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Construction of a eukaryotic expression vector for pEGFP-FST and its biological activity in duck myoblasts

机译:pEGFP-FST真核表达载体的构建及其在鸭成肌细胞中的生物学活性

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Background: Follistatin (FST), a secreted glycoprotein, is intrinsically linked to muscle hypertrophy. To explore the function of duck FST in myoblast proliferation and differentiation, the pEGFP-FST eukaryotic expression vector was constructed and identified. The biological activities of this vector were analyzed by transfecting pEGFP-FST into cultured duck myoblasts using LipofectamineTM 2000 and subsequently determining the mRNA expression profiles of FST and myostatin (MSTN). Results: The duck pEGFP-FST vector was successfully constructed and was confirmed to have high liposome-mediated transfection efficiency in duck myoblasts. Additionally, myoblasts transfected with pEGFP-FST had a higher biological activity. Significantly, the overexpression of FST in these cells significantly inhibited the mRNA expression of MSTN (a target gene that is negatively regulated by FST). Conclusions: The duck pEGFP-FST vector has been constructed successfully and exhibits biological activity by promoting myoblast proliferation and differentiation in vitro.
机译:背景:卵泡抑素(FST)是一种分泌的糖蛋白,与肌肉肥大有内在联系。为了探索鸭FST在成肌细胞增殖和分化中的功能,构建并鉴定了pEGFP-FST真核表达载体。通过使用LipofectamineTM 2000将pEGFP-FST转染到培养的鸭成肌细胞中,然后测定FST和肌生长抑制素(MSTN)的mRNA表达谱,分析了该载体的生物学活性。结果:成功构建了鸭pEGFP-FST载体,并证实在鸭成肌细胞中脂质体介导的转染效率很高。另外,用pEGFP-FST转染的成肌细胞具有更高的生物学活性。值得注意的是,这些细胞中FST的过表达显着抑制了MSTN(由FST负调控的靶基因)的mRNA表达。结论:成功构建了鸭pEGFP-FST载体,通过促进成肌细胞的体外增殖和分化而具有生物学活性。

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