首页> 外文期刊>The Journal of Physiology >TRESK two-pore-domain K+ channels constitute a significant component of background potassium currents in murine dorsal root ganglion neurones.
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TRESK two-pore-domain K+ channels constitute a significant component of background potassium currents in murine dorsal root ganglion neurones.

机译:TRESK两孔域K +通道构成了小鼠背根神经节神经元背景钾电流的重要组成部分。

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摘要

TRESK (TWIK-related spinal cord K(+) channel) is the most recently identified member of the two-pore-domain potassium channel (K(2P)) family, the molecular source of background potassium currents. Human TRESK channels are not affected by external acidification. However, the mouse orthologue displays moderate pH dependence isolated to a single histidine residue adjacent to the GYG selectivity filter. In the human protein, sequence substitution of tyrosine by histidine at this critical position generated a mutant that displays almost identical proton sensitivity compared with mouse TRESK. In contrast to human TRESK, which is specifically located in spinal cord, we detected mouse TRESK (mTRESK) mRNA in several epithelial and neuronal tissues including lung, liver, kidney, brain and spinal cord. As revealed by endpoint and quantitative RT-PCR, mTRESK channels are mainly expressed in dorsal root ganglia (DRG) and on the transcript level represent the most important background potassium channel in this tissue. DRG neurones of all sizes were labelled by in situ hybridizations with TRESK-specific probes. In DRG neurones of TRESK[G339R] functional knock-out (KO) mice the standing outward current IK(so) was significantly reduced compared with TRESK wild-type (WT) littermates. Different responses to K(2P) channel regulators such as bupivacaine, extracellular protons and quinidine corroborated the finding that approximately 20% of IK(so) is carried by TRESK channels. Unexpectedly, we found no difference in resting membrane potential between DRG neurones of TRESK[WT] and TRESK[G339R] functional KO mice. However, in current-clamp recordings we observed significant changes in action potential duration and amplitude of after-hyperpolarization. Most strikingly, cellular excitability of DRG neurones from functional KO mice was significantly augmented as revealed by reduced rheobase current to elicit action potentials.
机译:TRESK(与TWIK相关的脊髓K(+)通道)是两孔域钾离子通道(K(2P))家族的最新成员,该家族是背景钾电流的分子来源。人TRESK通道不受外部酸化的影响。但是,小鼠直向同源物显示出中等的pH依赖性,该依赖性依赖于与GYG选择性滤膜相邻的单个组氨酸残基。在人类蛋白质中,在此关键位置酪氨酸被组氨酸序列取代产生了一个突变体,与小鼠TRESK相比,该突变体显示出几乎相同的质子敏感性。与专门位于脊髓中的人TRESK相反,我们在几种上皮和神经元组织(包括肺,肝,肾,脑和脊髓)中检测到了小鼠TRESK(mTRESK)mRNA。正如终点和定量RT-PCR所揭示的,mTRESK通道主要在背根神经节(DRG)中表达,并且在转录水平上代表该组织中最重要的背景钾通道。通过与TRESK特异性探针的原位杂交来标记所有大小的DRG神经元。在TRESK [G339R]功能敲除(KO)小鼠的DRG神经元中,站立外向电流IK(so)与TRESK野生型(WT)同窝仔相比显着降低。对K(2P)通道调节剂(如布比卡因,细胞外质子和奎尼丁)的不同反应证实了TRESK通道携带IK(so)约20%的发现。出乎意料的是,我们发现TRESK [WT]和TRESK [G339R]功能性KO小鼠的DRG神经元之间的静息膜电位没有差异。但是,在电流钳记录中,我们观察到动作电位持续时间和超极化后幅度的显着变化。最显着的是,功能性KO小鼠的DRG神经元的细胞兴奋性显着增强,如流变碱电流降低引起的动作电位揭示。

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