Department of Anesthesiology, Weill Cornell Medical College, New York, NY, USA.
Department of Anesthesiology, Washington University School of Medicine in St. Louis, St. Louis, MO, USA.
Nat Commun. 2023 Feb 25;14(1):1077. doi: 10.1038/s41467-023-36765-w.
Tandem pore domain (K2P) potassium channels modulate resting membrane potentials and shape cellular excitability. For the mechanosensitive subfamily of K2Ps, the composition of phospholipids within the bilayer strongly influences channel activity. To examine the molecular details of K2P lipid modulation, we solved cryo-EM structures of the TREK1 K2P channel bound to either the anionic lipid phosphatidic acid (PA) or the zwitterionic lipid phosphatidylethanolamine (PE). At the extracellular face of TREK1, a PA lipid inserts its hydrocarbon tail into a pocket behind the selectivity filter, causing a structural rearrangement that recapitulates mutations and pharmacology known to activate TREK1. At the cytoplasmic face, PA and PE lipids compete to modulate the conformation of the TREK1 TM4 gating helix. Our findings demonstrate two distinct pathways by which anionic lipids enhance TREK1 activity and provide a framework for a model that integrates lipid gating with the effects of other mechanosensitive K2P modulators.
串联孔域 (K2P) 钾通道调节静息膜电位并影响细胞兴奋性。对于 K2P 家族中的机械敏感亚家族,双层中磷脂的组成强烈影响通道活性。为了研究 K2P 脂质调节的分子细节,我们解析了与阴离子脂质磷脂酸 (PA) 或两性离子脂质磷脂酰乙醇胺 (PE) 结合的 TREK1 K2P 通道的冷冻电镜结构。在 TREK1 的细胞外表面,PA 脂质将其烃尾插入选择性过滤器后面的口袋中,导致结构重排,重现了已知激活 TREK1 的突变和药理学。在细胞质表面,PA 和 PE 脂质竞争调节 TREK1 TM4 门控螺旋的构象。我们的发现表明阴离子脂质增强 TREK1 活性的两种不同途径,并为整合脂质门控与其他机械敏感 K2P 调节剂的作用的模型提供了框架。