Utilizing Immunoinformatics for mRNA Vaccine Design against Influenza D Virus

Author:

Oladipo Elijah Kolawole1234ORCID,Adeyemo Stephen Feranmi1ORCID,Akinboade Modinat Wuraola2ORCID,Akinleye Temitope Michael15ORCID,Siyanbola Kehinde Favour1ORCID,Adeogun Precious Ayomide16ORCID,Ogunfidodo Victor Michael16ORCID,Adekunle Christiana Adewumi17ORCID,Elutade Olubunmi Ayobami18ORCID,Omoathebu Esther Eghogho19ORCID,Taiwo Blessing Oluwatunmise19ORCID,Akindiya Elizabeth Olawumi2ORCID,Ochola Lucy10,Onyeaka Helen4ORCID

Affiliation:

1. Division of Vaccine Design and Development, Helix Biogen Institute, Ogbomoso 212102, Oyo State, Nigeria

2. Division of Pharmacotherapies Design and Development, Helix Biogen Institute, Ogbomoso 212102, Oyo State, Nigeria

3. Department of Molecular Biology, Immunology and Bioinformatics, Adeleke University, Ede 232104, Osun State, Nigeria

4. Department of Chemical Engineering, University of Birmingham, Edgbaston, Birmingham B12 2TT, UK

5. Department of Anatomy, Advanced Research Center for Tumor Immunology, Inje University College of Medicine, 75 Bokji-ro, Busanjin-gu, Busan 47392, Republic of Korea

6. Department of Pure and Applied Biology, Ladoke Akintola University of Technology, Ogbomoso 212102, Oyo State, Nigeria

7. Department of Science Laboratory Technology, Ladoke Akintola University of Technology, Ogbomoso 212102, Oyo State, Nigeria

8. Department of Biochemistry, Ladoke Akintola University of Technology, Ogbomoso 212102, Oyo State, Nigeria

9. Department of Biological Sciences, Redeemer’s University, Ede PMB230, Osun State, Nigeria

10. Kenya Institute of Primate Research, End of Karen Road 25291, Nairobi 00502, Kenya

Abstract

Background: Influenza D Virus (IDV) presents a possible threat to animal and human health, necessitating the development of effective vaccines. Although no human illness linked to IDV has been reported, the possibility of human susceptibility to infection remains uncertain. Hence, there is a need for an animal vaccine to be designed. Such a vaccine will contribute to preventing and controlling IDV outbreaks and developing effective countermeasures against this emerging pathogen. This study, therefore, aimed to design an mRNA vaccine construct against IDV using immunoinformatic methods and evaluate its potential efficacy. Methods: A comprehensive methodology involving epitope prediction, vaccine construction, and structural analysis was employed. Viral sequences from six continents were collected and analyzed. A total of 88 Hemagglutinin Esterase Fusion (HEF) sequences from IDV isolates were obtained, of which 76 were identified as antigenic. Different bioinformatics tools were used to identify preferred CTL, HTL, and B-cell epitopes. The epitopes underwent thorough analysis, and those that can induce a lasting immunological response were selected for the construction. Results: The vaccine prototype comprised nine epitopes, an adjuvant, MHC I-targeting domain (MITD), Kozaq, 3′ UTR, 5′ UTR, and specific linkers. The mRNA vaccine construct exhibited antigenicity, non-toxicity, and non-allergenicity, with favourable physicochemical properties. The secondary and tertiary structure analyses revealed a stable and accurate vaccine construct. Molecular docking simulations also demonstrated strong binding affinity with toll-like receptors. Conclusions: The study provides a promising framework for developing an effective mRNA vaccine against IDV, highlighting its potential for mitigating the global impact of this viral infection. Further experimental studies are needed to confirm the vaccine’s efficacy and safety.

Publisher

MDPI AG

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