| Literature DB >> 17224052 |
Eva Jordan1, Michael Hust, Andreas Roth, Rebekka Biedendieck, Thomas Schirrmann, Dieter Jahn, Stefan Dübel.
Abstract
BACKGROUND: Recombinant antibodies are essential reagents for research, diagnostics and therapy. The well established production host Escherichia coli relies on the secretion into the periplasmic space for antibody synthesis. Due to the outer membrane of gram-negative bacteria, only a fraction of this material reaches the medium. Recently, the gram-positive bacterium Bacillus megaterium was shown to efficiently secrete recombinant proteins into the growth medium. Here we evaluated B. megaterium for the recombinant production of antibody fragments.Entities:
Year: 2007 PMID: 17224052 PMCID: PMC1797049 DOI: 10.1186/1475-2859-6-2
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Figure 1Construction of plasmid pEJBmD1.3scFv for the production of scFv antibody fragment D1.3 in B. megaterium. The complete scFv ORF plus the complete promoter region were verified by nucleotide sequencing. Abbreviations: bla: β-lactamase gene for ampicillin resistence; colE1: E. coli origin of plasmid replication; F1 IR: intergenic region of phage f1; gIII: fd phage gene III; His-tag: synthetic tag binding to 6xhistidine; ori: B. megaterium origin of plasmid replication; P: promoter of the bacterial lac operon; P: xylose inducible promoter; RBS: ribosome binding site; repU: a gene essential for plasmid replication in B. megaterium; scFv: single chain fragment variable; SPlipA: signal peptide sequence of B. megaterium extracellular esterase LipA; SPpelB: signal peptide sequence of bacterial pectate lyase; strep-tag II: synthetic tag binding to streptactin; terminator: sequence terminating transcription; tet: tetracyclin resistence gene; VH: sequence encoding the variable fragment of the heavy chain; VL: sequence encoding the variable fragment of the light chain chain; xylR: xylose repressor
Figure 2Impact of the cultivation temperature on the scFv production. Production of functional antibodies was analyzed by antigen binding ELISA of D1.3 scFvs of 50 μL culture supernatant after 24 h production in 100 mL scale. Mean values and standard deviations of data obtained from three different cultures are given. Antigens: 1 μg/well lysozyme or 1 μg/well control protein BSA. The D1.3 antibodies were detected using mAb mouse anti-His and goat anti-mouse IgGHRP (Fab specific).
Figure 3Impact of different culture media on the production of functional scFvs. A Antigen binding ELISA with 50 μL culture supernatant from 18 h production in 100 mL scale, performed as described in figure 2. Mean values and standard deviations of data obtained from three different cultures are given. B Immunoblot of culture supernatant. Ammonium sulfate precipated scFvs from 1.5 mL supernatant were separated by reducing SDS-PAGE (12 %) and detected using mAb mouse anti-His and goat anti-mouse IgG AP (Fab specific).
Figure 4Impact of the production time on the yield of functional scFvs (TB medium, 41°C). A Antigen binding ELISA with 50 μL culture supernatant from different time points, performed as described in figure 2 and 3. Mean values and standard deviations of data obtained from three different cultures are given. B Immunoblot of produced scFvs. Ammonium sulphate precipated scFvs from 1 mL supernatant were separated by reducing SDS-PAGE (12 %) and detected as described in figure 3.
Figure 5Antigen ELISA of purified D1.3 scFv from E. coli or Bacillus megaterium. Antigen: 1 μg/well lysozyme. The detection was performed as described in figure 2-4.
| EJoligoHisTermf | 5' cg ccg ctc atc acc atc acc atc act aaa aag ccc tca atg aag agg gct ttt ttt aa 3' |
| EJoligoHisTermr | 5' ccg gtt aaa aaa agc cct ctt cat tga ggg ctt ttt agt gat ggt gat ggt gat gag cgg ccg cat g 3' |
| EJopSplipAf | 5' cgc agt gta caa tga aaa aag tat taa tgg ctt tca tta ttt gtt tat cat taa ttt tat cag tat tag c 3' |
| EJopSplipAr | 5' cgc aga gat ctt caa tgc ggc gct agc acc tga tgg tgg agc agc taa tac tga taa aat taa tga taa 3' |
| EJD1.3NheIf | 5' cgc agg cta gcg ccg aag tta aac tgc agg agt cag gac ct 3' |
| EJD1.3r | 5' cgc agg cgg ccg cct tca gct cga 3' |
| XylRfor | 5' ata aag agc tca agg aga caa agg aat ggt tat tat tca aat tgc 3' |
| XylRrev | 5' agg ctg cat gcc gtt cac tta act aac tta tag g 3' |