Computational and Structural Chemistry, Merck & Co., Inc., Kenilworth, NJ 07033.
Computational and Structural Chemistry, Merck & Co., Inc., West Point, PA 19486.
Proc Natl Acad Sci U S A. 2023 Oct 17;120(42):e2220029120. doi: 10.1073/pnas.2220029120. Epub 2023 Oct 9.
Voltage-gated potassium channels (Kv) are tetrameric membrane proteins that provide a highly selective pathway for potassium ions (K) to diffuse across a hydrophobic cell membrane. These unique voltage-gated cation channels detect changes in membrane potential and, upon activation, help to return the depolarized cell to a resting state during the repolarization stage of each action potential. The Kv3 family of potassium channels is characterized by a high activation potential and rapid kinetics, which play a crucial role for the fast-spiking neuronal phenotype. Mutations in the Kv3.1 channel have been shown to have implications in various neurological diseases like epilepsy and Alzheimer's disease. Moreover, disruptions in neuronal circuitry involving Kv3.1 have been correlated with negative symptoms of schizophrenia. Here, we report the discovery of a novel positive modulator of Kv3.1, investigate its biophysical properties, and determine the cryo-EM structure of the compound in complex with Kv3.1. Structural analysis reveals the molecular determinants of positive modulation in Kv3.1 channels by this class of compounds and provides additional opportunities for rational drug design for the treatment of associated neurological disorders.
电压门控钾通道(Kv)是四聚体膜蛋白,为钾离子(K)穿过疏水性细胞膜提供了高度选择性的途径。这些独特的电压门控阳离子通道检测细胞膜电位的变化,并且在激活后,有助于在每个动作电位的复极化阶段将去极化的细胞返回到静止状态。Kv3 家族的钾通道的特征在于高激活电位和快速动力学,这对于快速尖峰神经元表型起着至关重要的作用。已经表明 Kv3.1 通道的突变与癫痫和阿尔茨海默病等各种神经疾病有关。此外,涉及 Kv3.1 的神经元电路的中断与精神分裂症的阴性症状相关。在这里,我们报告了一种新型 Kv3.1 正向调节剂的发现,研究了其生物物理特性,并确定了该化合物与 Kv3.1 复合物的冷冻电镜结构。结构分析揭示了此类化合物对 Kv3.1 通道正向调节的分子决定因素,并为治疗相关神经疾病的合理药物设计提供了额外的机会。