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Surface Binding Energy Landscapes Affect Phosphodiesterase Isoform-Specific Inhibitor Selectivity

机译:表面结合能格局影响磷酸二酯酶同工型特异性抑制剂的选择性。

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As human phosphodiesterase (PDE) proteins are attractive drug targets, a large number of selective PDE inhibitors have been developed. However, since the catalytic sites of PDE isoforms are conserved in sequence and structure, it remains unclear how these inhibitors discriminate PDE isoforms in a selective manner. Here we perform long-time scale molecular dynamics (MD) simulations to investigate the spontaneous association processes of a highly selective PDE2A inhibitor (BAY60–7550) with the catalytic pockets of six PDE isoforms. We found that the free-energy landscapes of PDE:BAY60–7550 interactions on the PDE surfaces are very different between various PDE isoforms; and the free-energy landscape of PDE2A forms a favorable low-energy pathway that not only drives BAY60–7550 toward the target binding site, but also guides BAY60–7750 to adopt its native binding conformation known from crystal structure. Thus, this study reveals that the inhibitor interactions with the PDE surface residues play an important role in its high selectivity for PDE2A, and thereby provides new fundamental insights into the PDE isoform-specific inhibitor selectivity.
机译:由于人磷酸二酯酶(PDE)蛋白是有吸引力的药物靶标,因此已经开发了许多选择性PDE抑制剂。然而,由于PDE同工型的催化位点在序列和结构上是保守的,因此尚不清楚这些抑制剂如何以选择性方式区分PDE同工型。在这里,我们进行长时间的分子动力学(MD)模拟,以研究高选择性PDE2A抑制剂(BAY60–7550)与六个PDE同工型的催化口袋的自发缔合过程。我们发现,PDE表面上的PDE:BAY60–7550相互作用的自由能态在各种PDE亚型之间是非常不同的。 PDE2A的自由能态形成了一条有利的低能途径,不仅驱动BAY60–7550趋向目标结合位点,而且引导BAY60–7750采用其晶体结构已知的天然结合构象。因此,这项研究表明抑制剂与PDE表面残基的相互作用在其对PDE2A的高选择性中起着重要作用,从而为PDE同工型特异性抑制剂的选择性提供了新的基础见解。

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