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首页> 外文期刊>The European Journal of Neuroscience >NOMPC is likely a key component of Drosophila mechanotransduction channels
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NOMPC is likely a key component of Drosophila mechanotransduction channels

机译:NOMPC可能是果蝇机械转导通道的关键组成部分

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摘要

Mechanotransduction is the basis of several sensory modalities, including touch, hearing, proprioception and gravity sensation. Despite its importance to sensory processing and behavior, the molecular mechanisms underlying mechanotransduction remain to be fully understood. In particular, the identity of the ion channels serving mechanotransduction is still unknown in many species. Drosophila melanogaster nompC (no mechanoreceptor potential C) has been shown to be essential for mechanotransduction in flies, yet there is no direct evidence demonstrating that NOMPC is indeed a mechanotransducing ion channel in Drosophila. To dissect the functional roles of NOMPC in mechanotransduction, we found that NOMPC-dependent transient adapting mechanoreceptor current (MRC) in the external bristle sensory organ was also chloride dependent. However, this chloride-dependent current was not necessary for spike generation. Furthermore, ectopic expression of wild-type NOMPC conferred mechanosensitivity on the interneurons in the antennal lobe (AL) and cation-mediated inward mechanocurrent was recorded, while a point mutation in the putative selective filter region of NOMPC failed to produce the mechanocurrent in the AL interneurons. These functional studies imply that NOMPC is likely to be a crucial component of mechanotransducers that accounts for mechanotransductions in mechanosensory neurons of Drosophila.
机译:机械转导是几种感觉方式的基础,包括触摸,听觉,本体感受和重力感应。尽管它对感觉处理和行为很重要,但是机械转导的分子机制仍有待充分理解。尤其是,在许多物种中仍不清楚用于机械转导的离子通道的身份。果蝇黑腹果蝇nompC(无机械感受器电位C)已被证明对果蝇的机械转导至关重要,但尚无直接证据表明NOMPC确实是果蝇中的机械转导离子通道。为了剖析NOMPC在机械转导中的功能作用,我们发现外部刷毛感觉器官中依赖NOMPC的瞬时适应性机械感受器电流(MRC)也依赖于氯。但是,这种依赖于氯化物的电流对于产生尖峰不是必需的。此外,记录到野生型NOMPC的异位表达赋予触角叶(AL)的中间神经元机械敏感性和阳离子介导的内向机械电流,而NOMPC的假定选择性过滤区中的点突变未能在AL中产生机械电流。中间神经元。这些功能性研究表明,NOMPC可能是果蝇机械感官神经元的机械转导的机械转导的重要组成部分。

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