Construction of Controllable Expression Vector of Mus musculus Growth Hormone (GH) shRNA and Its Gene Si- lencing Efficiency Detection  

Construction of Controllable Expression Vector of Mus musculus Growth Hormone(GH) shRNA and Its Gene Silencing Efficiency Detection

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作  者:Huiming JU Rumeng ZHAO Shan YU Lijing BAI Kui LI 

机构地区:[1]College of Veterinary Medicine, Yangzhou University, Yangzhou 225000, China [2]Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou 225009, China [3]Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China

出  处:《Agricultural Biotechnology》2016年第5期33-36,共4页农业生物技术(英文版)

基  金:Supported by National Natural Science Foundation of China(31101683,31272405);Priority Academic Program Development of Jiangsu Higher Education Institutions(2014);Science and Technology Innovation Fund for Students in Yangzhou University(No.x2015719)

摘  要:Growth hormone (GH) is a polypeptide hormone secreted by the pituitary, which promotes animal growth, muscle development, metabolism regulation and other important physiological functions. In this study, a pair of mGH short hairpin RNA (shRNA) was designed according to mouse ( Mus musculus) GH mRNA sequence; pSingle-tTS-mGH shRNA-RFP, an integrated controllable expression vector of mGH shRNA, was constructed successfully. The recombinant vector was transfected into mouse pituitary tumor cell line AtT-20. After addition of doxycyelin ( DOX), the expression of red fluorescent protein (RFP) was observed un- der a fluorescent microscope. The expression level of mGH in cells was detected by quantitative Realtime PCR (qRT-PCR) and Western blot. After DOX induction, the relative expression level of GH mRNA in cells transfected with GH shRNA was reduced by about 70% compared with that in DOX-free group and other control groups, exhibiting extremely significant differences (P 〈 0.01 ) ; moreover, the relative expression level of GH protein was reduced by about 90% ; the expression level of GH mRNA and GH protein exhibited no significant difference among other groups (P 〉 0.05). In this study, a controllable expression vector of GH shRNA with high gene silencing efficiency was constructed successfully, which could be used to reveal GH autocfine / paracrine interactions and analyze functions of GH gene in growth, development and disease occurrence of animals by regulating GH expression levels.Growth hormone (GH) is a polypeptide hormone secreted by the pituitary, which promotes animal growth, muscle development, metabolism regulation and other important physiological functions. In this study, a pair of mGH short hairpin RNA (shRNA) was designed according to mouse ( Mus musculus) GH mRNA sequence; pSingle-tTS-mGH shRNA-RFP, an integrated controllable expression vector of mGH shRNA, was constructed successfully. The recombinant vector was transfected into mouse pituitary tumor cell line AtT-20. After addition of doxycyelin ( DOX), the expression of red fluorescent protein (RFP) was observed un- der a fluorescent microscope. The expression level of mGH in cells was detected by quantitative Realtime PCR (qRT-PCR) and Western blot. After DOX induction, the relative expression level of GH mRNA in cells transfected with GH shRNA was reduced by about 70% compared with that in DOX-free group and other control groups, exhibiting extremely significant differences (P 〈 0.01 ) ; moreover, the relative expression level of GH protein was reduced by about 90% ; the expression level of GH mRNA and GH protein exhibited no significant difference among other groups (P 〉 0.05). In this study, a controllable expression vector of GH shRNA with high gene silencing efficiency was constructed successfully, which could be used to reveal GH autocfine / paracrine interactions and analyze functions of GH gene in growth, development and disease occurrence of animals by regulating GH expression levels.

关 键 词:Growth hormone (Gtt) Controllable expression Short hairpin RNA (shRNA) C  ene silencing 

分 类 号:Q78[生物学—分子生物学]

 

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