2010Journal of Shandong UniversityRequires access

Construction and expression of a prokaryotic vector encoding outer membrane protein OprF of Pseudomonas aeruginosa

Chengjin Hu

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Abstract

Objective To clone the outer membrane protein OprF of Pseudomonas aeruginosa(PA) ,and to construct and identify a prokaryotic expression plasmid.Methods The DNA genome was extracted from PA,and the carboxyl terminus of the OprF gene was amplified by primers of PCR.The recombinant plasmid pET28b-F was constructed by cloning the OprF cDNA into the prokaryotic expression vector pET28b.After being identified by restriction endonuclease digestion a-nalysis and DNA sequencing,the pET28b-F was transformed into E.coli BL21 and induced by IPTG.The expressed pro-tein was analyzed by SDS-PAGE and Western blot.Monoclonal antibodies(McAbs) against OprF were prepared by the hy-bidoma technique and screened by ELISA.Results The construction of the recombinant expression plasmid pET28b-F was correct by restriction enzyme,PCR and DNA sequencing.Then the expression plasmid expressed a corresponding pro-tein OprF after induction of IPTG.Four McAbs could specifically combine with the OprF protein of PA.Conclusion Successful construction of OprF in the prokaryotic expression vector and specific McAbs established with this method can provide the basis for further research into preparing the specific antibody to OprF and into conveniently detecting PA in wound infection.

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Objective To clone the outer membrane protein OprF of Pseudomonas aeruginosa(PA) ,and to construct and identify a prokaryotic expression plasmid.Methods The DNA genome was extracted from PA,and the carboxyl terminus of the OprF gene was amplified by primers of PCR.The recombinant plasmid pET28b-F was constructed by cloning the OprF cDNA into the prokaryotic expression vector pET28b.After being identified by restriction endonuclease digestion a-nalysis and DNA sequencing,the pET28b-F was transformed into E.coli BL21 and induced by IPTG.The expressed pro-tein was analyzed by SDS-PAGE and Western blot.Monoclonal antibodies(McAbs) against OprF were prepared by the hy-bidoma technique and screened by ELISA.Results The construction of the recombinant expression plasmid pET28b-F was correct by restriction enzyme,PCR and DNA sequencing.Then the expression plasmid expressed a corresponding pro-tein OprF after induction of IPTG.Four McAbs could specifically combine with the OprF protein of PA.Conclusion Successful construction of OprF in the prokaryotic expression vector and specific McAbs established with this method can provide the basis for further research into preparing the specific antibody to OprF and into conveniently detecting PA in wound infection.

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Available abstract

Objective To clone the outer membrane protein OprF of Pseudomonas aeruginosa(PA) ,and to construct and identify a prokaryotic expression plasmid.Methods The DNA genome was extracted from PA,and the carboxyl terminus of the OprF gene was amplified by primers of PCR.The recombinant plasmid pET28b-F was constructed by cloning the OprF cDNA into the prokaryotic expression vector pET28b.After being identified by restriction endonuclease digestion a-nalysis and DNA sequencing,the pET28b-F was transformed into E.coli BL21 and induced by IPTG.The expressed pro-tein was analyzed by SDS-PAGE and Western blot.Monoclonal antibodies(McAbs) against OprF were prepared by the hy-bidoma technique and screened by ELISA.Results The construction of the recombinant expression plasmid pET28b-F was correct by restriction enzyme,PCR and DNA sequencing.Then the expression plasmid expressed a corresponding pro-tein OprF after induction of IPTG.Four McAbs could specifically combine with the OprF protein of PA.Conclusion Successful construction of OprF in the prokaryotic expression vector and specific McAbs established with this method can provide the basis for further research into preparing the specific antibody to OprF and into conveniently detecting PA in wound infection.

Key concepts: Plasmid, Molecular biology, Complementary DNA, Recombinant DNA, lac operon, Restriction enzyme, Biology, Expression vector

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