近日,中国农业科学院哈尔滨兽医研究所基础免疫团队郑永辉研究员和王斌博士在国际上首次阐明了埃博拉病毒囊膜糖蛋白的合成机制,为抗埃博拉病毒药物的研发提供了新的理论依据。相关研究成果于2月14日在国际著名学术期刊《生物化学杂志...近日,中国农业科学院哈尔滨兽医研究所基础免疫团队郑永辉研究员和王斌博士在国际上首次阐明了埃博拉病毒囊膜糖蛋白的合成机制,为抗埃博拉病毒药物的研发提供了新的理论依据。相关研究成果于2月14日在国际著名学术期刊《生物化学杂志(The Journal of Biological Chemistry)》上在线发表。展开更多
Objective To construct adeno-associated virus (AAV) expression system for transforming growth factor β3 (TGFβ3) and detect its biological effect on proteoglycan synthesis of the earlier and later dedifferentiated ra...Objective To construct adeno-associated virus (AAV) expression system for transforming growth factor β3 (TGFβ3) and detect its biological effect on proteoglycan synthesis of the earlier and later dedifferentiated rabbit lumbar disc nucleus pulpous (NP) cells, which was compared with that of adenovirus (AV) expression system for TGFβ1. Methods TGFβ3 gene was obtained using PCR. Its upstream contained restriction enzyme site Kpn Ⅰ, and its downstream contained restriction enzyme site SalⅠ. Using the restriction enzyme sites of PCR product of TGFβ3 and the corresponding multiple cloning site (MCS) in plasmid AAV, TGFβ3 was subcloned into AAV. The recombinant plasmid AAV-TGFβ3 was transfected into H293 cells with LipofectamineTM 2000, and the expression of TGFβ3 gene was detected using immunofluorescent analysis. After AAV-TGFβ3 virus particle with infectious activity was packaged, TGFβ3 expression in NP cells was detected by immunoblotting, and its biological effect on proteoglycan synthesis was detected by antonopulos method and compared with that of AV-TGFβ1 in the earlier and later dedifferentiated NP cells. Results For the earlier dedifferentiated NP cells, AAV-TGFβ3 slowly and stably enhanced proteoglycan synthesis, but AV-TGFβ1 rapidly and transiently enhanced its synthesis. For the later dedifferentiated NP cells, AAV-TGFβ3 stably enhanced proteoglycan synthesis, but AV-TGFβ1 inhibited its synthesis. Conclusion AAV expression system can mediate TGFβ3 gene to be expressed stably, and AAV-TGFβ3 can enhance proteoglycan synthesis of the earlier and later dedifferentiated NP cells.展开更多
Objective To explore the effects of zinc-0t2-glycoprotein (ZAG) on body weight and body fat in high-fat-diet (HF1))-induced obesity in mice and the possible mechanism. Methods Thirty-six male mice were fed with ...Objective To explore the effects of zinc-0t2-glycoprotein (ZAG) on body weight and body fat in high-fat-diet (HF1))-induced obesity in mice and the possible mechanism. Methods Thirty-six male mice were fed with standard food (SF) (n=9) and HFD (n=27), respectively. Five weeks later, 9 mice fed with HFD were subjected to ZAG expression plasmid DNA transfection by liposome transfection method, and another 9 mice to negative control plasmid transfection. Two weeks later, serum ZAG level in the mice was assayed by Western blot, and the effects of ZAG over-expression on body weight, body fat, serum biochemical indexes, and adipose tissue of obese mice were evaluated. The mRNA expressions of fatty acid synthase (FAS) and hormone sensitive lipase (HSL) in liver tissue were deterlnined by reverse transcription-polymerase chain reaction. Results Serum ZAG level significantly lowered in simple HFD-fed mice in comparison to SF-fed mice (0.51±0.10 AU vs. 0.75±0.07 AU, P〈0.01). Further statistical analysis demonstrated that ZAG level was negatively correlated with body weight (r =-0.56, P〈0.001), epididymal fat mass (r=-0.67, P〈O. 001), percentage of epididymal fat (r= 0.65, P〈0.001), and increased weight (r= 0.57, P〈0.001) in simple SF- and HFD fed mice. ZAG over-expression in obese mice reduced body weight and the percentage of epididyreal fat. Furthermore, FAS mRNA expression decreased (P〈0.01) and HSL mRNA expression increased (P〈0.001) in the liver in ZAG over-expressing mice. Conclusions ZAG is closely related to obesity. Serum ZAG level is inversely correlated with body weight and percentage of body fat. The action of ZAG is associated with reduced FAS expression and increased HSL expression in the liver of obese mice.展开更多
文摘近日,中国农业科学院哈尔滨兽医研究所基础免疫团队郑永辉研究员和王斌博士在国际上首次阐明了埃博拉病毒囊膜糖蛋白的合成机制,为抗埃博拉病毒药物的研发提供了新的理论依据。相关研究成果于2月14日在国际著名学术期刊《生物化学杂志(The Journal of Biological Chemistry)》上在线发表。
基金Supported by the National Natural Sciences Foundation of China(30271318).
