Weir Greg A, Pettingill Philippa, Wu Yukyee, Duggal Galbha, Ilie Andrei-Sorin, Akerman Colin J, Cader M Zameel
Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, United Kingdom.
Department of Pharmacology, University of Oxford, Oxford, United Kingdom.
Front Mol Neurosci. 2019 Jul 17;12:170. doi: 10.3389/fnmol.2019.00170. eCollection 2019.
Two-pore domain K (K) channels generate K leak current, which serves a vital role in controlling and modulating neuronal excitability. This diverse family of K channels exhibit distinct expression and function across neuronal tissues. TWIK-related spinal cord K channel (TRESK) is a K channel with a particularly enriched role in sensory neurons and pain pathways. Here, we explored the role of TRESK across molecularly distinct sensory neuron populations and assessed its contribution to different sensory modalities. We found TRESK mRNA only in select populations of C- and A-δ nociceptors, in addition to low threshold D-hair afferents. Neurons from mice in which TRESK has been ablated demonstrated marked hyperexcitability, which was amplified under inflammatory challenge. Detailed behavioral phenotyping of TRESK knockout mice revealed specific deficits in somatosensory processing of noxious and non-noxious stimuli. These results demonstrate novel roles of TRESK in somatosensory processing and offer important information to those wishing to target the channel for therapeutic means.
双孔结构域钾(K)通道产生钾离子泄漏电流,这在控制和调节神经元兴奋性方面起着至关重要的作用。这个多样化的钾通道家族在整个神经元组织中表现出不同的表达和功能。TWIK相关脊髓钾通道(TRESK)是一种在感觉神经元和疼痛通路中具有特别丰富作用的钾通道。在这里,我们探讨了TRESK在分子上不同的感觉神经元群体中的作用,并评估了其对不同感觉模态的贡献。我们发现TRESK mRNA仅存在于特定的C类和A-δ伤害性感受器群体中,以及低阈值D型毛传入神经元中。TRESK基因被敲除的小鼠的神经元表现出明显的过度兴奋性,在炎症刺激下这种兴奋性会增强。对TRESK基因敲除小鼠进行详细的行为表型分析,发现其在有害和无害刺激的体感处理方面存在特定缺陷。这些结果证明了TRESK在体感处理中的新作用,并为那些希望将该通道作为治疗靶点的人提供了重要信息。