期刊文献+

Construction, Expression and Identification of a Recombinant BCG Vaccine Encoding Human Mycobacterium Tuberculosis Heat Shock Protein 65 被引量:3

Construction, Expression and Identification of a Recombinant BCG Vaccine Encoding Human Mycobacterium Tuberculosis Heat Shock Protein 65
下载PDF
导出
摘要 Heat shock protein 65 (HSP65) is one of the most important protective immunogens against the tuberculosis infection. The signal sequence of antigen 85B and the whole HSP65 DNA sequence of human Mycobacterium tuberculosis (M. tuberculosis) were amplified from BCG genome and plasmid pCMV-MTHSP65 respectively by polymerase chain reactions (PCR). These two sequences were cloned into the plasmid pBCG-2100 under the control of the promoter of heat shock protein 70 (HSP70) from human M. tuberculosis, yielding the prokaryotic shuttle expression plasmid pBCG-SP-HSP65. Results of restriction endonuclease analysis, PCR detection and DNA sequencing analysis showed that the two cloned DNA sequences were consistent with those previously reported, and the direction of their inserting into the recombinant was correct and the reading frame had been maintained. The recombinants were electroporated into BCG to construct the recombinant BCG vaccine and induced by heating. The induced expression detected by SDS-PAGE showed that the content of 65 kD protein expressed in recombinant BCG was 35.69 % in total bacterial protein and 74.09 % in the cell lysate supernatants, suggesting that the recombinant HSP65 gene could express in BCG with high efficiency and the expressed proteins were mainly soluble. Western-blot showed that the secretive recombinant proteins could specifically combine with antibody against M. tuberculosis HSP65, indicating that the recombinant proteins possess the biological activity of HSP65. Heat shock protein 65 (HSP65) is one of the most important protective immunogens against the tuberculosis infection. The signal sequence of antigen 85B and the whole HSP65 DNA sequence of human Mycobacterium tuberculosis (M. tuberculosis) were amplified from BCG genome and plasmid pCMV-MTHSP65 respectively by polymerase chain reactions (PCR). These two sequences were cloned into the plasmid pBCG-2100 under the control of the promoter of heat shock protein 70 (HSP70) from human M. tuberculosis, yielding the prokaryotic shuttle expression plasmid pBCG-SP-HSP65. Results of restriction endonuclease analysis, PCR detection and DNA sequencing analysis showed that the two cloned DNA sequences were consistent with those previously reported, and the direction of their inserting into the recombinant was correct and the reading frame had been maintained. The recombinants were electroporated into BCG to construct the recombinant BCG vaccine and induced by heating. The induced expression detected by SDS-PAGE showed that the content of 65 kD protein expressed in recombinant BCG was 35.69 % in total bacterial protein and 74.09 % in the cell lysate supernatants, suggesting that the recombinant HSP65 gene could express in BCG with high efficiency and the expressed proteins were mainly soluble. Western-blot showed that the secretive recombinant proteins could specifically combine with antibody against M. tuberculosis HSP65, indicating that the recombinant proteins possess the biological activity of HSP65.
出处 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2004年第2期107-111,123,共6页 华中科技大学学报(医学英德文版)
基金 ThestudywassupportedbygrantsfromtheNationalNaturalScienceFoundationofChina (No.30 370 0 75 )
关键词 heat shock proteins Mycobacterium tuberculosis BCG vaccine gene expression genetic vectors heat shock proteins Mycobacterium tuberculosis BCG vaccine gene expression genetic vectors
  • 相关文献

参考文献10

  • 1Marting E.Driving stake into resurgent TB[].Science.2001
  • 2Agger E M.A novel TB vaccine towards a strategy based on our understanding of BCG failure[].Vaccine.2002
  • 3Kaufmann,S H,Vath,U,Thole,J E.Enumeration of T cells reactive withMycobacterium tuberculosis organisms and specific for the recombinant mycobacterial 64-kDa protein[].European Journal of Immunology.1987
  • 4Jaber,M,Rattan,A,Verma,A.A simple method of DNA extraction fromMycobacterium tuberculosis[].Tubercle and Lung Disease.1995
  • 5Sambrook,J,Fritsch,EF,Maniatis,T. Molecular cloning: a laboratory manual . 1989
  • 6Cheng J,Huangfu Y,Feng Z et al.Expression of foreign gene in mycobacterium regulated by human Mycobacterium tuberculosis heat shock protein 70 promoter[].Journal of Tongji Medical University.1997
  • 7Shinnick T M.The 65-kilodalton antigen of Mycobacterium tuberculosis[].Journal of Bacteriology.1987
  • 8Lowrie,D B,Silva,C L,Colston,M J.Protection against tuberculosis by a plasmid DNA vaccine[].Vaccine.1997
  • 9Orme I M,Roberts A D,Griffin JP et al.Cytokine secretion by CD4 T lymphocytes acquired in response to Mycobacterium tuberculosis infection[].J Immunol.1993
  • 10Lowrie,D B,Tascon,R E,Bonato,V L.Therapy of tuberculosis in mice by DNA vaccination[].Nature.1999

同被引文献2

引证文献3

二级引证文献13

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