首页> 外文期刊>Peptides: An International Journal >Molecular cloning of the bullfrog kisspeptin receptor GPR54 with high sensitivity to Xenopus kisspeptin.
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Molecular cloning of the bullfrog kisspeptin receptor GPR54 with high sensitivity to Xenopus kisspeptin.

机译:对非洲爪蟾Kisspeptin高度敏感的牛蛙Kisspeptin受体GPR54的分子克隆。

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摘要

Kisspeptin and its receptor, GPR54, play important roles in mammalian reproduction and cancer development. However, little is known about their function in nonmammalian species. In the present study, we have isolated the cDNA encoding the kisspeptin receptor, GPR54, from the bullfrog, Rana catesbeiana. The bullfrog GPR54 (bfGPR54) cDNA encodes a 379-amino acid heptahelical G protein-coupled receptor. bfGPR54 exhibits 45-46% amino acid identity with mammalian GPR54s and 70-74% identity with fish GPR54s. RT-PCR analysis showed that bfGPR54 mRNA is highly expressed in the forebrain, hypothalamus and pituitary. Upon stimulation by synthetic human kisspeptin-10 with Phe-amide residue at the C-terminus (h-Kiss-10F), bfGPR54 induces SRE-luc activity, a PKC-specific reporter, evidencing the PKC-linked signaling pathway of bfGPR54. Using a blast search, we found a gene encoding a kisspeptin-like peptide in Xenopus. The C-terminal decapeptide of Xenopus kisspeptin shows higher amino acid sequence identity to fish Kiss-10s than mammalian Kiss-10s. A synthetic Xenopus kisspeptin peptide (x-Kiss-12Y) showed a higher potency than mammalian Kiss-10s in the activation of bfGPR54. This study expands our understanding of the physiological roles and molecular evolution of kisspeptins and their receptors.
机译:Kisspeptin及其受体GPR54在哺乳动物繁殖和癌症发展中起重要作用。然而,关于它们在非哺乳动物物种中的功能知之甚少。在本研究中,我们从牛蛙蛙蛙中分离出了编码吻肽素受体GPR54的cDNA。牛蛙GPR54(bfGPR54)cDNA编码一个379个氨基酸的七螺旋G蛋白偶联受体。 bfGPR54与哺乳动物GPR54s具有45-46%的氨基酸同一性,与鱼类GPR54s具有70-74%的同一性。 RT-PCR分析显示bfGPR54 mRNA在前脑,下丘脑和垂体中高表达。在合成人Kisspeptin-10的C端(h-Kiss-10F)上带有Phe-酰胺残基刺激后,bfGPR54诱导SRE-luc活性,这是PKC特异性的报告基因,证明了bfGPR54的PKC连锁信号通路。使用爆炸搜索,我们在非洲爪蟾中发现了一个编码吻肽样肽的基因。非洲爪蟾吻肽的C末端十肽显示出与鱼类Kiss-10相比氨基酸序列同一性更高的氨基酸序列同一性。合成的非洲爪蟾吻肽肽(x-Kiss-12Y)在激活bfGPR54方面比哺乳动物Kiss-10s更高。这项研究扩大了我们对kisepteptin及其受体的生理作用和分子进化的理解。

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