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首页> 外文期刊>General and comparative endocrinology >Duplication of growth hormone receptor (GHR) in fish genome: gene organization and transcriptional regulation of GHR type I and II in gilthead sea bream (Sparus aurata).
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Duplication of growth hormone receptor (GHR) in fish genome: gene organization and transcriptional regulation of GHR type I and II in gilthead sea bream (Sparus aurata).

机译:鱼基因组中生长激素受体(GHR)的复制:金头鲷(Sparus aurata)中GHR I型和II型的基因组织和转录调控。

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摘要

Nucleotide sequences encoding for functional growth hormone receptors (GHR) are now available in salmonids (coho and masu salmon) and other fish orders. Several authors have hypothesized a divergent evolution of salmonid GHRs, but the recent finding that a trout cDNA is related to non-salmonid (GHR type I) rather than to salmonid GHRs (GHR type II) points out a possible duplication of actively transcribed GHR genes. To address this issue, we search by RT-PCR for GHR type II in trout, gilthead sea bream, European sea bass, and turbot. Both in trout and gilthead sea bream, a cDNA sequence with all the characteristic features of masu and coho salmon GHRs (GHR type II) was found. Similarly, in European sea bass, a cDNA encoding for the intracellular domain of GHR type II was reported. No positive results were found in turbot, but searches in genome databases of fugu and zebrafish identified DNA sequences with a significant similarity to fish GHR type I and II, which are more related each other than to GHRsof tetrapods. Gene organization is, however, highly conserved through the evolution of vertebrates, and eight exons homologous to exons 2 and 4-10 of mammals were found in fish GHRs. Transcriptional regulation of GHR type I and II was also addressed by means of real-time PCR assays in gilthead sea bream. In liver and adipose tissue, GHR type I was the most abundant transcript, but the expression of GHR type I and II was practically equal in skeletal muscle. Both in liver and adipose tissue, the two GHRs were down-regulated by fasting. In skeletal muscle, the expression of GHR type I remained unaltered in fasted fish, whereas a 2- to 3-fold increase was found for GHR type II. All this provides suitable evidence for a tissue-specific regulation of fish GHRs, but further research is needed to determine whether these duplicated genes are evolved in a new or redundant fashion.
机译:现在可以在鲑鱼(银鲑和马苏鲑)和其他鱼类订单中获得编码功能性生长激素受体(GHR)的核苷酸序列。几位作者假设鲑鱼GHR的进化不同,但是最近的发现表明鳟鱼cDNA与非鲑鱼GHR(而不是鲑鱼GHR)(II型GHR)有关,指出活跃转录的GHR基因可能存在重复。为了解决这个问题,我们通过RT-PCR在鳟鱼,金头鲷,欧洲鲈鱼和大菱t中搜索GHR II型。在鳟鱼和金头鲷中,均发现了具有马苏鱼和银鲑鱼GHR(II型GHR)的所有特征的cDNA序列。类似地,在欧洲鲈鱼中,报道了编码II型GHR的细胞内结构域的cDNA。在大菱t中未发现阳性结果,但在河豚和斑马鱼的基因组数据库中进行搜索后,发现与鱼类GHR I型和II型具有显着相似性的DNA序列,它们与四足动物的GHRs彼此之间的相关性更高。但是,基因结构在脊椎动物的进化过程中是高度保守的,并且在鱼类GHR中发现了与哺乳动物的外显子2和4-10同源的8个外显子。还通过在金头鲷中进行实时PCR分析来解决I型和II型GHR的转录调控。在肝脏和脂肪组织中,I型GHR是最丰富的转录本,但I型和II型GHR的表达在骨骼肌中几乎相等。在肝脏和脂肪组织中,两个GHR均因禁食而下调。在骨骼肌中,I型GHR的表达在禁食鱼中保持不变,而II型GHR则增加了2至3倍。所有这些为鱼类GHRs的组织特异性调节提供了合适的证据,但是还需要进一步的研究来确定这些重复的基因是以新的还是多余的方式进化的。

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