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果蝇 Ppk30 缺失导致其幼虫本体感觉运动和机械性伤害感受受损,Ppk30 是 Degenerin/Epithelial Sodium Channel 家族的果蝇成员。

Impairment of proprioceptive movement and mechanical nociception in Drosophila melanogaster larvae lacking Ppk30, a Drosophila member of the Degenerin/Epithelial Sodium Channel family.

机构信息

School of Biological Sciences and technology, Chonnam National University, Gwangju, Republic of Korea.

School of Life Sciences, Gwangju Institute of Science and Technology (GIST), Gwangju, Republic of Korea.

出版信息

Genes Brain Behav. 2019 Jun;18(5):e12545. doi: 10.1111/gbb.12545. Epub 2019 Apr 22.

Abstract

The mechanosensory neurons of Drosophila larvae are demonstrably activated by diverse mechanical stimuli, but the mechanisms underlying this function are not completely understood. Here we report a genetic, immunohistochemical, and electrophysiological analysis of the Ppk30 ion channel, a member of the Drosophila pickpocket (ppk) family, counterpart of the mammalian Degenerin/Epithelial Na Channel family. Ppk30 mutant larvae displayed deficits in proprioceptive movement and mechanical nociception, which are detected by class IV sensory (mdIV) neurons. The same neurons also detect heat nociception, which was not impaired in ppk30 mutant larvae. Similarly, Ppk30 mutation did not alter gentle touch mechanosensation, a distinct mechanosensation detected by other neurons, suggesting that Ppk30 has a functional role in mechanosensation in mdIV neurons. Consistently, Ppk30 was expressed in class IV neurons, but was not detectable in other larval skin sensory neurons. Mutant phenotypes were rescued by expressing Ppk30 in mdIV neurons. Electrophysiological analysis of heterologous cells expressing Ppk30 did not detect mechanosensitive channel activities, but did detect acid-induced currents. These data show that Ppk30 has a role in mechanosensation, but not in thermosensation, in class IV neurons, and possibly has other functions related to acid response.

摘要

果蝇幼虫的机械感觉神经元可被多种机械刺激激活,但这一功能的机制尚不完全清楚。本文报道了果蝇 Pickpocket(ppk)家族成员 Ppk30 离子通道的遗传、免疫组织化学和电生理分析,其对应于哺乳动物 Degenerin/Epithelial Na Channel 家族。Ppk30 突变体幼虫表现出自感运动和机械性伤害感受缺陷,这可被 IV 类感觉神经元(mdIV)检测到。这些相同的神经元还能检测到热伤害感受,而 Ppk30 突变体幼虫的热伤害感受没有受损。同样,Ppk30 突变没有改变温和触摸机械感觉,这是由其他神经元检测到的一种独特的机械感觉,表明 Ppk30 在 mdIV 神经元的机械感觉中具有功能作用。一致地,Ppk30 在 IV 类神经元中表达,但在其他幼虫皮肤感觉神经元中不可检测到。在 mdIV 神经元中表达 Ppk30 可挽救突变表型。表达 Ppk30 的异源细胞的电生理分析未检测到机械敏感通道活性,但检测到酸诱导电流。这些数据表明 Ppk30 在 IV 类神经元中在机械感觉中发挥作用,但在热感觉中不起作用,并且可能具有与酸反应相关的其他功能。

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