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

biological activities
duck
eukaryotic expression
myoblasts
pEGFP-FST

How to Cite

1.
Li X, Wang J, Liu H, Wang H, Sun L, Yang C, Li L, Zheng Y. Construction of a eukaryotic expression vector for pEGFP-FST and its biological activity in duck myoblasts. Electron. J. Biotechnol. [Internet]. 2014 Sep. 16 [cited 2024 Sep. 19];17(5). Available from: https://preprints.pucv.cl/index.php/ejbiotechnology/article/view/2014.07.002

Abstract

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.
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