Title of article :
Comparative study of immunological and structural properties of two recombinant vaccine candidates against botulinum neurotoxin type E
Author/Authors :
Rostamian, Mosayeb imam hossein university - faculty of basic sciences - Department of Biology, تهران, ايران , Mousavy, Jafar imam hossein university - Faculty of Basic Sciences - Department of Biology, تهران, ايران , Ebrahimi, Firouz imam hossein university - Faculty of Basic Sciences - Department of Biology, تهران, ايران , Ghadami, Abolghasem razi university - Faculty of Sciences - Department of Biology, كرمانشاه, ايران , Ghadami, Abolghasem kermanshah university of medical sciences - Medical Biology Research Center, ايران , Sheibani, Nader university of wisconsin - School of Medicine and Public Health - Department of Ophthalmology and Visual Sciences and Pharmacology, USA , Minaei, Mohammad Ebrahim imam hossein university - faculty of basic sciences - department of biology, تهران, ايران , Arefpour Torabi, Mohammad Ali imam hossein university - faculty of basic sciences - department of biology, تهران, ايران
Abstract :
Background: Recently, botulinum neurotoxin (BoNT)-derived recombinant proteins have been suggested as potential botulism vaccines. Here, with concentrating on BoNT type E (BoNT/E), we studied two of these binding domain-based recombinant proteins: a multivalent chimer protein, which is composed of BoNT serotypes A, B and E binding subdomains, and a monovalent recombinant protein, which contains 93 amino acid residues from recombinant C-terminal heavy chain of BoNT/E (rBoNT/E-HCC). Both proteins have an identical region (48 aa) that contains one of the most important BoNT/E epitopes (YLTHMRD sequence). Methods: The recombinant protein efficiency in antibody production, their structural differences, and their BoNT/E-epitope location were compared by using ELISA, circular dichroism, computational modeling, and hydrophobicity predictions. Results: Immunological studies indicated that the antibody yield against rBoNT/E-HCC was higher than chimer protein. Cross ELISA confirmed that the antibodies against the chimer protein recognized rBoNT/E-HCC more efficiently. However, both antibody groups (anti-chimer and anti-rBoNT/E-HCC antibodies) were able to recognize other proteins. Structural studies with circular dichroism showed that chimer proteins have slightly more secondary structures than rBoNT/E-HCC. Conclusion: The immunological results suggested that the above-mentioned identical region in rBoNT/E-HCC is more exposed. Circular dichroism, computational protein modeling and hydrophobicity predictions indicated a more exposed location for the identical region in rBoNT/E-HCC than the chimer protein, which is strongly in agreement with immunological results.
Keywords :
(BoNT , E) , Botulinum neurotoxin type , Circular dichroism , Computational modeling , Cross ELISA , Recombinant vaccine , candidates
Journal title :
Iranian Biomedical Journal(IBJ)
Journal title :
Iranian Biomedical Journal(IBJ)