首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The DEG/ENaC protein MEC-10 regulates the transduction channel complex in Caenorhabditis elegans touch receptor neurons.
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The DEG/ENaC protein MEC-10 regulates the transduction channel complex in Caenorhabditis elegans touch receptor neurons.

机译:DEG / ENaC蛋白MEC-10调节秀丽隐杆线虫触摸受体神经元的转导通道复合物。

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摘要

Gentle touch sensation in Caenorhabditis elegans is mediated by the MEC-4/MEC-10 channel complex, which is expressed exclusively in six touch receptor neurons (TRNs). The complex contains two pore-forming subunits, MEC-4 and MEC-10, as well as the accessory subunits MEC-2, MEC-6, and UNC-24. MEC-4 is essential for channel function, but beyond its role as a pore-forming subunit, the functional contribution of MEC-10 to the channel complex and to touch sensation is unclear. We addressed this question using behavioral assays, in vivo electrophysiological recordings from TRNs, and heterologous expression of mutant MEC-10 isoforms. Animals with a deletion in mec-10 showed only a partial loss of touch sensitivity and a modest decrease in the size of the mechanoreceptor current (MRC). In contrast, five previously identified mec-10 alleles acted as recessive gain-of-function alleles that resulted in complete touch insensitivity. Each of these alleles produced a substantial decrease in MRC size and a shift in the reversal potential in vivo. The latter finding indicates that these mec-10 mutations alter the ionic selectivity of the transduction channel in vivo. All mec-10 mutant animals had properly localized channel complexes, indicating that the loss of MRCs was not attributable to a dramatic mislocalization of transduction channels. Finally, electrophysiological examination of heterologously expressed complexes suggests that mutant MEC-10 proteins may affect channel current via MEC-2.
机译:秀丽隐杆线虫的轻柔触感由MEC-4 / MEC-10通道复合物介导,该复合物仅在六个触摸受体神经元(TRN)中表达。该复合物包含两个成孔亚基MEC-4和MEC-10,以及辅助亚基MEC-2,MEC-6和UNC-24。 MEC-4对于通道功能至关重要,但除其作为成孔亚基的功能外,MEC-10对通道复合物和触觉的功能贡献尚不清楚。我们使用行为分析,TRN的体内电生理学记录以及突变MEC-10同工型的异源表达解决了这个问题。在mec-10中缺失的动物仅显示出部分的触觉敏感性丧失,并且机械感受器电流(MRC)的大小适度减少。相比之下,五个先前鉴定的mec-10等位基因充当隐性功能获得性等位基因,导致完全触摸不敏感。这些等位基因中的每一个均在体内产生了MRC大小的显着减小和逆转潜力的转变。后一个发现表明这些mec-10突变改变了体内转导通道的离子选择性。所有的mec-10突变动物均具有适当定位的通道复合物,这表明MRC的丧失并非归因于转导通道的明显错位。最后,异源表达复合物的电生理检查表明,突变的MEC-10蛋白可能会通过MEC-2影响通道电流。

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