Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, United States.
Department of Neuroscience, Yale University School of Medicine, New Haven, United States.
Elife. 2023 Jan 6;12:e84179. doi: 10.7554/eLife.84179.
Afferents of peripheral mechanoreceptors innervate the skin of vertebrates, where they detect physical touch via mechanically gated ion channels (mechanotransducers). While the afferent terminal is generally understood to be the primary site of mechanotransduction, the functional properties of mechanically activated (MA) ionic current generated by mechanotransducers at this location remain obscure. Until now, direct evidence of MA current and mechanically induced action potentials in the mechanoreceptor terminal has not been obtained. Here, we report patch-clamp recordings from the afferent terminal innervating Grandry (Meissner) corpuscles in the bill skin of a tactile specialist duck. We show that mechanical stimulation evokes MA current in the afferent with fast kinetics of activation and inactivation during the dynamic phases of the mechanical stimulus. These responses trigger rapidly adapting firing in the afferent detected at the terminal and in the afferent fiber outside of the corpuscle. Our findings elucidate the initial electrogenic events of touch detection in the mechanoreceptor nerve terminal.
躯体感觉外周感受器的传入神经支配脊椎动物的皮肤,在那里它们通过机械门控离子通道(机械换能器)检测物理触摸。虽然传入末梢通常被认为是机械转导的主要部位,但机械换能器在此位置产生的机械激活(MA)离子电流的功能特性仍然不清楚。到目前为止,尚未获得机械感受器末梢中 MA 电流和机械诱导动作电位的直接证据。在这里,我们报告了从触觉专家鸭喙部皮肤中的 Grandry(Meissner)小体传入神经末梢进行膜片钳记录的结果。我们表明,机械刺激在传入神经中引发 MA 电流,其在机械刺激的动态阶段具有快速激活和失活的动力学。这些反应在末梢处和小体外的传入纤维中触发传入的快速适应放电。我们的发现阐明了机械感受器神经末梢中触摸检测的初始发电事件。