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Influence of the N terminus on the biophysical properties and pharmacology of TREK1 potassium channels

机译:N末端对TREK1钾通道的生物物理特性和药理作用的影响

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TWIK-related K+ 1 (TREK1) potassium channels are members of the two-pore domain potassium channel family and contribute to background potassium conductances in many cell types, where their activity can be regulated by a variety of physiologic and pharmacologic mediators. Fenamates such as FFA (flufenamic acid; 2-{[3-(trifluoromethyl)phenyl]amino}benzoic acid), MFA [mefenamic acid; 2-(2,3-dimethylphenyl)aminobenzoic acid], NFA [niflumic acid; 2-{[3-(trifluoromethyl)phenyl]amino} nicotinic acid], and diclofenac [2-(2-(2,6-dichlorophenylamino) phenyl)acetic acid] and the related experimental drug BL-1249 [(5,6,7,8-tetrahydro-naphthalen-1-yl)-[2-(1H-tetrazol-5-yl)- phenyl]-amine] enhance the activity of TREK1 currents, and we show that BL-1249 is the most potent of these compounds. Alternative translation initiation produces a shorter, N terminus truncated form of TREK1 with a much reduced open probability and a proposed increased permeability to sodium compared with the longer form. We show that both forms of TREK1 can be activated by fenamates and that a number of mutations that affect TREK1 channel gating occlude the action of fenamates but only in the longer form of TREK1. Furthermore, fenamates produce a marked enhancement of current through the shorter, truncated form of TREK1 and reveal a K1-selective channel, like the long form. These results provide insight into the mechanism of TREK1 channel activation by fenamates, and, given the role of TREK1 channels in pain, they suggest a novel analgesic mechanism for these compounds.
机译:TWIK相关的K + 1(TREK1)钾通道是两孔域钾通道家族的成员,并且在许多细胞类型中促进背景钾电导,在这些细胞中,它们的活性可以通过多种生理和药理介质来调节。诸如FFA(氟苯那酸; 2-{[3-(三氟甲基)苯基]氨基}苯甲酸),MFA [甲芬那酸;等等。 2-(2,3-二甲基苯基)氨基苯甲酸],NFA [尼氟酸; 2-{[3-(三氟甲基)苯基]氨基}烟酸和双氯芬酸[2-(2-(2,6-二氯苯基氨基)苯基]乙酸]和相关的实验药物BL-1249 [(5,6 ,7,8-四氢萘-1-基)-[2-(1H-四唑-5-基)-苯基]-胺]增强TREK1电流的活性,我们证明BL-1249是最有效的这些化合物。可选择的翻译起始产生较短的,N末端截短的TREK1形式,与较长形式相比,其打开可能性大大降低,并且建议的钠渗透性增加。我们表明,TREK1的两种形式都可以被女性激活,并且影响TREK1通道门控的许多突变会阻塞女性的行为,但仅在TREK1的较长形式中起作用。此外,藻类通过较短的截短形式的TREK1产生明显的电流增强,并显示出K1选择性通道,如长形式。这些结果提供了洞察力激活TREK1通道的机制,并且鉴于TREK1通道在疼痛中的作用,他们提出了这些化合物的新型镇痛机制。

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