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In Situ Localization and Rhythmic Expression of Ghrelin and ghs-r1 Ghrelin Receptor in the Brain and Gastrointestinal Tract of Goldfish (Carassius auratus)

机译:Ghrelin和ghs-r1 Ghrelin受体在金鱼(Car鱼)脑和胃肠道中的原位定位和节律性表达

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摘要

Ghrelin is a gut-brain peptide hormone, which binds to the growth hormone secretagogue receptor (GHS-R) to regulate a wide variety of biological processes in fish. Despite these prominent physiological roles, no studies have reported the anatomical distribution of preproghrelin transcripts using in situ hybridization in a non-mammalian vertebrate, and its mapping within the different encephalic areas remains unknown. Similarly, no information is available on the possible 24-h variations in the expression of preproghrelin and its receptor in any vertebrate species. The first aim of this study was to investigate the anatomical distribution of ghrelin and GHS-R1a ghrelin receptor subtype in brain and gastrointestinal tract of goldfish (Carassius auratus) using immunohistochemistry and in situ hybridization. Our second aim was to characterize possible daily variations of preproghrelin and ghs-r1 mRNA expression in central and peripheral tissues using real-time reverse transcription-quantitative PCR. Results show ghrelin expression and immunoreactivity in the gastrointestinal tract, with the most abundant signal observed in the mucosal epithelium. These are in agreement with previous findings on mucosal cells as the primary synthesizing site of ghrelin in goldfish. Ghrelin receptor was observed mainly in the hypothalamus with low expression in telencephalon, pineal and cerebellum, and in the same gastrointestinal areas as ghrelin. Daily rhythms in mRNA expression were found for preproghrelin and ghs-r1 in hypothalamus and pituitary with the acrophase occurring at nighttime. Preproghrelin, but not ghs-r1a, displayed a similar daily expression rhythm in the gastrointestinal tract with an amplitude 3-fold higher than the rest of tissues. Together, these results described for the first time in fish the mapping of preproghrelin and ghrelin receptor ghs-r1a in brain and gastrointestinal tract of goldfish, and provide the first evidence for a daily regulation of both genes expression in such locations, suggesting a possible connection between the ghrelinergic and circadian systems in teleosts.
机译:Ghrelin是一种肠脑肽激素,它与生长激素促分泌素受体(GHS-R)结合,以调节鱼类的多种生物学过程。尽管有这些突出的生理作用,但尚未有研究报道在非哺乳动物脊椎动物中使用原位杂交的前生长素释放肽转录物的解剖学分布,其在不同脑区域内的定位仍然未知。同样,在任何脊椎动物物种中,preproghrelin及其受体表达的可能24小时变化都没有可用的信息。这项研究的第一个目的是使用免疫组织化学和原位杂交技术来研究生长激素释放肽和GHS-R1a生长激素释放肽受体亚型在金鱼(Car鱼)的大脑和胃肠道中的解剖分布。我们的第二个目标是使用实时逆转录-定量PCR表征中枢和周围组织中前proghrelin和ghs-r1 mRNA表达的每日可能变化。结果显示ghrelin在胃肠道中的表达和免疫反应性,在粘膜上皮中观察到最丰富的信号。这些与先前关于粘膜细胞作为金鱼生长素释放肽的主要合成位点的发现相一致。 Ghrelin受体主要在下丘脑中观察到,在端脑,松果体和小脑以及与Ghrelin相同的胃肠道区域低表达。在下丘脑和垂体中发现前proghrelin和ghs-r1的mRNA表达的日常节律,夜间发生顶峰。前proghrelin,而不是ghs-r1a,在胃肠道中表现出相似的每日表达节律,其幅度比其余组织高3倍。总之,这些结果首次在鱼类中描述了金鱼脑和胃肠道中前proghrelin和ghrelin受体ghs-r1a的作图,并提供了每日调节这两个基因表达的第一个证据,表明可能存在联系在硬骨鱼的ghrelinergic和昼夜节律系统之间。

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