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OPTIMIZATION OF CANINE INTERLEUKIN-12 PRODUCTION USING A BACULOVIRUS INSECT CELL EXPRESSION SYSTEM
Autor
Afiliación
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil / CAPES. Programa de Pós‑graduação em Biotecnologia em Saúde e Medicina Investigativa. Salvador, BA, Brasil
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil
Fundação Oswaldo Cruz. Bio-Manguinhos. Laboratório de Macromoléculas. Rio de Janeiro, RJ, Brasil
Wageningen University. Laboratory of Virology. Wageningen, The Netherlands
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil / Instituto Nacional de Ciência e Tecnologia de Doenças Tropicais (INCT-DT). Salvador, BA, Brasil
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil
Fundação Oswaldo Cruz. Bio-Manguinhos. Laboratório de Macromoléculas. Rio de Janeiro, RJ, Brasil
Wageningen University. Laboratory of Virology. Wageningen, The Netherlands
Fundação Oswaldo Cruz. Centro de Pesquisas Gonçalo Moniz. Salvador, BA, Brasil / Instituto Nacional de Ciência e Tecnologia de Doenças Tropicais (INCT-DT). Salvador, BA, Brasil
Resumen en ingles
Interleukin-12 is an important cytokine in mediating cellular immune responses. Results: Recombinant single-chain canine IL-12 was produced in a baculovirus-insect cell system with the aim of
conducting further studies on modulation of immune responses in dogs. To optimize the production of recombinant
canine IL-12, a classical baculovirus and a modified vector (chitinase A and v-cathepsin knockout) were used containing
a native or an optimized insert of canine IL-12. The optimized IL-12 construct contained the GP64 signal peptide
and was synthesized with optimized codons for expression in Trichoplusia ni cells. Dot-blot and Western blot analysis
showed the highest production levels of recombinant IL-12 protein by the use of the modified baculovirus vector
containing the optimized insert, at a multiplicity of infection of five and at 48 h after infection. The recombinant
cytokine was successfully purified and showed a good degree of purity, integrity, folding, and yield, with very little
endotoxin contamination. Recombinant canine IL-12 induced IFN-γ in canine lymphocytes, indicating that it was
biologically active.
Conclusion: Therefore, this study describes an efficient method to produce adequate amounts of biologically active
canine IL-12, useful for immunomodulation studies in dogs
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