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KCNQ2/3 开放剂对多种 KCNQ 通道表现出不同的选择性和作用部位。

KCNQ2/3 openers show differential selectivity and site of action across multiple KCNQ channels.

机构信息

Neuroscience Research, Global Pharmaceutical Research and Development, Abbott Laboratories, Abbott Park, IL 60064-6118, USA.

出版信息

J Neurosci Methods. 2011 Aug 30;200(1):54-62. doi: 10.1016/j.jneumeth.2011.06.014. Epub 2011 Jun 23.

Abstract

KCNQ2/3 voltage-gated potassium channels conduct low-threshold, slowly activating and non-inactivating currents to repolarize the neuronal resting membrane potential. The channels negatively regulate neuronal excitability and KCNQ2/3 openers are efficacious in hyperexcited states such as epilepsy and pain. We developed and utilized thallium influx assays to profile novel KCNQ2/3 channel openers with respect to selectivity across KCNQ subtypes and on requirement for tryptophan 236 of KCNQ2, a critical residue for activity of the KCNQ opener retigabine. Using distinct chemical series of openers, a quinazolinone series showed relatively poor selectivity across multiple KCNQ channels and lacked activity at the KCNQ2(W236L) mutant channel. In contrast, several novel benzimidazole openers showed selectivity for KCNQ2/3 and KCNQ2 and retain activity at KCNQ2(W236L). Profiling of several hundred KCNQ2/3 openers across multiple diverse chemical series revealed that openers show differential degrees of selectivity across subtypes, with selectivity most difficult to achieve against KCNQ2. In addition, we report the significant finding that KCNQ openers can pharmacologically differentiate between homomeric and heteromeric channels containing subtypes in common. Moreover, most openers assayed were dependent on the W236 for activity, whereas only a small number appear to use a distinct mechanism. Collectively, we provide novel insights into the molecular pharmacology of KCNQ channels by demonstrating differential selectivity and site of action for KCNQ2/3 openers. The high-throughput thallium influx assays should prove useful for rapid characterization of KCNQ openers and in guiding efforts to identify selective compounds for advancement towards the clinic.

摘要

KCNQ2/3 电压门控钾通道传导低阈值、缓慢激活和非失活电流,以使神经元静息膜电位复极化。这些通道负调节神经元兴奋性,KCNQ2/3 开放剂在癫痫和疼痛等过度兴奋状态下有效。我们开发并利用铊内流测定法,针对 KCNQ 亚型的选择性以及对 KCNQ2 第 236 位色氨酸的需求,对新型 KCNQ2/3 通道开放剂进行了分析,该残基对 KCNQ 开放剂 retigabine 的活性至关重要。使用不同的开放剂化学系列,喹唑啉酮系列在多个 KCNQ 通道中显示出相对较差的选择性,并且在 KCNQ2(W236L)突变通道中没有活性。相比之下,几种新型苯并咪唑开放剂对 KCNQ2/3 和 KCNQ2 具有选择性,并保留在 KCNQ2(W236L)上的活性。对数百种 KCNQ2/3 开放剂在多个不同化学系列中的分析表明,开放剂在亚型之间显示出不同程度的选择性,对 KCNQ2 的选择性最难实现。此外,我们报告了一个重要发现,即 KCNQ 开放剂可以在药理学上区分含有共同亚型的同型和异型通道。此外,大多数测定的开放剂都依赖于 W236 发挥作用,而只有少数几个似乎采用了不同的机制。总的来说,我们通过证明 KCNQ2/3 开放剂对 KCNQ 通道具有不同的选择性和作用部位,为 KCNQ 通道的分子药理学提供了新的见解。高通量铊内流测定法应该对快速鉴定 KCNQ 开放剂和指导识别选择性化合物以推进临床应用具有重要意义。

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