文摘Objective To construct adeno-associated virus (AAV) expression system for transforming growth factor β3 (TGFβ3) and detect its biological effect on proteoglycan synthesis of the earlier and later dedifferentiated rabbit lumbar disc nucleus pulpous (NP) cells, which was compared with that of adenovirus (AV) expression system for TGFβ1. Methods TGFβ3 gene was obtained using PCR. Its upstream contained restriction enzyme site Kpn Ⅰ, and its downstream contained restriction enzyme site SalⅠ. Using the restriction enzyme sites of PCR product of TGFβ3 and the corresponding multiple cloning site (MCS) in plasmid AAV, TGFβ3 was subcloned into AAV. The recombinant plasmid AAV-TGFβ3 was transfected into H293 cells with LipofectamineTM 2000, and the expression of TGFβ3 gene was detected using immunofluorescent analysis. After AAV-TGFβ3 virus particle with infectious activity was packaged, TGFβ3 expression in NP cells was detected by immunoblotting, and its biological effect on proteoglycan synthesis was detected by antonopulos method and compared with that of AV-TGFβ1 in the earlier and later dedifferentiated NP cells. Results For the earlier dedifferentiated NP cells, AAV-TGFβ3 slowly and stably enhanced proteoglycan synthesis, but AV-TGFβ1 rapidly and transiently enhanced its synthesis. For the later dedifferentiated NP cells, AAV-TGFβ3 stably enhanced proteoglycan synthesis, but AV-TGFβ1 inhibited its synthesis. Conclusion AAV expression system can mediate TGFβ3 gene to be expressed stably, and AAV-TGFβ3 can enhance proteoglycan synthesis of the earlier and later dedifferentiated NP cells.
基金Supported by the National Natural Science Foundation of China (30771026)Beijing Natural Science Foundation (7082079)
文摘Objective To explore the effects of zinc-0t2-glycoprotein (ZAG) on body weight and body fat in high-fat-diet (HF1))-induced obesity in mice and the possible mechanism. Methods Thirty-six male mice were fed with standard food (SF) (n=9) and HFD (n=27), respectively. Five weeks later, 9 mice fed with HFD were subjected to ZAG expression plasmid DNA transfection by liposome transfection method, and another 9 mice to negative control plasmid transfection. Two weeks later, serum ZAG level in the mice was assayed by Western blot, and the effects of ZAG over-expression on body weight, body fat, serum biochemical indexes, and adipose tissue of obese mice were evaluated. The mRNA expressions of fatty acid synthase (FAS) and hormone sensitive lipase (HSL) in liver tissue were deterlnined by reverse transcription-polymerase chain reaction. Results Serum ZAG level significantly lowered in simple HFD-fed mice in comparison to SF-fed mice (0.51±0.10 AU vs. 0.75±0.07 AU, P〈0.01). Further statistical analysis demonstrated that ZAG level was negatively correlated with body weight (r =-0.56, P〈0.001), epididymal fat mass (r=-0.67, P〈O. 001), percentage of epididymal fat (r= 0.65, P〈0.001), and increased weight (r= 0.57, P〈0.001) in simple SF- and HFD fed mice. ZAG over-expression in obese mice reduced body weight and the percentage of epididyreal fat. Furthermore, FAS mRNA expression decreased (P〈0.01) and HSL mRNA expression increased (P〈0.001) in the liver in ZAG over-expressing mice. Conclusions ZAG is closely related to obesity. Serum ZAG level is inversely correlated with body weight and percentage of body fat. The action of ZAG is associated with reduced FAS expression and increased HSL expression in the liver of obese mice.