Department of Chemistry, University of Massachusetts, Amherst, Massachusetts 01003, United States.
J Chem Inf Model. 2024 Oct 14;64(19):7616-7625. doi: 10.1021/acs.jcim.4c01012. Epub 2024 Sep 12.
The Ca and voltage-gated big potassium (BK) channels are implicated in various diseases, including heart disease, asthma, epilepsy, and cancer, but remain an elusive drug target. A class of negatively charged activators (NCAs) have been demonstrated to promote the activation of several potassium channels including BK channels by binding to the hydrophobic inner pore, yet the underlying molecular mechanism of action remains poorly understood. In this work, we analyze the binding mode and potential activation mechanism of a specific NCA named NS11021 using atomistic simulations. The results show that NS11021 binding to the pore in deactivated BK channels is nonspecific and dynamic. The binding free energy of -8.3 ± 0.7 kcal/mol ( = 0.3-3.1 μM) calculated using umbrella sampling agrees quantitatively with the experimental EC50 range of 0.4-2.1 μM. The bound NS11021 remains dynamic and is distal from the filter to significantly impact its conformation. Instead, NS11021 binding significantly enhances the pore hydration due to the charged tetrazol-phenyl group, thereby promoting the opening of the hydrophobic gate. We further show that the free energy barrier to K permeation is reduced by ∼3 kcal/mol regardless of the binding pose, which could explain the ∼62-fold increase in the intrinsic opening of BK channels measured experimentally. Taken together, these results support the idea that the molecular mechanism of NS11021 derives from increasing the hydration level of the conformationally closed pore, which does not depend on specific binding and likely explains the ability of NCAs to activate multiple K channels.
钙和电压门控大钾 (BK) 通道与各种疾病有关,包括心脏病、哮喘、癫痫和癌症,但仍然是一个难以捉摸的药物靶点。已证明一类带负电荷的激活剂 (NCA) 通过结合疏水性内孔来促进包括 BK 通道在内的几种钾通道的激活,但作用的潜在分子机制仍知之甚少。在这项工作中,我们使用原子模拟分析了一种名为 NS11021 的特定 NCA 的结合模式和潜在激活机制。结果表明,NS11021 与失活 BK 通道中的孔结合是非特异性和动态的。使用伞状采样计算的结合自由能为-8.3 ± 0.7 kcal/mol(= 0.3-3.1 μM),与实验 EC50 范围 0.4-2.1 μM 定量一致。结合的 NS11021 仍然是动态的,并且远离过滤器,对其构象有很大影响。相反,由于带电荷的四唑-苯基基团,NS11021 结合显著增强了孔的水合作用,从而促进了疏水性门的打开。我们进一步表明,K 渗透的自由能障碍降低了约 3 kcal/mol,无论结合构象如何,这可以解释实验测量的 BK 通道固有开口增加约 62 倍。总之,这些结果支持了 NS11021 的分子机制源于增加构象关闭孔的水合水平的观点,这与特定结合无关,可能解释了 NCA 激活多种 K 通道的能力。