BACKGROUND: Bacillus subtilis is a very important Gram-positive model organism of high biotechnological relevance, which is widely used as a host for the production of both secreted and cytoplasmic proteins. We developed a novel and efficient expression system, based on the liaI promoter (PliaI) from B. subtilis, which is under control of the LiaRS antibiotic-inducible two-component system. In the absence of a stimulus, this promoter is kept tightly inactive. Upon induction by cell wall antibiotics, it shows an over 100-fold increase in activity within 10 min.
RESULTS: Based on these traits of PliaI, we developed a novel LiaRS-controlled gene expression system for B. subtilis (the "LIKE" system). Two expression vectors, the integrative pLIKE-int and the replicative pLIKE-rep, were constructed. To enhance the performance of the PliaI-derived system, site-directed mutagenesis was employed to optimize the ribosome binding site and alter its spacing to the initiation codon used for the translational fusion. The impact of these genetic modifications on protein production yield was measured using GFP as a model protein. Moreover, a number of tailored B. subtilis expression strains containing different markerless chromosomal deletions of the liaIH region were constructed to circumvent undesired protein production, enhance the positive autoregulation of the LiaRS system and thereby increase target gene expression strength from the PliaI promoter.
CONCLUSIONS: The LIKE protein expression system is a novel protein expression system, which offers a number of advantages over existing systems. Its major advantages are (i) a tightly switched-off promoter during exponential growth in the absence of a stimulus, (ii) a concentration-dependent activation of PliaI in the presence of suitable inducers, (iii) a very fast but transient response with a very high dynamic range of over 100-fold (up to 1,000-fold) induction, (iv) a choice from a range of well-defined, commercially available, and affordable inducers and (v) the convenient conversion of LIKE-derived inducible expression strains into strong constitutive protein production factories.
Science. 2012 Mar 2;335(6072):1099-103
[PMID:
22383848]
Mol Microbiol. 1992 May;6(9):1105-14
[PMID:
1375309]
Biochim Biophys Acta. 2004 Nov 11;1694(1-3):299-310
[PMID:
15546673]
Mol Microbiol. 2003 Dec;50(5):1591-604
[PMID:
14651641]
Microb Cell Fact. 2012 May 24;11:66
[PMID:
22624725]
Gene. 1996 Nov 21;180(1-2):57-61
[PMID:
8973347]
Appl Environ Microbiol. 2011 Sep;77(18):6419-25
[PMID:
21803899]
Anal Biochem. 1987 Nov 1;166(2):368-79
[PMID:
2449095]
J Bacteriol. 2002 Oct;184(20):5733-45
[PMID:
12270832]
Gene. 1999 Feb 4;227(1):101-10
[PMID:
9931458]
Appl Environ Microbiol. 2005 Dec;71(12):8818-24
[PMID:
16332878]
Biotechnol Adv. 2007 Jan-Feb;25(1):1-12
[PMID:
16997527]
J Microbiol Methods. 2008 Sep;75(1):70-4
[PMID:
18558445]
Microbiology (Reading). 2005 May;151(Pt 5):1577-1592
[PMID:
15870467]
Proteomics. 2007 Nov;7(22):4032-5
[PMID:
17994626]
Mol Gen Genet. 1996 Feb 5;250(2):230-6
[PMID:
8628223]
Appl Environ Microbiol. 2004 Nov;70(11):6887-91
[PMID:
15528558]
Environ Microbiol. 2006 Aug;8(8):1408-27
[PMID:
16872404]
Can J Microbiol. 2004 Jan;50(1):1-17
[PMID:
15052317]
J Bacteriol. 2006 Jul;188(14):5153-66
[PMID:
16816187]
Electrophoresis. 1988 Jun;9(6):255-62
[PMID:
2466658]
Adv Appl Microbiol. 2007;62:137-89
[PMID:
17869605]
J Bacteriol. 2010 Sep;192(18):4680-93
[PMID:
20639339]
Protein Expr Purif. 2007 Jun;53(2):264-9
[PMID:
17307364]
Appl Environ Microbiol. 2001 Jan;67(1):403-10
[PMID:
11133472]
FEMS Microbiol Rev. 2008 Jan;32(1):107-46
[PMID:
18173394]
J Biotechnol. 2004 Mar 18;108(3):207-17
[PMID:
15006422]
J Biotechnol. 2010 Aug 20;149(1-2):16-20
[PMID:
20600378]
Appl Microbiol Biotechnol. 2005 Oct;68(6):705-17
[PMID:
16088349]
J Bacteriol. 2001 Oct;183(19):5617-31
[PMID:
11544224]
Res Microbiol. 2010 Nov;161(9):791-7
[PMID:
20863884]
Gene. 1996;173(1 Spec No):33-8
[PMID:
8707053]
Microbiologyopen. 2012 Jun;1(2):194-213
[PMID:
22950025]
Med Res Rev. 2003 Nov;23(6):697-762
[PMID:
12939790]
Mol Microbiol. 2001 Jul;41(1):59-71
[PMID:
11454200]
Microbiology (Reading). 2009 Jun;155(Pt 6):1758-1775
[PMID:
19383706]
Bioessays. 2008 Jun;30(6):542-55
[PMID:
18478531]
Microbiology (Reading). 2007 Aug;153(Pt 8):2530-2540
[PMID:
17660417]
Antimicrob Agents Chemother. 2004 Aug;48(8):2888-96
[PMID:
15273097]
Biosci Biotechnol Biochem. 2006 Apr;70(4):757-67
[PMID:
16636439]
Antimicrob Agents Chemother. 2011 Feb;55(2):515-25
[PMID:
21078927]
Science. 2012 Mar 2;335(6072):1103-6
[PMID:
22383849]
Mol Microbiol. 2008 May;68(3):768-85
[PMID:
18394148]
Microbiology (Reading). 2010 Jun;156(Pt 6):1600-1608
[PMID:
20150235]
Nucleic Acids Res. 1979 Nov 24;7(6):1513-23
[PMID:
388356]
Anti-Bacterial Agents
Bacillus subtilis
Bacterial Proteins
Gene Expression Regulation, Bacterial
Genetic Engineering
Green Fluorescent Proteins
Promoter Regions, Genetic
Recombinant Proteins