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首页> 外文期刊>Molecular and Cellular Endocrinology >Molecular cloning of cDNA encoding thyroid stimulating hormone beta subunit of bighead carp Aristichthys nobilis and regulation of its gene expression.
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Molecular cloning of cDNA encoding thyroid stimulating hormone beta subunit of bighead carp Aristichthys nobilis and regulation of its gene expression.

机译:big鱼促甲状腺激素β亚基编码cDNA的分子克隆及其基因表达调控。

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The complementary DNA (cDNA) encoding pituitary thyroid stimulating hormone beta subunit (TSH-beta) of bighead carp was cloned and regulation of its gene expression was investigated for understanding phylogenetic divergence and evolution of TSH molecule. The cDNA was obtained from bighead carp pituitary total RNA by reverse transcription and polymerase chain reaction. Oligonucleotide primers were designed from the sequence of common carp. The full length sequence was then obtained by 3' and 5' rapid amplification of cDNA ends (RACE). The full-length sequence consisting of 3' and 5' untranslated regions was 585 bp long. The predicted amino acid sequence consisted of a signal peptide of 19 amino acid residues and a mature TSH beta subunit protein of 131 residues. The coding sequences of the cDNAs showed variable percentage homologies with those of other teleosts and vertebrate species. The predicted amino acid sequence shared 71% identity with rainbow trout and salmon, 90% with goldfish, 50% with eel and 94% with common carp in the mature protein region. The percentages of identity in the same region in comparison with bovine, porcine, rat, mouse, human and chicken were only 39, 42, 41, 40, 45 and 46%, respectively. TSH beta mRNA expression was found only in the pituitary tissue out of other tissues tested as testis, muscle, brain and heart. For the first time, thyrotropin releasing hormone (TRH) and thyroxine (T4) effects on pituitary TSH mRNA expression were tested in teleosts under in vitro conditions. TRH treatment on pituitary cells increased TSH beta mRNA level, while T4 treatment decreased TSH beta mRNA level. The present study provides a direct evidence, for the first time that TRH directly upregulates TSH beta gene expression in teleosts.
机译:克隆了big鱼垂体甲状腺刺激激素β亚基(TSH-β)的互补DNA(cDNA),并研究了其基因表达调控,以了解TSH分子的系统发育差异和进化。通过逆转录和聚合酶链反应从big鱼垂体总RNA中获得cDNA。从鲤鱼的序列设计寡核苷酸引物。然后通过3'和5'快速扩增cDNA末端(RACE)获得全长序列。由3'和5'非翻译区组成的全长序列长585 bp。预测的氨基酸序列由19个氨基酸残基的信号肽和131个残基的成熟TSHβ亚基蛋白组成。 cDNA的编码序列与其他硬骨鱼类和脊椎动物物种的同源性不同。预测的氨基酸序列与虹鳟鱼和鲑鱼具有71%的同一性,与金鱼具有90%的同源性,与鳗鱼具有50%的同源性,与鲤鱼在成熟蛋白区域具有94%的同源性。与牛,猪,大鼠,小鼠,人和鸡相比,同一区域的同一性百分比分别仅为39%,42%,41%,40%,45%和46%。 TSHβmRNA表达仅在垂体组织中被发现,在其他组织中被测试为睾丸,肌肉,大脑和心脏。首次在体外条件下在硬骨鱼中测试了促甲状腺激素释放激素(TRH)和甲状腺素(T4)对垂体TSH mRNA表达的影响。垂体细胞的TRH治疗可提高TSHβmRNA水平,而T4治疗可降低TSHβmRNA水平。本研究首次提供了直接的证据,TRH直接上调了硬骨鱼中TSHβ基因的表达。

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