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Construction of Controllable Expression Vector of Mus musculus Growth Hormone (GH) shRNA and Its Gene Si- lencing Efficiency Detection
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作者 Huiming JU Rumeng ZHAO +2 位作者 Shan YU Lijing BAI Kui LI 《Agricultural Biotechnology》 CAS 2016年第5期33-36,共4页
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 m... 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. 展开更多
关键词 Growth hormone (Gtt) controllable expression Short hairpin RNA (shRNA) C ene silencing
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Dietary Control of Lactase Expression in the Weaning Rat
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作者 K.SAKUMA Y.WATANBE 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 1996年第2期181-184,共4页
The decline in lactase activity during weaning has been well established. However, its molecuIar mechanism remains to be explored. We studied changes in the expression of lactase in terms of the transcription and tran... The decline in lactase activity during weaning has been well established. However, its molecuIar mechanism remains to be explored. We studied changes in the expression of lactase in terms of the transcription and translation processes in rat microvillus membrane by Northern blot and Western blot analysis, respectively. To examine the effect of dietary change from a milk to a non-milk diet on the developmental pattern of lactase expression, weaning was prevented by keeping the rats under suckling conditions for 27 days after birth. This treatment only suppressed the extent of decline: while the weanlings showed 17 percent activity compared to that of 4-day-old rats, the prolonged suckling rats showed only 42 percent. The changes in the expression of lactase mRNA and protein were parallel with the change of lactase activity. In other words, the fundamental pattern of significant depression of lactase expression occurred relatively independent of dietary modification.This observation indicates that the regulation of lactase expression is firmly determined at the transcriptional level, and that dietary factor such as the termination of lactose ingestion has only a relatively minor effect 展开更多
关键词 Dietary control of Lactase Expression in the Weaning Rat
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Knock in p53 sequences with and without intron 4 to determine its function in gene expression control
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作者 Q.Yang Z-Q.Wang M.Hollstein 《Chinese Medical Journal》 SCIE CAS CSCD 1999年第11期22-22,共1页
关键词 Knock in p53 sequences with and without intron 4 to determine its function in gene expression control
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JNK1 negatively controls antifungal innate immunity by suppressing CD23 expression
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《Science Foundation in China》 CAS 2017年第2期20-20,共1页
Subject Code:H10 With the support by the National Natural Science Foundation of China,a study by Dr.Lin Xin(林欣)’s groups from the Institute for Immunology,School of Medicine,Tsinghua University demonstrates that JN... Subject Code:H10 With the support by the National Natural Science Foundation of China,a study by Dr.Lin Xin(林欣)’s groups from the Institute for Immunology,School of Medicine,Tsinghua University demonstrates that JNK1negatively regulates CD23,a novel C-type lectin receptor(CLR)with antifungal properties。 展开更多
关键词 JNK1 negatively controls antifungal innate immunity by suppressing CD23 expression CD
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