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Three Homologous Subunits Form a High Affinity Peptide-gated Ion Channel in Hydra

机译:三个同源亚基在九头蛇中形成高亲和力的肽门控离子通道

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摘要

Recently, three ion channel subunits of the degenerin (DEG)/epithelial Na+ channel (ENaC) gene family have been cloned from the freshwater polyp Hydra magnipapillata, the Hydra Na+ channels (HyNaCs) 2–4. Two of them, HyNaC2 and HyNaC3, co-assemble to form an ion channel that is gated by the neuropeptides Hydra-RFamides I and II. The HyNaC2/3 channel is so far the only cloned ionotropic receptor from cnidarians and, together with the related ionotropic receptor FMRFamide-activated Na+ channel (FaNaC) from snails, the only known peptide-gated ionotropic receptor. The HyNaC2/3 channel has pore properties, like a low Na+ selectivity and a low amiloride affinity, that are different from other channels of the DEG/ENaC gene family, suggesting that a component of the native Hydra channel might still be lacking. Here, we report the cloning of a new ion channel subunit from Hydra, HyNaC5. The new subunit is closely related to HyNaC2 and -3 and co-localizes with HyNaC2 and -3 to the base of the tentacles. Coexpression in Xenopus oocytes of HyNaC5 with HyNaC2 and -3 largely increases current amplitude after peptide stimulation and affinity of the channel to Hydra-RFamides I and II. Moreover, the HyNaC2/3/5 channel has altered pore properties and amiloride affinity, more similarly to other DEG/ENaC channels. Collectively, our results suggest that the three homologous subunits HyNaC2, -3, and -5 form a peptide-gated ion channel in Hydra that could contribute to fast synaptic transmission.
机译:最近,从淡水息肉九头蛇(Hydra magnipapillata),九头蛇Na + 中克隆了简并蛋白(DEG)/上皮Na + 通道(ENaC)基因家族的三个离子通道亚基。通道(HyNaC)2-4。 HyNaC2和HyNaC3这两个共同组装形成离子通道,该通道被神经肽Hydra-RFamides I和II门控。迄今为止,HyNaC2 / 3通道是从虫中唯一克隆的离子受体,并且与蜗牛中的相关离子受体FMRFamide激活的Na + 通道(FaNaC)一起是唯一已知的肽门控离子受体。 。 HyNaC2 / 3通道具有孔特性,例如低的Na + 选择性和低的阿米洛利亲和力,这与DEG / ENaC基因家族的其他通道不同,这表明天然Hydra的成分渠道可能仍然缺乏。在这里,我们报告从Hydra HyNaC5克隆了一个新的离子通道亚基。新的亚基与HyNaC2和-3密切相关,并与HyNaC2和-3共定位于触手的基部。 HyNaC5与HyNaC2和-3在非洲爪蟾卵母细胞中的共表达在肽刺激以及通道对Hydra-RFamides I和II的亲和力后大大增加了电流幅度。此外,HyNaC2 / 3/5通道的孔隙特性和阿米洛利亲和力发生了变化,与其他DEG / ENaC通道更相似。总体而言,我们的结果表明,三个同源的亚基HyNaC2,-3和-5在Hydra中形成了肽门控离子通道,可能有助于快速的突触传递。

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