Deciphering influenza B virus-derived peptides and their presentation by HLA class I molecules
Janesha C. Maddumage, Georgia R. Dow, Lawton D. Murdolo, Samuel Liwei Leong, Demetra S.M. Chatzileontiadou, Emma J. Grant, Stephanie GrasAbstract
Despite influenza vaccines being widely available, influenza still causes significant morbidity and mortality annually. Vaccines typically induce humoral-mediated protection against rapidly mutating surface glycoproteins, necessitating that they be updated and administered each year. In contrast, CD8+ T cells, which can control and clear viral infections, can recognise more conserved viral epitopes. Therefore, there is considerable interest in understanding CD8+ T cell responses to influenza virus for the development of future vaccines and therapeutics. Although Alphainfluenzavirus influenzae (FLUAV) and Betainfluenzavirus influenzae (FLUBV) co-circulate in humans and both contribute to seasonal epidemics, there is limited data regarding CD8+ T cell responses to FLUBV. This knowledge gap spans both immunological and molecular insights. In the present review, we summarise the current knowledge of FLUBV-derived CD8+ T cell epitopes at both cellular and molecular levels, in comparison with FLUAV. Collectively, this highlights the limited data available on FLUBV, despite its significant role in human influenza infections.