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TRESK 和 TREK-2 双孔钾通道亚基在初级躯体感觉神经元中形成功能性异二聚体。

TRESK and TREK-2 two-pore-domain potassium channel subunits form functional heterodimers in primary somatosensory neurons.

机构信息

Department of Physiology, Faculty of Medicine, Semmelweis University, Budapest, Hungary.

Department of Molecular Physiology and Biophysics, Vanderbilt University School of Medicine, Nashville, Tennessee, USA.

出版信息

J Biol Chem. 2020 Aug 28;295(35):12408-12425. doi: 10.1074/jbc.RA120.014125. Epub 2020 Jul 7.

DOI:10.1074/jbc.RA120.014125
PMID:32641496
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7458809/
Abstract

Two-pore-domain potassium channels (K) are the major determinants of the background potassium conductance. They play a crucial role in setting the resting membrane potential and regulating cellular excitability. These channels form homodimers; however, a few examples of heterodimerization have also been reported. The K channel subunits TRESK and TREK-2 provide the predominant background potassium current in the primary sensory neurons of the dorsal root and trigeminal ganglia. A recent study has shown that a TRESK mutation causes migraine because it leads to the formation of a dominant negative truncated TRESK fragment. Surprisingly, this fragment can also interact with TREK-2. In this study, we determined the biophysical and pharmacological properties of the TRESK/TREK-2 heterodimer using a covalently linked TRESK/TREK-2 construct to ensure the assembly of the different subunits. The tandem channel has an intermediate single-channel conductance compared with the TRESK and TREK-2 homodimers. Similar conductance values were recorded when TRESK and TREK-2 were coexpressed, demonstrating that the two subunits can spontaneously form functional heterodimers. The TRESK component confers calcineurin-dependent regulation to the heterodimer and gives rise to a pharmacological profile similar to the TRESK homodimer, whereas the presence of the TREK-2 subunit renders the channel sensitive to the selective TREK-2 activator T2A3. In trigeminal primary sensory neurons, we detected single-channel activity with biophysical and pharmacological properties similar to the TRESK/TREK-2 tandem, indicating that WT TRESK and TREK-2 subunits coassemble to form functional heterodimeric channels also in native cells.

摘要

双孔钾通道(K)是背景钾电导的主要决定因素。它们在设定静息膜电位和调节细胞兴奋性方面起着至关重要的作用。这些通道形成同源二聚体;然而,也有一些异二聚化的例子被报道。K 通道亚基 TRESK 和 TREK-2 提供了背根和三叉神经节初级感觉神经元中主要的背景钾电流。最近的一项研究表明,TRESK 突变会导致偏头痛,因为它导致显性负截断 TRESK 片段的形成。令人惊讶的是,该片段还可以与 TREK-2 相互作用。在这项研究中,我们使用共价连接的 TRESK/TREK-2 构建体来确定 TRESK/TREK-2 异二聚体的生物物理和药理学特性,以确保不同亚基的组装。串联通道的单通道电导介于 TRESK 和 TREK-2 同源二聚体之间。当 TRESK 和 TREK-2 共表达时,记录到相似的电导值,表明这两个亚基可以自发形成功能性异二聚体。TRESK 组成部分赋予异二聚体钙调神经磷酸酶依赖性调节,并产生与 TRESK 同源二聚体相似的药理学特征,而 TREK-2 亚基的存在使通道对选择性 TREK-2 激活剂 T2A3 敏感。在三叉神经初级感觉神经元中,我们检测到具有与 TRESK/TREK-2 串联相似的生物物理和药理学特性的单通道活性,表明 WT TRESK 和 TREK-2 亚基在天然细胞中也共同组装形成功能性异二聚体通道。

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本文引用的文献

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Brain. 2019 Dec 1;142(12):3852-3867. doi: 10.1093/brain/awz342.
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The Role of TRESK in Discrete Sensory Neuron Populations and Somatosensory Processing.TRESK在离散感觉神经元群体和躯体感觉处理中的作用。
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TRESK background potassium channel is not gated at the helix bundle crossing near the cytoplasmic end of the pore.TRESK 背景钾通道在靠近孔细胞质末端的螺旋束交叉处不门控。
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Formation of Functional Heterodimers by TREK-1 and TREK-2 Two-pore Domain Potassium Channel Subunits.由TREK-1和TREK-2双孔结构域钾通道亚基形成功能性异源二聚体
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Mixing and matching TREK/TRAAK subunits generate heterodimeric K2P channels with unique properties.混合搭配 TREK/TRAAK 亚基可产生具有独特特性的异二聚体 K2P 通道。
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