| Literature DB >> 19788761 |
Georgios Skretas1, Sean Carroll, Shawn DeFrees, Marc F Schwartz, Karl F Johnson, George Georgiou.
Abstract
BACKGROUND: The presence of terminal, surface-exposed sialic acid moieties can greatly enhance the in vivo half-life of glycosylated biopharmaceuticals and improve their therapeutic efficacy. Complete and homogeneous sialylation of glycoproteins can be efficiently performed enzymically in vitro but this process requires large amounts of catalytically active sialyltransferases. Furthermore, standard microbial hosts used for large-scale production of recombinant enzymes can only produce small quantities of glycosyltransferases of animal origin, which lack catalytic activity. RESULTS ANDEntities:
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Year: 2009 PMID: 19788761 PMCID: PMC2762462 DOI: 10.1186/1475-2859-8-50
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Plasmids used in this work
| FLAG-ST6-His8 | AmpR | ColE1 | This work | |
| MBP-ST6 | KanR | ColE1 | This work | |
| Empty vector | CmR | ACYC | Guzman et al.1 | |
| Trigger Factor | CmR | ACYC | Ref. [ | |
| Signal sequence-less DsbA (ΔssDsbA) | CmR | ACYC | Ref. [ | |
| Signal sequence-less DsbC (ΔssDsbC) | CmR | ACYC | Ref. [ | |
| DnaK/DnaJ | CmR | ACYC | Perez-Perez et al.2 | |
| GroEL/GroES | CmR | ACYC | Perez-Perez et al.2 | |
| Signal sequence-less Skp (ΔssSkp) | CmR | ACYC | Ref. [ |
1. Guzman LM, Belin D, Carson MJ, Beckwith J: Tight regulation, modulation, and high-level expression by vectors containing the arabinose PBAD promoter. J Bacteriol 1995, 177(14):4121-4130.
2. Perez-Perez J, Martinez-Caja C, Barbero JL, Gutierrez J: DnaK/DnaJ supplementation improves the periplasmic production of human granulocyte-colony stimulating factor in Escherichia coli. Biochem Biophys Res Commun 1995, 210(2):524-529.
Investigated E. coli Strains with Oxidizing Cytoplasmic Space
| Δ | Boyd et al.1 | |
| Δ | Ref. [ | |
| Ref. [ | ||
| Novagen | ||
| Δ | Ref. [ | |
| Δ | Ref. [ | |
| Δ | Ref. [ | |
| Δ | J. Beckwith |
1. Boyd D, Manoil C, Beckwith J: Determinants of membrane protein topology. Proc Natl Acad Sci USA 1987, 84(23):8525-8529.
Figure 1Comparison of the production of soluble ST6 in wild-type (DHB4) and . Proteins were probed with an anti-polyHis antibody. Lanes contain equal volumes of bacterial culture. MW: molecular weight
Figure 2(A). Comparison of the production of soluble ST6 in Origami™2 cells in the presence of different over-expressed molecular chaperones by Western blotting. (B). Comparison of the production of ST6 (expected molecular weight (MW) ~ 65 KDa) and MBP-ST6 (expected MW ~ 104 KDa) in different fractions of Origami™2 cells by Western blotting. All lanes show similar ST6 band intensities because of signal saturation. Without fusion to MBP, a band corresponding to ST6 could not be detected at the tested short exposure times. Lanes contain equal volumes of bacterial culture. Proteins were probed with an anti-polyHis antibody.
Figure 3(A). Chemical structure of the synthetic sugar donor substrate CMP-sialic acid-PEG. (B). Schematic of the developed assay for sialyltransferase activity. 96- or 384-well plates are coated initially with asialo bovine submaxillary mucin (aBSM). aBSM carries exposed terminal GalNAc moieties. Active ST6GalNAcI catalyzes the transfer of sialic acid- PEG4-biotin from the sugar donor substrate CMP-sialic acid-PEG4-biotin onto aBSM and immobilizes biotin on the plate. Biotinylation can be subsequently detected with europium (Eu)-labeled streptavidin and time-resolved fluorescence. (C). Time-resolved (TR) fluorescence counts plotted against different concentrations of chicken ST6 expressed in Sf9 insect cells (positive control enzyme). (D). Detection limit of the sialyltransferase assay. Calculated signal-to-background (no enzyme control) ratios for different concentrations of chicken ST6 expressed in Sf9 insect cells. Asterisks indicate enzyme concentrations that exhibited enzymic activity which was statistically different from the no enzyme control (Dunnett's MCT, p < 0.01). Experiments were carried out in triplicate and the error bars correspond to one standard deviation from the mean values. a.u.: arbitrary units; U: unit of sialyltransferase activity.
Figure 4Time-resolved (TR) fluorescence counts of different concentrations of chicken ST6 expressed in Sf9 insect cells (0, 5, 20 and 50 μU/mL reaction) and of clarified lysates of bacterial cells expressing MBP-ST6. The bacterial strains used were DR611 and Origami 2 cells, without (pBAD33) or with co-expression of the molecular chaperones/co-chaperones trigger factor (Tig), DnaK/DnaJ (DnaK-J), GroEL/GroES (GroEL-ES), and ΔssSkp (Skp). Each sample of bacterial cell lysate contained equal number of cells. Experiments were carried out in replica triplicates and the error bars correspond to one standard deviation from the mean values. a.u.: arbitrary units; U: unit of sialyltransferase activity.