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Cloning and identification of an oxytocin/vasopressin-like receptor and its ligand from insects

机译:昆虫催产素/血管加压素样受体及其配体的克隆与鉴定

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More than 20 years ago, an oxytocin/vasopressin-like peptide, CLITNCPRGamide, was isolated from the locust, Locusta migratoria [Proux JP, ef al. (1987) Identification of an arginine vasopressin-like diuretic hormone from Locusta migratoria. Biochem Biophys Res Commun 149:180-186]. However, no similar peptide could be identified in other insects, nor could its prohormone be cloned, or its physiological actions be established. Here, we report that the recently sequenced genome from the red flour beetle Tribolium castaneum contains a gene coding for an oxytocin/vasopressin-like peptide, identical to the locust peptide, which we named inotocin (for insect oxytocin/vasopressin-like peptide) and a gene coding for an inotocin G protein-coupled receptor (GPCR). We cloned the Tribolium inotocin preprohormone and the inotocin GPCR and expressed the GPCR in CHO cells. This GPCR is strongly activated by low concentrations of inotocin (EC_(50), 5 × 10~(-9) M), demonstrating that it is the inotocin receptor. Quantitative RT-PCR (qPCR) showed that in adult Tribolium, the receptor is mainly expressed in the head and much less in the hindgut and Malpighian tubules, suggesting that the inotocin/receptor couple does not play a role in water homeostasis. Surprisingly, qPCR also showed that the receptor is 30× more expressed in the first larval stages than in adult animals. The inotocin/receptor couple can also be found in the recently sequenced genome from the parasitic wasp Nasonia vitripennis but not in any other holometabolous insect with a completely sequenced genome (12 Drosophila species, the malaria mosquito Anopheles gambiae, the yellow fever mosquito Aedes aegypti, the silk worm Bombyx mori, and the honey bee Apis mellifera), suggesting that this neuropeptide system is confined to basal holometabolous insects. Furthermore, we identified an oxytocin/ vasopressin-like peptide and receptor in the recently sequenced genome from the water flea Daphnia pulex (Crustacea). To our knowledge, this is the first report on the molecular cloning of an oxytocin/vasopressin-like receptor and its ligand from arthropods.
机译:20多年前,从蝗虫Locusta migratoria分离出一种催产素/加压素样肽CLITNCPRGamide [Proux JP,等。 (1987)从偏斜蝗的精氨酸加压素样利尿激素的鉴定。 Biochem Biophys Res Commun 149:180-186]。但是,无法在其他昆虫中鉴定出类似的肽,也无法克隆其激素原或确定其生理作用。在这里,我们报告说,最近从红色甲虫Tribolium castaneum测序的基因组包含一个编码催产素/血管加压素样肽的基因,该基因与刺槐肽相同,我们将其命名为Inotocin(用于昆虫催产素/血管加压素样肽),编码Inotocin G蛋白偶联受体(GPCR)的基因。我们克隆了Tribolium的Inotocin前激素和Inotocin GPCR,并在CHO细胞中表达了GPCR。该GPCR被低浓度的Inotocin(EC_(50),5×10〜(-9)M)强烈激活,表明它是Inotocin受体。定量RT-PCR(qPCR)显示,在成虫Tribolium中,该受体主要在头部表达,而在后肠和Malpighian小管中表达较少,这表明肌动蛋白/受体对在水稳态中不起作用。出乎意料的是,qPCR还显示该受体在幼虫的最初阶段的表达比成年动物高30倍。昆虫素/受体对还可以在寄生黄蜂Nasonia vitripennis的最近测序基因组中找到,但在其他任何具有完整序列基因组的全脂昆虫中却找不到(12种果蝇,疟蚊,冈比亚按蚊,黄热蚊,埃及伊蚊,蚕(家蚕)和蜜蜂Apis mellifera),这表明该神经肽系统仅限于基底类代谢昆虫。此外,我们从水蚤水蚤(Daphnia pulex)(甲壳纲)的最近测序的基因组中鉴定出催产素/加压素样肽和受体。据我们所知,这是关于节肢动物催产素/血管加压素样受体及其配体的分子克隆的首次报道。

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