首页> 外文期刊>Journal of Medicinal Chemistry >Understanding the Molecular Basis of Toxin Promiscuity: The Analgesic Sea Anemone Peptide APETx2 Interacts with Acid-Sensing Ion Channel 3 and hERG Channels via Overlapping Pharmacophores
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Understanding the Molecular Basis of Toxin Promiscuity: The Analgesic Sea Anemone Peptide APETx2 Interacts with Acid-Sensing Ion Channel 3 and hERG Channels via Overlapping Pharmacophores

机译:了解毒素混杂的分子基础:止痛药海葵肽APETx2通过重叠药理剂与酸敏感离子通道3和hERG通道相互作用

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摘要

The sea anemone peptide APETx2 is a potent and selective blocker of acid-sensing ion channel 3 (ASIC3). APETx2 is analgesic in a variety of rodent pain models, but the lack of knowledge of its pharmacophore and binding site on ASIC3 has impeded development of improved analogues. Here we present a detailed structure-activity relationship study of APETx2. Determination of a high-resolution structure of APETx2 combined with scanning mutagenesis revealed a cluster of aromatic and basic residues that mediate its interaction with ASIC3. We show that APETx2 also inhibits the off-target hERG channel by reducing the maximal current amplitude and shifting the voltage dependence of activation to more positive potentials. Electrophysiological screening of selected APETx2 mutants revealed partial overlap between the surfaces on APETx2 that mediate its interaction with ASIC3 and hERG. Characterization of the molecular basis of these interactions is an important first step toward the rational design of more selective APETx2 analogues.
机译:海葵肽APETx2是酸敏感离子通道3(ASIC3)的有效和选择性阻滞剂。 APETx2在多种啮齿动物疼痛模型中均具有镇痛作用,但是对它的药效基团和ASIC3上结合位点的了解不足,阻碍了改进类似物的开发。在这里,我们介绍了APETx2的详细的构效关系研究。 APETx2高分辨率结构的确定与扫描诱变相结合,揭示了介导其与ASIC3相互作用的芳族和碱性残基簇。我们表明,APETx2还通过降低最大电流幅度并将激活的电压依赖性转移到更正的电位来抑制脱靶hERG通道。选定的APETx2突变体的电生理筛选显示,APETx2的表面之间存在部分重叠,介导其与ASIC3和hERG的相互作用。这些相互作用的分子基础的表征是朝着更具选择性的APETx2类似物进行合理设计的重要的第一步。

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