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ASIC3 Channels in Multimodal Sensory Perception

机译:多模式感官感知中的ASIC3通道

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摘要

Acid-sensing ion channels (ASICs), which are members of the sodium-selective cation channels belonging to the epithelial sodium channel/degenerin (ENaC/DEG) family, act as membrane-bound receptors for extracellular protons as well as nonproton ligands. At least five ASIC subunits have been identified in mammalian neurons, which form both homotrimeric and heterotrimeric channels. The highly proton sensitive ASIC3 channels are predominantly distributed in peripheral sensory neurons, correlating with their roles in multimodal sensory perception, including nociception, mechanosensation, and chemosensation. Different from other ASIC subunit composing ion channels, ASIC3 channels can mediate a sustained window current in response to mild extracellular acidosis (pH 7.3−6.7), which often occurs accompanied by many sensory stimuli. Furthermore, recent evidence indicates that the sustained component of ASIC3 currents can be enhanced by nonproton ligands including the endogenous metabolite agmatine. In this review, we first summarize the growing body of evidence for the involvement of ASIC3 channels in multimodal sensory perception and then discuss the potential mechanisms underlying ASIC3 activation and mediation of sensory perception, with a special emphasis on its role in nociception. We conclude that ASIC3 activation and modulation by diverse sensory stimuli represent a new avenue for understanding the role of ASIC3 channels in sensory perception. Furthermore, the emerging implications of ASIC3 channels in multiple sensory dysfunctions including nociception allow the development of new pharmacotherapy.
机译:酸敏感离子通道(ASICs)是属于上皮钠通道/去氢肾上腺素(ENaC / DEG)家族的钠选择性阳离子通道的成员,充当细胞外质子和非质子配体的膜结合受体。在哺乳动物神经元中已经鉴定出至少五个ASIC亚基,它们形成同三聚体和异三聚体通道。对质子高度敏感的ASIC3通道主要分布在周围感觉神经元中,与其在多模态感觉知觉中的作用相关,包括伤害感受,机械感觉和化学感觉。与其他组成离子通道的ASIC亚基不同,ASIC3通道可介导持续的窗口电流,以响应轻度的细胞外酸中毒(pH 7.3-6.7),这种情况常伴随许多感觉刺激而发生。此外,最近的证据表明,包括内源性代谢物胍丁胺在内的非质子配体可以增强ASIC3电流的持续成分。在这篇综述中,我们首先总结了越来越多的证据表明ASIC3通道参与了多模式感觉知觉,然后讨论了ASIC3激活和感觉知觉介导的潜在机制,并特别强调了其在伤害感受中的作用。我们得出的结论是,通过各种感觉刺激对ASIC3的激活和调制代表了理解ASIC3通道在感觉感知中的作用的新途径。此外,ASIC3通道在包括伤害感受在内的多种感觉功能障碍中的新兴含义使得新药物疗法的发展成为可能。

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