Beaugrand Maïwenn, Arnold Alexandre A, Bourgault Steve, Williamson Philip T F, Marcotte Isabelle
Department of Chemistry, Université du Québec à Montréal, Downtown Station, PO Box 8888, Montreal, H3C 3P8, Canada.
School of Biological Sciences, Highfield Campus, University of Southampton, Southampton, SO17 1BJ, UK.
Eur Biophys J. 2017 Sep;46(6):549-559. doi: 10.1007/s00249-017-1201-2. Epub 2017 Mar 17.
The hERG channel is a voltage-gated potassium channel found in cardiomyocytes that contributes to the repolarization of the cell membrane following the cardiac action potential, an important step in the regulation of the cardiac cycle. The lipids surrounding K channels have been shown to play a key role in their regulation, with anionic lipids shown to alter gating properties. In this study, we investigate how anionic lipids interact with the pore helix of hERG and compare the results with those from Kv1.5, which possesses a pore helix more typical of K channels. Circular dichroism studies of the pore helix secondary structure reveal that the presence of the anionic lipid DMPS within the bilayer results in a slight unfolding of the pore helices from both hERG and Kv1.5, albeit to a lesser extent for Kv1.5. In the presence of anionic lipids, the two pore helices exhibit significantly different interactions with the lipid bilayer. We demonstrate that the pore helix from hERG causes significant perturbation to the order in lipid bicelles, which contrasts with only small changes observed for Kv1.5. These observations suggest that the atypical sequence of the pore helix of hERG may play a key role in determining how anionic lipids influence its gating.
hERG通道是一种在心肌细胞中发现的电压门控钾通道,它有助于在心脏动作电位后使细胞膜复极化,这是调节心动周期的重要步骤。已证明钾通道周围的脂质在其调节中起关键作用,阴离子脂质可改变门控特性。在本研究中,我们研究了阴离子脂质如何与hERG的孔螺旋相互作用,并将结果与Kv1.5的结果进行比较,Kv1.5具有更典型的钾通道孔螺旋。对孔螺旋二级结构的圆二色性研究表明,双层膜中阴离子脂质DMPS的存在导致hERG和Kv1.5的孔螺旋都略有解折叠,尽管Kv1.5的解折叠程度较小。在阴离子脂质存在的情况下,两个孔螺旋与脂质双层表现出明显不同的相互作用。我们证明,hERG的孔螺旋会对脂质双分子层的有序性造成显著扰动,这与Kv1.5仅观察到的微小变化形成对比。这些观察结果表明,hERG孔螺旋的非典型序列可能在决定阴离子脂质如何影响其门控方面起关键作用。