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首页> 外文期刊>Peptides: An International Journal >Molecular cloning and expression of two melanin-concentrating hormone receptors in goldfish.
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Molecular cloning and expression of two melanin-concentrating hormone receptors in goldfish.

机译:金鱼中两个黑色素浓缩激素受体的分子克隆和表达。

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Melanin-concentrating hormone (MCH) is a neurohypophysial hormone and induces melanin aggregation in the skin in teleosts. MCH also has multiple roles in the central regulation of food intake in teleosts and mammals. MCH receptors (MCH-R) are among type I G-protein-coupled receptors. Here, we cloned two MCH receptors from goldfish, Carassius auratus. The amino acid sequence of goldfish MCH-R1 had 57-88% homology with fish MCH-R1 and 49-50% homology with mammalian MCH-R1, while the amino acid sequence of goldfish MCH-R2 had 72-92% homology with fish MCH-R2 and 32% homology with human MCH-R2. Phylogenetic analysis showed that these two MCH-Rs are orthologous to the respective mammalian MCH-Rs. The common amino acid residues for ligand binding, signal transduction, and receptor conformation were well conserved in these receptors, although some intracellular basic-amino-acid-rich domains, which have been shown to exist in human MCH-R1 and MCH-R2, were absent in goldfish MCH-R2. When stably expressed in HEK293 cells, both goldfish MCH-R1 and MCH-R2 displayed a strong, dose-dependent, transient elevation of intracellular calcium in response to salmon MCH (EC(50)=0.8nM and 31.8nM, respectively). In contrast to goldfish MCH-R2, goldfish MCH-R1 signaling is not sensitive to pertussis toxin, suggesting an exclusive Galphaq coupling of goldfish MCH-R1 in the mammalian cell-based assay. Reverse transcriptase PCR revealed that both MCH-R1 and MCH-R2 mRNA are distributed in various tissues in goldfish. The various tissues including the brain and skin express both MCH-R1 and MCH-R2. These results suggest that these functional receptors mediate multiple effects of MCH in goldfish.
机译:黑色素浓缩激素(MCH)是一种神经垂体激素,可在硬骨鱼的皮肤中诱导黑色素聚集。妇幼保健在硬骨鱼和哺乳动物食物摄入的中央调节中也有多种作用。 MCH受体(MCH-R)属于I型G蛋白偶联受体。在这里,我们从金鱼Car鱼中克隆了两个MCH受体。金鱼MCH-R1的氨基酸序列与鱼类MCH-R1的同源性为57-88%,与哺乳动物MCH-R1的同源性为49-50%,而金鱼MCH-R2的氨基酸序列与鱼类的MCH-R1同源性为72-92% MCH-R2与人类MCH-R2的同源性为32%。系统发育分析表明,这两个MCH-R与各自的哺乳动物MCH-R是直系同源的。这些受体中用于配体结合,信号转导和受体构象的常见氨基酸残基都非常保守,尽管已证明某些细胞内富含碱性氨基酸的域存在于人MCH-R1和MCH-R2中,金鱼MCH-R2中不存在。当在HEK293细胞中稳定表达时,金鱼MCH-R1和MCH-R2均显示出对鲑鱼MCH的强烈的剂量依赖性瞬时升高的细胞内钙含量(分别为EC(50)= 0.8nM和31.8nM)。与金鱼MCH-R2相比,金鱼MCH-R1信号传导对百日咳毒素不敏感,表明在基于哺乳动物细胞的测定中金鱼MCH-R1的排他性Galphaq偶联。逆转录PCR显示MCH-R1和MCH-R2 mRNA均分布在金鱼的各种组织中。包括脑和皮肤在内的各种组织都表达MCH-R1和MCH-R2。这些结果表明,这些功能性受体介导了金鱼中MCH的多种作用。

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