期刊文献+

Construction of Gpm6a/ReelinGFPCreERT2 by BAC recombination using a specific gene in hepatic mesothelial or stellate cells

Construction of Gpm6a/Reelin^(GFPCreERT2) by BAC recombination using a specific gene in hepatic mesothelial or stellate cells
下载PDF
导出
摘要 AIM To prepare a Gpm6a/Reelin^(GFPCreERT2) construct with a rapid and reliable strategy using a bacterial artificial chromosome(BAC). METHODS Gpm6 a and Reelin BACs were purified and transformed into SW102 E. coli by electroporation. The GFPCreE RT2 fragment was prepared from a shuttle vector and transformed into SW102 E. coli carrying a BAC. Homologous recombination was induced in SW102 E. coli. Recombinant clones were screened and confirmed by PCR and restriction enzyme digestion. Recombinant clones were transformed into SW102 E. coli to remove the kanamycin unit.RESULTS A complete BAC was successfully transformed into SW102 E. coli by electroporation because BAC purified from SW102 E. coli showed the same pattern as the original BAC with Bam H I digestion. The GFPCre ERT2 fragment was deemed to have been prepared successfully because we obtained the same size fragment as expected. Homologous recombination was induced, and GFPCre ERT2 was deemed to have been inserted into the correct site of the BAC because we found the band change was the same as the expected pattern after restriction enzyme digestion. The kanamycin unit was deemed to have been removed successfully because we obtained different sizes of bands that were consistent with the results expected by PCR with different primers. CONCLUSION The construct of Gpm6 a^(GFPCreERT2) or Reelin^(GFPCreERT2) was prepared successfully, which will establish a foundation for tracing the hepatic stellate cell lineage and studying its function. AIM To prepare a Gpm6a/Reelin(GFPCreERT2) construct with a rapid and reliable strategy using a bacterial artificial chromosome (BAC). METHODS Gpm6a and Reelin BACs were purified and transformed into SW102 E. coli by electroporation. The GFPCreERT2 fragment was prepared from a shuttle vector and transformed into SW102 E. coli carrying a BAC. Homologous recombination was induced in SW102 E. coli. Recombinant clones were screened and confirmed by PCR and restriction enzyme digestion. Recombinant clones were transformed into SW102 E. coli to remove the kanamycin unit. RESULTS A complete BAC was successfully transformed into SW102 E. coli by electroporation because BAC purified from SW102 E. coli showed the same pattern as the original BAC with BamHI digestion. The GFPCreERT2 fragment was deemed to have been prepared successfully because we obtained the same size fragment as expected. Homologous recombination was induced, and GFPCreERT2 was deemed to have been inserted into the correct site of the BAC because we found the band change was the same as the expected pattern after restriction enzyme digestion. The kanamycin unit was deemed to have been removed successfully because we obtained different sizes of bands that were consistent with the results expected by PCR with different primers. CONCLUSION The construct of Gpm6a(GFPCreERT2) or Reelin(GFPCreERT2) was prepared successfully, which will establish a foundation for tracing the hepatic stellate cell lineage and studying its function.
出处 《World Journal of Gastroenterology》 SCIE CAS 2017年第2期224-231,共8页 世界胃肠病学杂志(英文版)
基金 Supported by National Natural Science Foundation of China,No.81300349 and No.81270532 the Beijing Natural Science Foundation,No.7144216 the Beijing Nova Program,No.Z131107000413016 the Project of Science and Technology Activities of Preferred Overseas Personnel of Beijing(2014) the Project of Cultivation of High Level Medical Technical Personnel in the Health System of Beijing,No.2014-3-090 and No.2013-3-071 Beijing Municipal Institute of public medical research development and reform pilot project,No.2016-2
关键词 Bacterial artificial chromosome Homologous recombination Glycoprotein M6a REELIN 细菌的人工的染色体;相应再结合;Glycoprotein M6a;Reelin
  • 相关文献

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部