Cui Meng, Lu Yongcheng, Ma Xinyi, Logothetis Diomedes E
Department of Pharmaceutical Sciences, School of Pharmacy, Bouvé College of Health Sciences, Northeastern University, Boston, MA, United States.
Center for Drug Discovery, Northeastern University, Boston, MA, United States.
Front Physiol. 2024 Oct 18;15:1486362. doi: 10.3389/fphys.2024.1486362. eCollection 2024.
Cholesterol, an essential lipid of cell membranes, regulates G protein-gated inwardly rectifying potassium (GIRK) channel activity. Previous studies have shown that cholesterol activates GIRK2 homotetrameric channels, which are expressed in dopaminergic neurons of the brain. Deletion of GIRK2 channels affects both GIRK2 homo- and heterotetrames and can lead to abnormal neuronal excitability, including conditions such as epilepsy and addiction. A 3.5 Å cryo-EM structure of GIRK2 in complex with CHS (cholesteryl hemisuccinate) and PIP (phosphatidylinositol 4,5-bisphosphate) has been solved. This structure provides the opportunity to study GIRK2 channel gating dynamics regulated by cholesterol using gating molecular dynamics (GMD) simulations. In the present study, we conducted microsecond-long GMD simulations on the GIRK2 channel in its APO, PIP, and PIP/CHS bound states, followed by systematic analysis to gain molecular insights into how CHS modulates GIRK2 channel gating. We found that CHS binding facilitates GIRK2 channel opening, with 43 K ion permeation events observed, compared to 0 and 2 K ion permeation events for GIRK2-APO and GIRK2/PIP, respectively. Binding of CHS to the GIRK2 channel enhances PIP and channel interactions, which is consistent with previous experimental results. The negatively charged PIP alters the internal electrostatic potential field in the channel and lowers the negative free energy barrier for K ion permeation.
胆固醇是细胞膜的一种必需脂质,可调节G蛋白门控内向整流钾(GIRK)通道的活性。先前的研究表明,胆固醇可激活在大脑多巴胺能神经元中表达的GIRK2同四聚体通道。GIRK2通道的缺失会影响GIRK2同四聚体和异四聚体,并可能导致神经元兴奋性异常,包括癫痫和成瘾等情况。已解析出与胆固醇半琥珀酸酯(CHS)和磷脂酰肌醇4,5-二磷酸(PIP)结合的GIRK2的3.5 Å冷冻电镜结构。该结构为利用门控分子动力学(GMD)模拟研究胆固醇调节的GIRK2通道门控动力学提供了机会。在本研究中,我们对处于无配体、PIP和PIP/CHS结合状态的GIRK2通道进行了微秒级的GMD模拟,随后进行系统分析,以深入了解CHS如何调节GIRK2通道门控的分子机制。我们发现,CHS结合促进了GIRK2通道的开放,观察到43次钾离子渗透事件,而GIRK2-无配体和GIRK2/PIP分别为0次和2次钾离子渗透事件。CHS与GIRK2通道的结合增强了PIP与通道的相互作用,这与先前的实验结果一致。带负电荷的PIP改变了通道内的静电势场,降低了钾离子渗透的负自由能垒。