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三氯生是一种 KCNQ3 钾通道激活剂。

Triclosan is a KCNQ3 potassium channel activator.

机构信息

CONACYT, School of Medicine of Universidad Autónoma de San Luis Potosí, Ave. V. Carranza 2405, Los Filtros San Luis Potosi, 78290, SLP, Mexico.

Center for Membrane Biology, Department of Biochemistry and Molecular Biology, University of Texas Health Science Center at Houston, Houston, TX, 77030, USA.

出版信息

Pflugers Arch. 2022 Jul;474(7):721-732. doi: 10.1007/s00424-022-02692-w. Epub 2022 Apr 22.

Abstract

KCNQ channels participate in the physiology of several cell types. In neurons of the central nervous system, the primary subunits are KCNQ2, 3, and 5. Activation of these channels silence the neurons, limiting action potential duration and preventing high-frequency action potential burst. Loss-of-function mutations of the KCNQ channels are associated with a wide spectrum of phenotypes characterized by hyperexcitability. Hence, pharmacological activation of these channels is an attractive strategy to treat epilepsy and other hyperexcitability conditions as are the evolution of stroke and traumatic brain injury. In this work we show that triclosan, a bactericide widely used in personal care products, activates the KCNQ3 channels but not the KCNQ2. Triclosan induces a voltage shift in the activation, increases the conductance, and slows the closing of the channel. The response is independent of PIP. Molecular docking simulations together with site-directed mutagenesis suggest that the putative binding site is in the voltage sensor domain. Our results indicate that triclosan is a new activator for KCNQ channels.

摘要

KCNQ 通道参与多种细胞类型的生理功能。在中枢神经系统的神经元中,主要亚基为 KCNQ2、3 和 5。这些通道的激活使神经元沉默,限制动作电位持续时间并防止高频动作电位爆发。KCNQ 通道的功能丧失突变与广泛的表型相关,其特征为过度兴奋。因此,这些通道的药理学激活是治疗癫痫和其他过度兴奋疾病的有吸引力的策略,如中风和创伤性脑损伤的演变。在这项工作中,我们表明,三氯生,一种广泛用于个人护理产品的杀菌剂,激活 KCNQ3 通道,但不激活 KCNQ2。三氯生诱导激活中的电压移位,增加电导,并减缓通道关闭。该反应独立于 PIP。分子对接模拟和定点突变表明,假定的结合位点在电压传感器结构域。我们的结果表明,三氯生是 KCNQ 通道的一种新型激活剂。

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