PDE4D酶结合对接和分子动力学的结合模式的进一步见解。

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摘要

Alzheimer's disease has recently emerged as a possible field of application for PDE4D inhibitors (PDE4DIs). The great structure similarity among the various PDE4 isoforms and, furthermore, the lack of the full length crystal structure of the enzyme, impaired the rational design of new selective PDE4DIs. In this paper, with the aim of exploring new insights into the PDE4D binding, we tackled the problem by performing a computational study based on docking simulations combined with molecular dynamics (D-MD). Our work uniquely identified the binding mode and the key residues involved in the interaction with a number of in-house catechol iminoether derivatives, acting as PDE4DIs. Moreover, the new binding mode was tested using a series of analogues previously reported by us and it was used to confirm their key structural features to allow PDE4D inhibition. The binding model disclosed within the current computational study may prove to be useful to further advance the design and synthesis of novel, more potent and selective, PDE4D inhibitors.
机译:阿尔茨海默氏病最近已成为PDE4D抑制剂(PDE4DIs)的可能应用领域。各种PDE4同工型之间的巨大结构相似性,此外,缺乏酶的全长晶体结构,损害了新的选择性PDE4DI的合理设计。在本文中,为了探索对PDE4D结合的新见解,我们通过基于对接模拟与分子动力学(D-MD)相结合的计算研究来解决该问题。我们的工作独特地确定了与许多内部邻苯二酚亚氨基醚衍生物(作为PDE4DIs)相互作用时所涉及的结合模式和关键残基。此外,使用我们先前报道的一系列类似物测试了新的结合模式,并用于确认其关键结构特征以抑制PDE4D。当前计算研究中公开的结合模型可能被证明对进一步推进新型,更有效和选择性的PDE4D抑制剂的设计和合成很有用。

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