真核重组质粒pCDNA3.1-Flag-PTEN和原核重组质粒pGEX-6P-1-GST-PTEN构建

    Construction of eukaryotic recombinant plasmid pCDNA3.1-Flag-PTEN and prokaryotic recombinant plasmid pGEX-6P-1-GST-PTEN

    • 摘要:
      目的构建人第10号染色体缺失的磷酸酶(PTEN)真核重组质粒pCDNA3.1-Flag-PTEN和原核重组质粒pGEX-6P-1-GST-PTEN,研究PTEN融合质粒生物学效应。
      方法根据基因库中PTEN序列,设计并合成相关引物。用基因重组技术将目的片段插入pCDNA3.1-Flag和pGEX-6P-1-GST空载质粒中,通过PCR和DNA测序,鉴定插入基因序列。将pCDNA3.1-Flag-PTEN转染到HEK 293细胞,将pGEX-6P-1-GST-PTEN转到E.coli BL-21中,通过Western blotting和考马斯亮蓝染色法分别检测PTEN蛋白的表达。
      结果PCR显示目的基因插入成功;DNA测序显示插入序列与目的基因序列完全一致,无位点突变;Western blotting和考马斯亮蓝染色法证实融合质粒可以在生物体内正确表达。
      结论成功构建PTEN相关真核和原核融合质粒并正确表达,为PTEN在帕金森疾病中的机制研究奠定了基础。

       

      Abstract:
      ObjectiveTo construct the eukaryotic recombinant plasmid pCDNA3.1-Flag-PTEN and prokaryotic recombinant plasmid pGEX-6P-1-GST-PTEN of phosphatase and tension homologue deleted on chromosome ten(PTEN), and study the biological effects of PTEN fusion plasmid.
      MethodsThe primers of PTEN gene were designed according to the sequence in Gene Bank.The target fragment was inserted into pCDNA3.1-Flag and pGEX-6P-1-GST empty vector by genetic recombination technique, and the inserted gene sequence was identified by PCR and DNA sequencing.The pCDNA3.1-Flag-PTEN was transfected into HEK293 cells and pGEX-6P-1-GST-PTEN was transfected into Escherichia coli BL-21.The expression of PTEN protein was detected by Western blot and Coomassie brilliant blue staining.
      ResultsThe PCR results showed that the target gene was successfully inserted.The results of DNA sequencing showed that the inserted sequence was completely consistent with the target gene sequence, and no site-mutation was found.The results of Western blot and Coomassie brilliant blue staining confirmed that the fusion plasmid could be correctly expressed in vivo.
      ConclusionsThe successful construction and correct expression of PTEN in eukaryotic and prokaryotic expression vectors can provide a basis for further study of the mechanism of PTEN in Parkinson's disease.

       

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