期刊文献+

Expression of HSV-1 ICP0 Antigen Peptide in Prokaryotic Cells and Preparation of Specific Antibody

Expression of HSV-1 ICP0 Antigen Peptide in Prokaryotic Cells and Preparation of Specific Antibody
暂未订购
导出
摘要 As an immediate-early protein of herpes simplex virus, infected-cell polypeptide 0 (ICP0) exhibits complicated interactions with host cells, and its regulatory function on gene expression is of great importance. Since the ICP0 encoding sequence contains many rare codons which are absent in E.coli, and ICP0 is highly unstable in prokaryotic cells, expression of entire ICP0 in prokaryotic cells has never been reported. In order to further investigate the function of ICP0, a recombinant plasmid was constructed by subcloning a cDNA fragment encoding an amino-terminal of 105 residues of the ICP0 protein into pGEX-5x-1 vector. The resulting GST-105 fusion antigen peptide was expressed with high efficiency in E.coli. Antibodies prepared after the immunization of mice with purified fusion protein can recognize not only the denatured ICP0 protein, but also the native ICP0 protein with normal biological conformation. As an immediate-early protein of herpes simplex virus, infected-cell polypeptide 0 (ICP0) exhibits complicated interactions with host cells, and its regulatory function on gene expression is of great importance. Since the ICP0 encoding sequence contains many rare codons which are absent in E.coli, and ICP0 is highly unstable in prokaryotic cells, expression of entire ICP0 in prokaryotic cells has never been reported. In order to further investigate the function of ICP0, a recombinant plasmid was constructed by subcloning a cDNA fragment encoding an amino-terminal of 105 residues of the ICP0 protein into pGEX-5x-1 vector. The resulting GST-105 fusion antigen peptide was expressed with high efficiency in E.coli. Antibodies prepared after the immunization of mice with purified fusion protein can recognize not only the denatured ICPO protein, but also the native ICPO protein with normal biological conformation.
出处 《中国病毒学》 CSCD 2007年第4期280-286,共7页 Virologica Sinica
基金 National natural science foundation items (30570081 and 30670094)
关键词 ICPO 抗原肽 原核细胞 抗体 单纯疱疹病毒 基因表达 Herpes simplex virus (HSV) ICPO Antigen peptide Prokaryotic expression
  • 相关文献

参考文献14

  • 1Advani S,Hagglund R,Weichselbaum R.2001.Posttranslational processing of infected cell proteins 0 and 4 of herpes simplex virus 1 is sequential and reflects the subcellular compartment in which the proteins localize.J Virol,75 (17):7904 -7912.
  • 2Everett R,Meredith M,Orr A.1997.A novel ubiquitin specific protease is dynamically associated with the PML nuclear domain and binds to a herpesvirus regulatory protein.EMBO J,16 (7):1519-1530.
  • 3Everett R D.1988.Promoter sequences and cell type can dramatically affect the efficiency of transcriptional activation induced by herpes simplex virus type 1 and its Vmw 175 and Vmw 110.J Mol Biol,203 (3):739-751.
  • 4Everett R D,Earnshaw W C,Findlay J.1999.Specific destruction of kinetochore protein CENP-C and disruption of cell division by herpes simplex virus immediate early protein Vmw110.EMBO J,18 (6):1526-1538.
  • 5Kawaguchi Y,Bruni R,Roizman B.1997.Interaction of herpes simplex virus 1 α regulatory protein ICP0 with elongation factor 1δ:ICP0 affects translational machinery.J Virol,71 (2):1019-1024.
  • 6Kawaguchi Y,Tanaka M,Yokoymama A.2001.Herpes simplex virus 1 alpha regulatory protein ICP0 functionally interacts with cellular transcription factor BMAL1.Proc Natl Acad Sci USA,98 (4):1877-1882.
  • 7Kawaguchi Y,VanSant C,Roizman B.1997.Herpes simplex virus 1 α regulatory protein ICP0 interacts with and stabilizes the cell cycle regulator cyclin D3.J Virol,71 (10):7328-7336.
  • 8Lomonte P,Thomas J,Texier P.2004.Functional interaction between Class Ⅱ histone deacetylases and ICP0 of herpes simplex virus type 1.J Virol,78 (13):6744-6757.
  • 9Mitchell C,Blaho J,McCormick A.1997.The nucleotidylylation of herpes simplex virus 1 regulatory protein 22 by human casein kinase Ⅱ.J Biol Chem,272 (40):25394-25400.
  • 10Nabel G J,Rice S A,Knipe D M.1988.Alternative mechanisms for activation of human immunodeficiency virus enhancer in T cells.Science,239 (4845):1299-1302.

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