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Acid-sensing ion channel (ASIC) structure and function: insights from spider, snake and sea anemone venoms

机译:酸敏感离子通道(ASIC)的结构和功能:蜘蛛,蛇和海葵毒液的见解

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摘要

Acid-sensing ion channels (ASICs) are proton-activated cation channels that are expressed in a variety of neuronal and non-neuronal tissues. As proton-gated channels, they have been implicated in many pathophysiological conditions where pH is perturbed. Venom derived compounds represent the most potent and selective modulators of ASICs described to date, and thus have been invaluable as pharmacological tools to study ASIC structure, function, and biological roles. There are now ten ASIC modulators described from animal venoms, with those from snakes and spiders favouring ASIC1, while the sea anemones preferentially target ASIC3. Some modulators, such as the prototypical ASIC1 modulator PcTx1 have been studied in great detail, while some of the newer members of the club remain largely unstudied. Here we review the current state of knowledge on venom derived ASIC modulators, with a particular focus on their molecular interaction with ASICs, what they have taught us about channel structure, and what they might still reveal about ASIC function and pathophysiological roles.
机译:酸敏感离子通道(ASICs)是质子激活的阳离子通道,在各种神经元和非神经元组织中表达。作为质子门控通道,它们与pH受到干扰的许多病理生理状况有关。毒液衍生的化合物代表了迄今为止描述的最有效和选择性的ASIC调节剂,因此作为研究ASIC结构,功能和生物学作用的药理学工具,其价值不可估量。现在,从动物毒液中描述了十种ASIC调制器,其中来自蛇和蜘蛛的ASIC调制器更偏爱ASIC1,而海葵则优先针对ASIC3。一些调制器,例如原型ASIC1调制器PcTx1,已经进行了详细的研究,而俱乐部的一些较新成员则仍未研究。在这里,我们回顾了有关毒液衍生的ASIC调节剂的当前知识状态,特别关注它们与ASIC的分子相互作用,它们对通道结构的教导以及它们仍可能揭示ASIC功能和病理生理作用的内容。

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