Constructing adeno-associated virus-TGFbeta3 and comparing its biological effect on proteoglycan synthesis in dedifferentiated nucleus pulpous cells with adenovirus-TGFbeta1.

Jia-Ming Sai, You-Gu Hu, De-Chun Wang
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Abstract

Objective: To construct adeno-associated virus (AAV) expression system for transforming growth factor beta3 (TGFbeta3 ) 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 TGFbeta1.

Methods: TGFbeta3 gene was obtained using PCR. Its upstream contained restriction enzyme site Kpn I, and its downstream contained restriction enzyme site Sal I. Using the restriction enzyme sites of PCR product of TGFbeta3 and the corresponding multiple cloning site (MCS) in plasmid AAV, TGFbeta3 was subcloned into AAV. The recombinant plasmid AAV-TGFbeta3 was transfected into H293 cells with Lipofectamine 2000, and the expression of TGFbeta3 gene was detected using immunofluorescent analysis. After AAV-TGFbeta3 virus particle with infectious activity was packaged, TGFbeta3 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-TGFbeta1 in the earlier and later dedifferentiated NP cells.

Results: For the earlier dedifferentiated NP cells, AAV-TGFbeta3 slowly and stably enhanced proteoglycan synthesis, but AV-TGFbeta1 rapidly and transiently enhanced its synthesis. For the later dedifferentiated NP cells, AAV-TGFbeta3 stably enhanced proteoglycan synthesis, but AV-TGFbeta1 inhibited its synthesis.

Conclusion: AAV expression system can mediate TGFbeta3 gene to be expressed stably, and AAV-TGFbeta3 can enhance proteoglycan synthesis of the earlier and later dedifferentiated NP cells.

构建腺相关病毒tgfbeta3并与腺病毒tgfbeta1比较其对去分化髓核细胞蛋白聚糖合成的生物学效应。
目的:构建转化生长因子β 3 (TGFbeta3)腺相关病毒(AAV)表达系统,检测其对兔腰椎间盘髓核(NP)早、晚去分化细胞蛋白多糖合成的生物学效应,并与腺病毒(AV)表达系统TGFbeta1的生物学效应进行比较。方法:采用PCR法获得TGFbeta3基因。其上游含有限制性内切酶位点Kpn I,下游含有限制性内切酶位点Sal I。利用TGFbeta3 PCR产物的限制性内切酶位点以及质粒AAV中相应的多克隆位点(multiple cloning site, MCS),将TGFbeta3亚克隆到AAV中。将重组质粒AAV-TGFbeta3用Lipofectamine 2000转染H293细胞,免疫荧光法检测TGFbeta3基因的表达。将具有感染活性的AAV-TGFbeta3病毒颗粒包装后,采用免疫印迹法检测TGFbeta3在NP细胞中的表达,采用antonopulos法检测其对蛋白多糖合成的生物学效应,并与AV-TGFbeta1在早、晚去分化NP细胞中的生物学效应进行比较。结果:对于早期去分化的NP细胞,AAV-TGFbeta3缓慢而稳定地促进蛋白多糖的合成,而AV-TGFbeta1快速而短暂地促进蛋白多糖的合成。对于后期去分化的NP细胞,AAV-TGFbeta3稳定地促进了蛋白多糖的合成,而AV-TGFbeta1抑制了其合成。结论:AAV表达系统可介导TGFbeta3基因稳定表达,AAV-TGFbeta3可促进早、晚去分化NP细胞的蛋白多糖合成。
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