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Cannabinoid receptors are widely expressed in goldfish: molecular cloning of a CB2-like receptor and evaluation of CB1 and CB2 mRNA expression profiles in different organs

机译:大麻素受体在金鱼中广泛表达:CB2样受体的分子克隆和不同器官中CB1和CB2 mRNA表达谱的评估

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摘要

Cannabinoids, the bioactive constituents of Cannabis sativa, and endocannabinoids, among which the most important are anandamide and 2-arachidonoylglycerol, control various biological processes by binding to specific G protein-coupled receptors, namely CB1 and CB2 cannabinoid receptors. While a vast amount of information on the mammalian endocannabinoid system does exist, few data have been reported on bony fish. In the goldfish, Carassius auratus, the CB1 receptor has been cloned and its distribution has been analyzed in the retina, brain and gonads, while CB2 had not yet been isolated. In the present paper, we cloned the goldfish CB2 receptor and show that it presents a quite high degree of amino acid identity with zebrafish Danio rerio CB2A and CB2B receptors, while the percentage of identity is lower with the puffer fish Fugu rubripes CB2, as also confirmed by the phylogenetic analysis. The sequence identity becomes much lower when comparing the goldfish and the mammalian CB2 sequences; as for other species, goldfish CB2 and CB1 amino acid sequences share moderate levels of identity. Western-blotting analysis shows the CB2 receptor as two major bands of about 53 and 40 kDa and other faint bands with apparent molecular masses around 70, 57 and 55 kDa. Since the distribution of a receptor could give information on its physiological role, we evaluated and compared CB1 and CB2 mRNA expression in different goldfish organs by means of qReal-Time PCR. Our results show that both CB1 and CB2 receptors are widely expressed in the goldfish, displaying some tissue specificities, thus opening the way for further functional studies on bony fish and other nonmammalian vertebrates.
机译:大麻素(大麻的生物活性成分)和内源性大麻素(其中最重要的是大麻素和2-花生四烯酸甘油酯)通过与特定的G蛋白偶联受体(即CB1和CB2大麻素受体)结合来控制各种生物学过程。尽管确实存在关于哺乳动物内源性大麻素系统的大量信息,但关于骨鱼的数据很少。在金鱼Car鱼中,已经克隆了CB1受体,并分析了其在视网膜,大脑和性腺中的分布,而尚未分离出CB2。在本文中,我们克隆了金鱼CB2受体,并表明它与斑马鱼Danio rerio CB2A和CB2B受体具有很高的氨基酸同一性,而河豚Fugu rubripes CB2的同一性百分比较低。通过系统发育分析证实。比较金鱼和哺乳动物CB2序列时,序列同一性变得更低。与其他物种一样,金鱼的CB2和CB1氨基酸序列具有中等水平的同一性。 Western印迹分析表明,CB2受体是两条约53和40kDa的主要条带,另外两条是表观分子量约为70、57和55kDa的微弱条带。由于受体的分布可以提供有关其生理作用的信息,因此我们通过qReal-Time PCR评估并比较了不同金鱼器官中CB1和CB2 mRNA的表达。我们的结果表明,CB1和CB2受体均在金鱼中广泛表达,表现出某些组织特异性,从而为进一步研究骨鱼和其他非哺乳动物脊椎动物的功能开辟了道路。

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