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Transmembrane channel-like (tmc) gene regulates Drosophila larval locomotion

机译:跨膜通道样(tmc)基因调节果蝇幼虫运动。

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摘要

Drosophila larval locomotion, which entails rhythmic body contractions, is controlled by sensory feedback from proprioceptors. The molecular mechanisms mediating this feedback are little understood. By using genetic knock-in and immunostaining, we found that the Drosophila melanogaster transmembrane channel-like (tmc) gene is expressed in the larval class I and class II dendritic arborization (da) neurons and bipolar dendrite (bd) neurons, both of which are known to provide sensory feedback for larval locomotion. Larvae with knockdown or loss of tmc function displayed reduced crawling speeds, increased head cast frequencies, and enhanced backward locomotion. Expressing Drosophila TMC or mammalian TMC1 and/or TMC2 in the tmc-positive neurons rescued these mutant phenotypes. Bending of the larval body activated the tmc-positive neurons, and in tmc mutants this bending response was impaired. This implicates TMC’s roles in Drosophila proprioception and the sensory control of larval locomotion. It also provides evidence for a functional conservation between Drosophila and mammalian TMCs.
机译:果蝇幼虫的运动引起节律性的身体收缩,由本体感受器的感觉反馈控制。介导这种反馈的分子机制鲜为人知。通过使用基因敲入和免疫染色,我们发现果蝇果蝇跨膜通道样(tmc)基因在幼虫的I类和II类树突状(da)神经元和双极树突(bd)神经元中表达。已知为幼虫的运动提供感觉反馈。具有击倒或tmc功能丧失的幼虫显示降低的爬行速度,增加的头部投掷频率和增强的向后运动。在tmc阳性神经元中表达果蝇TMC或哺乳动物TMC1和/或TMC2拯救了这些突变表型。幼虫体的弯曲激活了tmc阳性神经元,在tmc突变体中,这种弯曲反应被削弱了。这暗示了TMC在果蝇本体感受和幼虫运动感官控制中的作用。它还为果蝇和哺乳动物TMC之间的功能保守性提供了证据。

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