Comparison of transient and stable expression of foot-and-mouth disease virus capsid proteins in mammalian cells
- 1 Instituto de Virología, Instituto Nacional de Tecnología Agropecuaria, Hurlingham, Argentina
- 2 Instituto de Virología, Instituto Nacional de Tecnología Agropecuaria, Hurlingham, Argentina
- 3 Instituto de Virología, Instituto Nacional de Tecnología Agropecuaria, Hurlingham, Argentina
Abstract
Foot-and-mouth disease is a highly contagious disease that produces severe economic losses in the livestock industry. This disease is being controlled by the use of an inactivated vaccine. However, the use of recombinant empty capsids as a subunit vaccine has been reported to be a promising candidate because it avoids the use of virus in the vaccine production. A plasmid containing the capsid precursor P12A and protease 3C sequences of foot-and-mouth disease virus (FMD V) was constructed and used to compare transient and stable expression in mammalian cells. When BHK-21 cells were transfected with the recombinant vector, protease 3C cleaved the capsid precursor P12A into the structural proteins VP0, VP1 and VP3. A sucrose gradient demonstrated that the structural proteins assembled into different subviral particles. Attempts to generate a stable cell line only allowed isolating low-level-expressing clones, probably due to the effect of protease 3C on the cells. Moreover, the recombinant protein yield achieved in transient expression assays was much higher than the one achieved in stable expression assays. Results indicate that mammalian cells are a good strategy to produce recombinant FMDV subviral particles. However, the alternative approach of transient gene expression in scalable systems should be used instead of the standard method that involves the generation of a stable cell line.
- Grubman, M. and Baxt, B. (2004) Foot-and-mouth disease. Clinical Microbiology Reviews, 17, 465-493. http://dx.doi.org/10.1128/CMR.17.2.465-493.2004
- Belsham, G. (1993) Distinctive features of foot-and-mouth disease virus, a member of the picornavirus family; aspects of virus protein synthesis, protein processing and structure. Progress in Biophysics and Molecular Biology, 60, 241-260. http://dx.doi.org/10.1016/0079-6107(93)90016-D
- Doel, T.R. (2003) FMD vaccines. Virus Research, 91, 81-99. http://dx.doi.org/10.1016/S0168-1702(02)00261-7
- Parida, S. (2009) Vaccination against foot-and-mouth disease virus: Strategies and effectiveness. Expert Reviews Vaccines, 8, 347-365. http://dx.doi.org/10.1586/14760584.8.3.347
- Grubman, M.J. (2005) Development of novel strategies to control foot-and-mouth disease: Marker vaccines and antivirals. Biologicals, 33, 227-234. http://dx.doi.org/10.1016/j.biologicals.2005.08.009
- Cao, Y., Lu, Z., Sun, J., Bai, X., Sun, P., Bao, H., et al. (2009) Synthesis of empty capsid-like particles of Asia I foot-and-mouth disease virus in insect cells and their immunogenicity in guinea pigs. Veterinary Microbiology, 137, 10-17. http://dx.doi.org/10.1016/j.vetmic.2008.12.007
- Li, Z., Yi, Y., Yin, X., Zhang, Y., Liu, M., Liu, H., et al. (2012) Development of a foot-and-mouth disease virus serotype A empty capsid subunit vaccine using silkworm (Bombyx mori) pupae. PLoS One, 7, e43849. http://dx.doi.org/10.1371/journal.pone.0043849
- Porta, C., Kotecha, A., Burman, A., Jackson, T., Ren, J., Loureiro, S., et al. (2013) Rational engineering of recombinant picornavirus capsids to produce safe, protective vaccine antigen. Plos Pathogens, 9, e1003255. http://dx.doi.org/10.1371/journal.ppat.1003255
- Baldi, L., Hacker, D.L., Adam, M. and Wurm, F.M. (2007) Recombinant protein production by large-scale transient gene expression in mammalian cells: State of the art and future perspectives. Biotechnolology Letters, 29, 677-684. http://dx.doi.org/10.1007/s10529-006-9297-y
- Capozzo, A.V.E., Burke, D.J., Fox, J.W., Bergmann, I.E., La Torre, J.L. and Grigera, P.R. (2002) Expression of foot and mouth disease virus non-structural polypeptide 3ABC induces histone H3 cleavage in BHK-21 cells. Virus Research, 90, 91-99. http://dx.doi.org/10.1016/S0168-1702(02)00140-5
- Strong, R. and Belsham, G.J. (2004) Sequential modification of translation initiation factor eIF4GI by two different foot-and-mouth disease virus proteases within infected baby hamster kidney cells: Identification of the 3Cpro cleavage site. Journal of General Virology, 85, 2953-2962. http://dx.doi.org/10.1099/vir.0.80254-0