Expression of Serratia marcescens Metalloprotease(SMP)Gene in Escherichia coli and Serratia marcescens

대장균과 Serratia marcescens에서 Serratia marcescens Metalloprotease(SMP) 유전자의 발현

  • 김기석 (경상대학교 미생물학과) ;
  • 정재연 (경상대학교 미생물학과) ;
  • 박군식 (경상대학교 미생물학과) ;
  • 김태운 (지산전문대학 임상병리과) ;
  • 변시명 (한국과학기술원 생명과학과) ;
  • 신용철 (경상대학교 미생물학과)
  • Published : 1995.06.01

Abstract

To investigate high-level expression of Serratia marcescens metalloprotease (SMP) in Escherichia coli and S. marcescens, we constructed various recombinant plasmids: pSP2, containing SMP gene and lac promoter; pKSP2, containing SMP gene and tac promoter; pTSP2, containing SMP gene, trc99a promoter, and lacI$^{q}$. The recombinant E. coli (pKSP2) strain expressed SMP to a high-level, about 36% of total cellular proteins but accumulated inactive SMP precursors intracellularly, which indicated that E. coli does not have activation and secretion system for SMP. To overproduce active SMP, we transformed S. marcescens with the recombinant plasmids by a modified CaCl$_{2}$ method. The recombinant S. marcescens ATCC27117 (pSP2) containing lac promoter for SMP transcription produced 530 U/ml of active SMP on LB broth, which is about 5.1 times of the SMP yield, 105 U/ml of a control strain, S. marcescens ATCC27117 (pUC19). However, S. marcescens ATCC27117 (pKSP2) containing tac promoter for SMP transcription did not grow healthy and hardly produced SMP. To overcome a harmful effect of the strong tac promoter, we constructed a regulatory plasmid pTSP2 containing a strong trc99a promoter and its repressor gene lacI$^{q}$. When S. marcescens ATCC27117 (pTSP2) was induced with 1.0 mM IPTG after 9 hr cultivation, 2,200 U/ml of SMP was obtained in LB broth, which is about 21 times of that of a control strain.

Keywords

References

  1. Appl. Microbiol. Biotechnol. v.30 Construction of threonine-hyperproducing strain of Serratia marcescens by amplifying the phosphoenolpyruvate carboxylase gene Sugita,T.;S.Komatsubara
  2. J. Gen. Microbiol. v.119 Transductional construction of an isoleucine-producing strain of Serratia marcescens Komatsubara,S.;M.Kisumi;I.Chibata
  3. U.S. Patent 4,455,372 Method for fermentative production of L-proline Chibata,I.;M.Kisumi;M.Sugiura;T.Takagi
  4. Appl. Environ. Microbiol. v.34 L-Histidine production by histidine less regulatory mutants of Serratia marcescens constructed by transduction Kisumi,M.N.;Nakanishi;T.Takagi;I.Chibata
  5. Appl. Environ. Microbiol. v.59 Construction of a biotinoverproduction strain of Serratia marcescens Sakurai,N.;Y.Imai;M.Masuda;S.Komatsubara;T.Tosa
  6. Appl. Environ. Microbiol. v.59 Molecular breeding of a biotin-hyperproducing Serratia marcescens strain Sakurai,N.;Y.Imai;M.Masuda;S.Komatsubara;T.Tosa
  7. J. Bacteriol. v.171 Characterization of the precursor of Serratia marcescens serine protease and COOH-terminal processing of the precursor during its excretion through the outer membrane of Escherichia coli Miyazaki,H.;N.Yanagida;S.Horinouchi;T.Beppu
  8. Gene v.125 Cloning. sequencing and expression of a minor protease-encoding gene from Serratia marcescens ATCC21074 Kwon,Y.T.;H.H.Lee;H.M.Rho
  9. Arch. Microbiol. v.124 Excretion of a protease by Serratia marcescens Braun,V.;G.Schmitz
  10. Can. J. Microbiol. v.25 Regulation of extracellular protease formation by Serratia marcescens Bromke,B.J.;J.M.Hammel
  11. U.S. patent 3,691,014 Method for producing protease Isono,M.;K.Tomoda;K.Miyata;K.Maejima;R.Kodama
  12. Kor. Jour. Microbiol. v.30 Autodigestion and stability of metalloprotease purified from Serratia marcescens ATCC 21074 Kim,K.S.;C.W.Lee;B.R.Lee;Y.C.Shin
  13. Kor. J. Appl. Microbiol. Biotechnol. v.20 Molecular cloning of Serratia marcescens metalloprotease gene into Escherichia coli Kim,K.S.;C.W.Lee;S.Y.Lee;B.R.Lee;Y.C.Shin
  14. Nucleic Acids Res. v.14 Cloning and sequencing of Serratia protease gene Nakahama,K.;K.Yoshimura;R.Marumoto;M.Kikuchi;I.S.Lee;T.Hase;H.Matsubara
  15. J. Bacteriol. v.173 Cloning and expression in Escherichia coli of the Serratia marcescens metalloprotease gene:Secretion of the protease from E. coli in the presence of the Erwinia chrysanthemi protease secretion functions Letoffe,S.;P.Delepelaire;C.Wandersman
  16. Mol. Gen. Genet. v.222 The metalloprotease gene of Serratia marcescens strain SM6 Braunagel,S.C.;M.J.Benedik
  17. J. Bacteriol. v.161 Cell-bound and secreted proteases of Serratia marcescens Schmitz,G.;V.Braun
  18. J. Bacteriol. v.166 Specific excretion of Serratia marcescens protease through the outer membrane of Escherichia coli Yanagida,N.;T.Uozumi;T.Beppu
  19. J. Bacteriol. v.174 Production of active Serratia marcescens metalloprotease from Escherichia coli by α-hemolysin HlyB and HlyD Suh,Y.;M.J.Benedik
  20. Molecular Cloning: A Laboratory Manual Smbrook,J.;E.F.Fritsch;T.Maniatis
  21. DNA cloning: A Practical Approach v.I Techniques for transformation of E. coli. Hanahan,D.;D.M.Glover(ed.)
  22. Mol. Gen. Genet. v.186 Cloning and expression of a Bacillus coagulans amylase gene in E. coli Cornelis,P.;C.Digneffe;K.Willemot
  23. Nature v.227 Cleavage of structural proteins during the assembly of the head of bacteriophage T4 Laemmli,U.K.
  24. J. Bacteriol. v.244 An extracellular nuclease from Serratia marcescens. I. Purification and some properties of the enzyme Nestlei,M.;W.K.Roberts
  25. Gene v.57 The extracellular nuclease gene of Serratia marcescens and its secretion from Escherichia coli Ball,T.K.;P.N.Saurugger;M.J.Benedik
  26. Gene v.17 Efficient transformation of Serratia marcescens with pBR322 plasmid DNA Reid,J.D.;S.D.Stofer;D.M.Ogrydziak
  27. Gene v.22 A genetic system for analysis of staphylococcal nuclease Shortle,D.
  28. Korean Biochem. J. v.25 Properties of a plasmidencoded extracellular nuclease of Serratia marcescens purified from E. coli JM107 transformant Jeon,Y.H.;K.H.Kim;H.Y.Kwon;Y.C.Shin;M.J.Cho;S.Y.Lee
  29. J. Bacteriol. v.161 Isolation of a versatile Serratia marcescens mutants as a host and molecular cloning of the aspartase gene Takagi,R.;M.Kisumi
  30. Mol. Gen. Genet. v.197 Isolation of a Serratia marcescens mutants which is an efficient recipient for the E. coli episome Takata,R.;M.Aoyagi