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虹鳟鱼中促黑素细胞激素2受体的分子特征、组织特异性表达及调控

Molecular characterization, tissue-specific expression, and regulation of melanocortin 2 receptor in rainbow trout.

作者信息

Aluru Neelakanteswar, Vijayan Mathilakath M

机构信息

Department of Biology, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.

出版信息

Endocrinology. 2008 Sep;149(9):4577-88. doi: 10.1210/en.2008-0435. Epub 2008 Jun 5.

Abstract

ACTH, the primary secretagogue for corticosteroid biosynthesis, binds to melanocortin 2 receptor (MC2R) and activates the signaling cascade leading to steroid biosynthesis in the adrenal cortex. Whereas MC2R regulation has been studied using mammalian models, little is known about the molecular mechanisms involved in ACTH signaling in nonmammalian vertebrates. A full-length cDNA encoding MC2R was sequenced from rainbow trout (Oncorhynchus mykiss) interrenal tissue (analogous to the adrenal cortex in mammals) and showed about 60 and about 44% amino acid sequence similarity to teleosts and humans, respectively. Phylogenetic analysis confirmed that MC2R from all species clustered together and was distant from other MCRs. Quantitative real-time PCR revealed a marked tissue-specific difference in MC2R mRNA abundance, with the highest levels observed in the interrenal tissue, ovary, and testis. Acute ACTH, but not alpha-MSH or [Nle4, d-Phe7]-MSH, stimulation resulted in a time- and dose-related elevation in MC2R mRNA abundance in the interrenal tissue. This corresponded with higher steroidogenic acute regulatory protein and cytochrome P450 side-chain cleavage enzyme gene expression as well as elevated cortisol production. An acute stressor transiently elevated plasma ACTH and cortisol levels at 1 h, and this was followed by a significant increase in MC2R mRNA abundance at 4 h after stressor exposure. Taken together, our results demonstrate that ACTH regulation of MC2R is highly conserved in vertebrates, whereas the tissue-specific distribution of this receptor transcript level leads us to propose a role for ACTH signaling in the stressor-mediated suppression of sex steroid levels in fish.

摘要

促肾上腺皮质激素(ACTH)是皮质类固醇生物合成的主要促分泌素,它与黑皮质素2受体(MC2R)结合并激活信号级联反应,从而导致肾上腺皮质中的类固醇生物合成。虽然已经使用哺乳动物模型研究了MC2R的调节,但对于非哺乳动物脊椎动物中ACTH信号传导所涉及的分子机制知之甚少。从虹鳟鱼(Oncorhynchus mykiss)的肾间组织(类似于哺乳动物的肾上腺皮质)中对编码MC2R的全长cDNA进行了测序,结果显示其氨基酸序列与硬骨鱼和人类的相似性分别约为60%和44%。系统发育分析证实,所有物种的MC2R聚集在一起,并且与其他MCRs距离较远。定量实时PCR显示MC2R mRNA丰度存在明显的组织特异性差异,在肾间组织、卵巢和睾丸中观察到的水平最高。急性ACTH刺激,但不是α-MSH或[Nle4,d-Phe7]-MSH刺激,导致肾间组织中MC2R mRNA丰度随时间和剂量增加。这与较高的类固醇生成急性调节蛋白和细胞色素P450侧链裂解酶基因表达以及皮质醇产量升高相对应。急性应激源在1小时时短暂升高血浆ACTH和皮质醇水平,随后在应激源暴露后4小时MC2R mRNA丰度显著增加。综上所述,我们的结果表明,ACTH对MC2R的调节在脊椎动物中高度保守,而该受体转录水平的组织特异性分布使我们提出ACTH信号传导在应激源介导的鱼类性类固醇水平抑制中的作用。

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