Characterisation of a new molecule based on two E2 sequences from bovine viral diarrhoea-mucosal disease virus fused to the human immunoglobulin Fc fragment

Author:

González Pose Alaín1,Montesino Seguí Raquel1,Maura Pérez Rafael1,Hugues Salazar Florence1,Cabezas Ávila Ignacio2,Altamirano Gómez Claudia3,Sánchez Ramos Oliberto4,Roberto Toledo Jorge1

Affiliation:

1. Biotechnology and Biopharmaceutical Laboratory, Pathophysiology Department, School of Biological Sciences, University of Concepcion , Victor Lamas 1290, P.O. Box 160-C , Concepcion , Chile

2. Large Animal Clinic, Clinical Sciences Department, School of Veterinary Sciences, University of Concepcion , Vicente Mendez 595, P.O. Box 537 , Chillan , Chile

3. School of Biochemical Engineering, Pontifical Catholic University of Valparaiso, Valparaiso, Chile CREAS CONICYT-Regional, GORE Valparaiso , Universidad Avenue 300, Placilla, Curauma , Valparaiso , Chile

4. Recombinant Biopharmaceuticals Laboratory, Pharmacology Department, School of Biological Sciences, University of Concepcion , Victor Lamas 1290, P.O. Box 160-C , Concepcion , Chile

Abstract

Abstract Introduction Proper conformational arrangement of the E2 molecules of bovine viral diarrhoea-mucosal disease virus (BVD-MDV) is crucial to obtain an effective recombinant vaccine candidate against the disease. In this study, we characterised a new molecule composed of two distinct sequences of the E2 glycoprotein of BVD-MDV and the Fc fragment of human immunoglobulin (BVDE2Fc). Materials and Methods The chimaeric protein was expressed in mammalian cell lines of different species by adenoviral transduction and purified by immobilised metal-affinity chromatography. The N-glycans were profiled by HPLC, and the BVDE2Fc immunogenicity was assessed in male mice. The antigen-antibody reactions were evaluated by ELISA. Results The MDBK cell line was selected from among five for the final production of BVDE2Fc. After purification to over 90%, the N-glycan profile showed neutral and complex oligosaccharides. The mouse immunisation induced a strong humoral response, which produced antibodies able to attach to conformational epitopes on E2 molecules, while the Fc fragment barely contributed to the immune response. Additionally, BVDE2Fc attached to antibodies from bovine sera positive to distinct BVD-MDV subtypes, whereas the loss of BVDE2Fc structure during the deglycosylation process considerably diminished those interactions. Conclusion These results demonstrate that the structure of E2 molecules arranged in tandem and attached to an Fc fragment could represent a viable design for future vaccine candidates against BVD-MD.

Publisher

Walter de Gruyter GmbH

Subject

General Veterinary

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