Grilo Liliana Sintra, Carrupt Pierre-Alain, Daina Antoine
School of Pharmaceutical Sciences, University of Geneva, University of Lausanne 30, Quai Ernest-Ansermet CH-1211 Geneva 4.
Chimia (Aarau). 2010;64(3):165-9. doi: 10.2533/chimia.2010.165.
In the heart, the hERG voltage-gated potassium channel mediates the I(Kr) current, which is crucial for the duration of cardiac action potential. Undesired block of the channel may prolong the QT interval with increased risk of malignant ventricular arrhythmia called torsades de pointes. Although the molecular determinants of hERG block are intensively studied, stereoselectivity has been poorly investigated. Levo-(S)-bupivacaine was the first drug reported to have higher affinity for hERG than its enantiomer. This study aims at understanding the principles underlying the stereoselectivity of bupivacaine block with the help of molecular modeling. Putative binding modes of levo-(S)- and dextro-(R)-bupivacaine inside an open form model of hERG channel were predicted by docking simulations, allowing a clear depiction of ligand-protein interactions. Estimated binding energies for both enantiomers to wild-type channel are in line with previously published electrophysiology measurements. These results may be considered as a confirmation at the molecular level of bupivacaine stereoselective binding towards hERG. Moreover this information lays the foundations for a structural guideline to filter out potentially cardiotoxic drug candidates in silico.
在心脏中,人醚 - 去极化激活的钾离子通道(hERG)介导快速延迟整流钾电流(I(Kr)),这对心脏动作电位的持续时间至关重要。该通道的意外阻断可能会延长QT间期,增加发生名为尖端扭转型室性心动过速的恶性室性心律失常的风险。尽管对hERG阻断的分子决定因素进行了深入研究,但立体选择性方面的研究却很少。左旋(S)-布比卡因是首个被报道对hERG的亲和力高于其对映体的药物。本研究旨在借助分子建模来理解布比卡因阻断的立体选择性背后的原理。通过对接模拟预测了左旋(S)-和右旋(R)-布比卡因在hERG通道开放形式模型内的假定结合模式,从而能够清晰地描绘配体 - 蛋白质相互作用。两种对映体与野生型通道的估计结合能与先前发表的电生理学测量结果一致。这些结果可被视为布比卡因对hERG立体选择性结合在分子水平上的一种证实。此外,这些信息为在计算机上筛选潜在心脏毒性候选药物的结构指导原则奠定了基础。