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首页> 外文期刊>The Journal of Physiology >Acid-sensing ion channels ASIC2 and ASIC3 do not contribute to mechanically activated currents in mammalian sensory neurones.
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Acid-sensing ion channels ASIC2 and ASIC3 do not contribute to mechanically activated currents in mammalian sensory neurones.

机译:酸感应离子通道ASIC2和ASIC3对哺乳动物感觉神经元中的机械激活电流没有贡献。

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摘要

The molecular basis of mechanosensory transduction by primary sensory neurones remains poorly understood. Amongst candidate transducer molecules are members of the acid-sensing ion channel (ASIC) family; nerve fibre recordings have shown ASIC2 and ASIC3 null mutants have aberrant responses to suprathreshold mechanical stimuli. Using the neuronal cell body as a model of the sensory terminal we investigated if ASIC2 or 3 contributed to mechanically activated currents in dorsal root ganglion (DRG) neurones. We cultured neurones from ASIC2 and ASIC3 null mutants and compared response properties with those of wild-type controls. Neuronal subpopulations [categorized by cell size, action potential duration and isolectin B4 (IB4) binding] generated distinct responses to mechanical stimulation consistent with their predicted in vivo phenotypes. In particular, there was a striking relationship between action potential duration and mechanosensitivity as has been observed in vivo. Putative low threshold mechanoreceptors exhibited rapidly adapting mechanically activated currents. Conversely, when nociceptors responded they displayed slowly or intermediately adapting currents that were smaller in amplitude than responses of low threshold mechanoreceptor neurones. No differences in current amplitude or kinetics were found between ASIC2 and/or ASIC3 null mutants and controls. Ruthenium red (5 microm) blocked mechanically activated currents in a voltage-dependent manner, with equal efficacy in wild-type and knockout animals. Analysis of proton-gated currents revealed that in wild-type and ASIC2/3 double knockout mice the majority of putative low threshold mechanoreceptors did not exhibit ASIC-like currents but exhibited a persistent current in response to low pH. Our findings are consistent with another ion channel type being important in DRG mechanotransduction.
机译:初级感觉神经元的机械感觉转导的分子基础仍然知之甚少。候选传感器分子中有酸感应离子通道(ASIC)家族的成员。神经纤维录音显示ASIC2和ASIC3空突变体对阈上机械刺激具有异常反应。使用神经元细胞体作为感觉终端的模型,我们研究了ASIC2或3是否有助于背根神经节(DRG)神经元中的机械激活电流。我们从ASIC2和ASIC3无效突变体培养了神经元,并将其响应特性与野生型对照进行了比较。神经元亚群[按细胞大小,动作电位持续时间和异凝集素B4(IB4)结合分类]对机械刺激产生了不同的反应,与其预期的体内表型一致。特别地,如体内观察到的,动作电位持续时间与机械敏感性之间存在惊人的关系。推定的低阈值机械感受器表现出快速适应的机械激活电流。相反,当伤害感受器做出响应时,它们会显示出缓慢或中等程度的适应性电流,其幅度小于低阈值机械感受器神经元的响应。在ASIC2和/或ASIC3空突变体和对照之间未发现电流幅度或动力学差异。钌红(5微米)以电压依赖性方式阻断机械活化电流,在野生型和基因敲除动物中具有相同的功效。对质子门控电流的分析表明,在野生型和ASIC2 / 3双敲除小鼠中,大多数推定的低阈值机械感受器没有表现出类似ASIC的电流,而是表现出对低pH值的持续电流。我们的发现与在DRG机械转导中重要的另一种离子通道类型一致。

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