Post-translational modifications such as citrullination are excellent targets for cancer therapy
V A Brentville1, M Vankemmelbeke1, R L Metheringham1
1Scancell Ltd, University of Nottingham Biodiscovery Institute, Science Road, University Park, Nottingham, NG7 2RD, UK.
Abstract:
Under conditions of cellular stress, proteins can be post-translationally modified causing them to be recognized by the immune system. One such stress-induced post-translational modification (siPTM) is citrullination, the conversion of arginine residues to citrulline by peptidylarginine deiminase (PAD) enzymes. PAD enzymes are activated by millimolar concentrations of calcium which can occur during apoptosis, leading to precipitation of proteins, their subsequent uptake by B cells and stimulation of antibody responses. Detection of anti-citrullinated protein antibodies (ACPAs) is a diagnostic of rheumatoid arthritis (RA), where immune complexes stimulate inflammation around the joints. More recently, autophagy has been shown to play a role in the presentation of citrullinated peptides on MHC class II molecules to CD4+ helper T cells, suggesting that citrullination may be a way of alerting immune cells to cellular stress. Additionally, inflammation-induced IFNγ and concomitant MHC class II expression on target cells contributes to immune activation. Stressful conditions in the tumor microenvironment induce autophagy in cancer cells as a pro-survival mechanism. Cancer cells also over express PAD enzymes and in light of this the hypothesis that citrullinated peptides stimulate CD4+ T cell responses that would recognize these siPTM's produced during autophagy has been investigated. The induction of potent citrullinated peptide-specific CD4 responses has been shown in both humans and HLA transgenic mouse models. Responses in mouse models resulted in potent anti-tumour responses against tumours expressing either constitutive or IFNγ-inducible MHC class II. The anti-tumour effect relied upon direct recognition of tumours by specific CD4 T cells suggesting that citrullinated peptides are attractive targets for cancer vaccines.
Insights
Stress-induced citrullination of proteins alerts the immune system. Citrullinated peptides can stimulate CD4+ T cell responses, offering potential for cancer vaccines targeting tumors expressing MHC class II.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Cellular stress can trigger post-translational modifications (PTMs), altering protein recognition by the immune system.
- Citrullination, converting arginine to citrulline via peptidylarginine deiminase (PAD) enzymes, is a stress-induced PTM (siPTM) linked to rheumatoid arthritis.
- Autophagy and inflammation-induced IFNγ contribute to the presentation of citrullinated peptides, activating immune cells.
Purpose of the Study:
- To investigate if citrullinated peptides, generated during autophagy in cancer cells, stimulate CD4+ T cell responses.
- To evaluate the anti-tumor potential of these T cell responses against tumors expressing MHC class II.
Main Methods:
- Investigated the induction of citrullinated peptide-specific CD4+ T cell responses in humans and HLA transgenic mouse models.
- Assessed anti-tumor responses in mouse models against tumors with constitutive or IFNγ-inducible MHC class II expression.
Main Results:
- Demonstrated the induction of potent citrullinated peptide-specific CD4+ T cell responses in both human and mouse models.
- Observed potent anti-tumor effects in mouse models, mediated by direct recognition of tumors by specific CD4+ T cells.
Conclusions:
- Citrullinated peptides presented during cellular stress and autophagy can elicit robust CD4+ T cell immunity.
- These findings suggest that citrullinated peptides are promising targets for developing novel cancer vaccines.
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