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The Human CD4+ T Cell Response against Mumps Virus Targets a Broadly Recognized Nucleoprotein Epitope
Jelle de Wit1, Maarten E Emmelot2, Martien C M Poelen2
1Centre for Infectious Disease Control, National Institute for Public Health and the Environment, Bilthoven, The Netherlands jelle.de.wit@rivm.nl.
Abstract:
Mumps outbreaks among vaccinated young adults stress the need for a better understanding of mumps virus (MuV)-induced immunity. Antibody responses to MuV are well characterized, but studies on T cell responses are limited. We recently isolated a MuV-specific CD4+ T cell clone by stimulating peripheral blood mononuclear cells (PBMCs) from a mumps case with the viral nucleoprotein (MuV-N). In this study, we further explored the identity and relevance of the epitope recognized by the CD4+ T cell clone and ex vivo by T cells in a cohort of mumps cases. Using a two-dimensional matrix peptide pool of 15-mer peptides covering the complete MuV-N, we identified the epitope recognized by the T cell clone as MuV-N110-124 GTYRLIPNARANLTA, present in a well-conserved region of the viral protein. Upon peptide-specific stimulation, the T cell clone expressed the activation marker CD137 and produced gamma interferon, tumor necrosis factor, and interleukin-10 in a HLA-DR4-restricted manner. Moreover, the CD4+ T cells exerted a cytotoxic phenotype and specifically killed cells presenting MuV-N110-124 Furthermore, the identified peptide is widely applicable to the general population since it is predicted to bind various common HLA-DR molecules, and epitope-specific CD4+ T cells displaying cytotoxic/Th1-type properties were found in all tested mumps cases expressing different HLA-DR alleles. This first broadly recognized human MuV-specific CD4+ T cell epitope could provide a useful tool to detect and evaluate virus-specific T cell responses upon MuV infection or following vaccination.IMPORTANCE Recent outbreaks of mumps among vaccinated young adults have been reported worldwide. Humoral responses against mumps virus (MuV) are well characterized, although no correlate of protection has been elucidated, stressing the need to better understand cellular MuV-specific immunity. In this study, we identified the first MuV T cell epitope, which is derived from the viral nucleoprotein (MuV-N) and was recognized by a cytotoxic/Th1 CD4+ T cell clone that was isolated from a mumps case. Moreover, the epitope was predicted to bind a broad variety of common HLA-DRB1 alleles, which was confirmed by the epitope-specific cytotoxic/Th1 CD4+ T cell responses observed in multiple mumps cases with various HLA-DRB1 genotypes. The identified epitope is completely conserved among various mumps strains. These findings qualify this promiscuous MuV T cell epitope as a useful tool for further in-depth exploration of MuV-specific T cell immunity after natural mumps virus infection or induced by vaccination.
Insights
Researchers identified a key mumps virus (MuV) nucleoprotein epitope (MuV-N110-124) recognized by cytotoxic CD4+ T cells. This broadly applicable T cell epitope can help assess immunity after mumps infection or vaccination.
Area of Science:
- Immunology
- Virology
- Vaccinology
Background:
- Mumps virus (MuV) outbreaks in vaccinated populations highlight gaps in understanding immunity.
- While antibody responses are known, T cell responses to MuV are less understood.
- There is a need for correlates of protection to evaluate vaccine efficacy and natural immunity.
Purpose of the Study:
- To identify and characterize a specific T cell epitope recognized by CD4+ T cells in mumps cases.
- To investigate the relevance and applicability of this epitope in a broader population.
- To explore the functional properties of T cells recognizing this epitope.
Main Methods:
- Isolated a MuV-specific CD4+ T cell clone from a mumps patient.
- Used a peptide pool of the MuV nucleoprotein (MuV-N) to identify the epitope.
- Analyzed T cell activation (CD137), cytokine production (IFN-γ, TNF, IL-10), and cytotoxic activity.
- Assessed epitope binding to various HLA-DR molecules and ex vivo T cell responses in mumps cases.
Main Results:
- Identified MuV-N110-124 (GTYRLIPNARANLTA) as the epitope recognized by the CD4+ T cell clone.
- The T cell clone exhibited cytotoxic properties and produced key inflammatory cytokines in an HLA-DR4-restricted manner.
- The MuV-N110-124 epitope is conserved and predicted to bind diverse HLA-DR alleles, with corresponding T cell responses found in mumps cases.
Conclusions:
- The identified MuV-N110-124 epitope is the first broadly recognized human MuV-specific CD4+ T cell epitope.
- This epitope elicits cytotoxic/Th1 CD4+ T cell responses applicable across different HLA-DR genotypes.
- It serves as a valuable tool for assessing cellular immunity following mumps infection or vaccination.
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