Institute of Physiology and Pathophysiology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Bavaria, Germany.
PLoS One. 2012;7(7):e41667. doi: 10.1371/journal.pone.0041667. Epub 2012 Jul 27.
Bisphenol A (BPA) has attracted considerable public attention as it leaches from plastic used in food containers, is detectable in human fluids and recent epidemiologic studies link BPA exposure with diseases including cardiovascular disorders. As heart-toxicity may derive from modified cardiac electrophysiology, we investigated the interaction between BPA and hNav1.5, the predominant voltage-gated sodium channel subtype expressed in the human heart. Electrophysiology studies of heterologously-expressed hNav1.5 determined that BPA blocks the channel with a K(d) of 25.4±1.3 µM. By comparing the effects of BPA and the local anesthetic mexiletine on wild type hNav1.5 and the F1760A mutant, we demonstrate that both compounds share an overlapping binding site. With a key binding determinant thus identified, an homology model of hNav1.5 was generated based on the recently-reported crystal structure of the bacterial voltage-gated sodium channel NavAb. Docking predictions position both ligands in a cavity delimited by F1760 and contiguous with the DIII-IV pore fenestration. Steered molecular dynamics simulations used to assess routes of ligand ingress indicate that the DIII-IV pore fenestration is a viable access pathway. Therefore BPA block of the human heart sodium channel involves the local anesthetic receptor and both BPA and mexiletine may enter the closed-state pore via membrane-located side fenestrations.
双酚 A(BPA)从用于食品容器的塑料中浸出,可在人体液中检测到,最近的流行病学研究将 BPA 暴露与包括心血管疾病在内的疾病联系起来,因此引起了公众的极大关注。由于心脏毒性可能源于心脏电生理学的改变,我们研究了 BPA 与 hNav1.5 之间的相互作用,hNav1.5 是人类心脏中表达的主要电压门控钠通道亚型。异源表达的 hNav1.5 的电生理学研究表明,BPA 以 25.4±1.3 µM 的 K(d) 阻断该通道。通过比较 BPA 和局部麻醉剂美西律对野生型 hNav1.5 和 F1760A 突变体的影响,我们证明这两种化合物具有重叠的结合位点。通过确定关键的结合决定因素,基于最近报道的细菌电压门控钠通道 NavAb 的晶体结构生成了 hNav1.5 的同源模型。对接预测将两种配体定位在由 F1760 限定并与 DIII-IV 孔窗相通的腔中。用于评估配体进入途径的导向分子动力学模拟表明,DIII-IV 孔窗是可行的进入途径。因此,BPA 阻断人心钠通道涉及局部麻醉剂受体,BPA 和美西律都可以通过膜侧窗进入关闭状态的孔。