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Genomic cloning and promoter functional analysis of myostatin-2 in shi drum, Umbrina cirrosa: Conservation of muscle-specific promoter activity

机译:Shi鼓,Umbrina cirrosa myostatin-2的基因组克隆和启动子功能分析:肌肉特异性启动子活性的保存。

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Myostatin (MSTN) is a member of the transforming growth factor-? superfamily, known as a negative regulator of skeletal muscle development and growth in mammals. In contrast to mammals, fish possess at least two paralogs of MSTN: MSTN-1 and MSTN-2. Here we describe the cloning and sequence analysis of spliced and precursor (unspliced) transcripts as well as the 5' flanking region of MSTN-2 from the marine fish Umbrina cirrosa (uc. MSTN-2). In silico analysis revealed numerous putative cis regulatory elements including several E-boxes known as binding sites to myogenic transcription factors. Transient transfection experiments using non-muscle and muscle cell lines showed high transcriptional activity in muscle cells and in differentiated neural cells, in accordance with our previous findings in MSTN-2 promoter from Sparus aurata. Comparative informatics analysis of MSTN-2 from several fish species revealed high conservation of the predicted amino acid sequence as well as the gene structure (exon length) although intron length varied between species. The proximal promoter of MSTN-2 gene was found to be conserved among Perciforms. In conclusion, this study reinforces our conclusion that MSTN-2 promoter is a very strong promoter, especially in muscle cells. In addition, we show that the MSTN-2 gene structure is highly conserved among fishes as is the predicted amino acid sequence of the peptide.
机译:肌生长抑制素(MSTN)是转化生长因子-?超家族,被称为哺乳动物骨骼肌发育的负调节剂。与哺乳动物相反,鱼至少具有两个MSTN旁系同源物:MSTN-1和MSTN-2。在这里,我们描述了海水鱼类Umbrina cirrosa(uc。MSTN-2)的剪接和前体(未剪接)转录本以及MSTN-2的5'侧翼区域的克隆和序列分析。在计算机分析中揭示了许多推定的顺式调控元件,包括几个E-box,称为与肌原性转录因子的结合位点。根据我们先前在Sparus aurata的MSTN-2启动子中的发现,使用非肌肉和肌肉细胞系的瞬时转染实验显示了在肌肉细胞和分化的神经细胞中的高转录活性。来自几种鱼类的MSTN-2的比较信息学分析显示,尽管内含子长度在不同物种之间有所不同,但预测的氨基酸序列以及基因结构(外显子长度)的保守性很高。发现MSTN-2基因的近端启动子在Perciforms中是保守的。总而言之,这项研究进一步证实了我们的结论,即MSTN-2启动子是一个非常强的启动子,尤其是在肌肉细胞中。另外,我们显示了MSTN-2基因结构在鱼类中是高度保守的,正如该肽的预测氨基酸序列一样。

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