State-dependent inhibition of Nav1.8 channels by VX-150 and VX-548.

IF 3.2 3区 医学 Q2 PHARMACOLOGY & PHARMACY
Patric Vaelli, Akie Fujita, Sooyeon Jo, Han-Xiong Bear Zhang, Tomás Osorno, Xiao Ma, Bruce P Bean
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引用次数: 0

Abstract

Nav1.8 channels are an attractive therapeutic target for pain because they are prominent in primary pain-sensing neurons with little expression in most other kinds of neurons. Recently, two Nav1.8-targeted compounds, VX-150 and VX-548, have shown efficacy in clinical trials for reducing pain. We examined the characteristics of Nav1.8 inhibition by these compounds. The active metabolite form of VX-150 (VX-150m) inhibited human Nav1.8 channels with an IC50 of 15 nM. VX-548 (suzetrigine) was even more potent (IC50 0.27 nM). Both VX-150m and VX-548 had the unusual property of "reverse use-dependence", whereby inhibition could be relieved by repetitive depolarizations, a property seen before with another Nav1.8 inhibitor, A-887826. The relief of VX-548 inhibition by large depolarizations occurred with a time constant of ~40 ms that was not concentration-dependent. Re-inhibition at negative voltages occurred with a rate that was nearly proportional to drug concentration, consistent with the idea that relief of inhibition reflects dissociation of drug from the channel and re-inhibition reflects re-binding. The relief of inhibition by depolarization suggests a remarkably strong and unusual state-dependence for both VX-150m and VX-548, with very weak binding to channels with fully activated voltage sensors despite very tight binding to channels with voltage sensors in the resting state. Significance Statement The Nav1.8 sodium channel is a current target for new drugs for pain. This work describes the potency, selectivity, and state-dependent characteristics of inhibition of Nav1.8 channels by VX-150 and VX-548, compounds that have recently shown efficacy for relief of pain in clinical trials but whose mechanism of interaction with channels has not been described. The results show that the compounds share an unusual property whereby inhibition is relieved by depolarization, demonstrating a state-dependence different than most sodium channel inhibitors.

Nav1.8 通道是一种有吸引力的疼痛治疗靶点,因为它们在原发性痛觉神经元中表现突出,而在大多数其他类型的神经元中几乎没有表达。最近,两种以 Nav1.8 为靶点的化合物 VX-150 和 VX-548 在临床试验中显示出了减轻疼痛的疗效。我们研究了这些化合物抑制 Nav1.8 的特性。VX-150 的活性代谢物形式(VX-150m)抑制人类 Nav1.8 通道的 IC50 为 15 nM。VX-548(suzetrigine)的抑制作用更强(IC50 0.27 nM)。VX-150m 和 VX-548 都具有不寻常的 "反向使用依赖性",即重复去极化可以缓解抑制作用。大的去极化对 VX-548 抑制作用的缓解时间常数约为 40 毫秒,与浓度无关。负电压下的再抑制发生率几乎与药物浓度成正比,这与抑制的缓解反映了药物与通道的解离,而再抑制反映了再结合的观点一致。通过去极化解除抑制表明,VX-150m 和 VX-548 都具有非常强且不寻常的状态依赖性,与完全激活的电压传感器通道的结合非常弱,但与静息状态下的电压传感器通道的结合非常紧密。意义声明 Nav1.8 钠通道是目前治疗疼痛新药的靶点。这项研究描述了 VX-150 和 VX-548 抑制 Nav1.8 通道的效力、选择性和状态依赖性特征,这两种化合物最近在临床试验中显示出缓解疼痛的功效,但其与通道的相互作用机制尚未得到描述。研究结果表明,这两种化合物都有一个不寻常的特性,即抑制作用会因去极化而缓解,显示出与大多数钠通道抑制剂不同的状态依赖性。
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来源期刊
Molecular Pharmacology
Molecular Pharmacology 医学-药学
CiteScore
7.20
自引率
2.80%
发文量
50
审稿时长
3-6 weeks
期刊介绍: Molecular Pharmacology publishes findings derived from the application of innovative structural biology, biochemistry, biophysics, physiology, genetics, and molecular biology to basic pharmacological problems that provide mechanistic insights that are broadly important for the fields of pharmacology and toxicology. Relevant topics include: Molecular Signaling / Mechanism of Drug Action Chemical Biology / Drug Discovery Structure of Drug-Receptor Complex Systems Analysis of Drug Action Drug Transport / Metabolism
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