| Literature DB >> 19389242 |
Hanna-Riikka Kärkkäinen1, Hanna P Lesch, Antti I Määttä, Pyry I Toivanen, Anssi J Mähönen, Miia M Roschier, Kari J Airenne, Olli H Laitinen, Seppo Ylä-Herttuala.
Abstract
BACKGROUND: Baculovirus expression vector system (BEVS) has become a standard in recombinant protein production and virus-like particle preparation for numerous applications.Entities:
Year: 2009 PMID: 19389242 PMCID: PMC2680411 DOI: 10.1186/1756-0500-2-63
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Figure 1Construction of the modified baculovirus shuttle vector, F-bacmid. Transposition reaction was used to transfer the EGFP cassette into isolated baculovirus genome (bacmid). The MuA transposase provided the proteins needed for the integration reaction. The resultant F-bacmid was analysed for the EGFP cassette integration site. The site was found to be in the ODV-E66 gene.
Figure 2Comparison of protein production rate of the F-bacmid and original bacmid in insect and mammalian cells. Medium was harvested from insect and mammalian cells at 96 and 48 hours after virus addition, respectively. Equal amount of total protein was loaded into immunoblots. (A) The VEGF-DΔNΔC production in insect cells analyzed by ELISA. (B) Immunoblot of VEGF-DΔNΔC production in insect cells. Lanes 1–4 represent medium samples of FG-VEGF-DΔNΔC produced by conventional bacmid system and the three F-bacmid produced VEGF-DΔNΔC. Lanes 5–8 show cell lysates from the same samples. Lane 9 is the positive control for VEGF-D. (C) Lanes 1–4 are the medium samples from two avidin controls produced by conventional bacmid system (lanes 1 and 2) compared to two F-bacmid produced avidins (lanes 3–4). Lanes 5–8 are cell lysates from the same samples. Lane 9 is positive control for avidin. (D) ELISA results for theVEGF-DΔNΔC production in mammalian cells. (E) An immunoblot analysis of avidin production in mammalian cells. Lanes 1 and 2 represent HepG2 medium samples of avidin control and F-bacmid avidin, respectively. Lanes 3–4 show the medium samples from BT4C cells, and lanes 5 and 6 from avidin produced in SKOV 3 cells. Lane 7 is the positive control for avidin. (M) Marker (SeeBlue® PreStained Standard, Invitrogen).
Figure 3Titer determination by flow cytometer. (A) Titers of two virus samples (A and B) analyzed three times by the 18 h fluorescent based flow cytometric assay and end-point dilution method. (B) Consistency of the titers determined by flow cytometer after 18 hours of incubation. (C) Titer determined with flow cytometer 24 hours post infection led to overestimation of virus titer. In average titer determined 24 hours post infection were 4 times higher than the ones determined 18 hours post infection. This might be due to viral spread and secondary infections. (D) Comparison of the end-point titer and the titer determined by flow cytometer. Correlation coefficient (R = 0.9924) indicated good correlation between the two titration methods.
Virus constructs and their titers obtained with end-point dilution and flow cytometer method.
| 6.85E+08 | 4.30E+08 | 4 | 3.71E+08 | 1.19E+08 | 6 | |
| 1.20E+08 | 0.0 | 2 | 8.44E+08 | 4.08E+08 | 6 | |
| 2.57E+09 | 1.06E+09 | 2 | 1.77E+09 | 9.55E+08 | 8 | |
| 4.25E+08 | 2.01E+08 | 4 | 3.12E+08 | 8.56E+07 | 2 | |
| 1.67E+10 | 3.62E+09 | 4 | 2.99E+10 | 2.99E+10 | 12 | |
| 2.48E+10 | 2.40E+10 | 4 | 6.19E+09 | 1.66E+09 | 6 |
Titers are shown as averages of multiple analyses.
Figure 4Virus generation in 96-well format. (A) Percentage of EGFP positive wells as a sign of virus formation in the 96-well plates in 5 independent trials. (B) Flow cytometric analysis of the EGFP percentage in independent wells from 3 to 7 days post infection. (C) A representative well showing EGFP production in F-bacmid VEGF-DΔNΔC tranfected cells 7 days post transfection (10 × magnification). (D) Protein production in 96-well plates. Sf9 cells were infected with VEGF-DΔNΔC and avidin encoding F-bacmid viruses and infection was allowed to continue for 7 days. The upper immunoblot shows VEGF-DΔNΔC production and the lower immunoblot avidin production. (M) Marker (SeeBlue® PreStained Standard, Invitrogen).