Understanding and inducing immunity against rabies and Epstein Barr virus Class III fusion proteins
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AI plain-English summaryRabies and Epstein-Barr virus both rely on a class of viral surface proteins—Class III fusion proteins—that have never been successfully stabilised for use in vaccines. Researchers have now found a way to lock the rabies glycoprotein into its pre-fusion shape, the form that best triggers a protective immune response. They plan to apply the same approach to the gB protein of Epstein-Barr virus (EBV), a herpesvirus linked to cancers and multiple sclerosis. This matters because existing rabies vaccines are costly and require multiple doses, while no licensed EBV vaccine exists. A single-dose, low-cost rabies vaccine could prevent many of the 60,000 annual rabies deaths, mostly in low-income countries. An effective EBV vaccine could reduce the more than 100,000 deaths each year from EBV-driven cancers and potentially prevent multiple sclerosis. The project also investigates whether measuring EBV shedding in saliva can serve as a rapid marker of immune control, which would speed up early-phase vaccine trials. If successful, this work would open a new category of stabilised viral antigens for vaccine development, extending a strategy that has already worked for respiratory syncytial virus and dengue virus to a previously untapped class of fusion proteins.
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