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Alberto Martini

Publications and source records attributed to Alberto Martini.

38 records · Page 3Linked to original sources

Self epitopes shared between human skeletal myosin and Streptococcus pyogenes M5 protein are targets of immune responses in active juvenile dermatomyositis.

OBJECTIVE: To identify self T cell epitopes associated with proinflammatory immune responses and clinically active juvenile dermatomyositis (juvenile DM). The target of our search for relevant epitopes was represented by amino acid sequences shared between human skeletal myosin and Streptococcus pyogenes M5 protein. The long-term objective of the project is to identify suitable targets for immunotherapy of the disease. METHODS: We used computerized algorithms to identify putative agretopes on both the human myosin and Streptococcus M5 proteins. Direct binding assays for homolog peptides were used to confirm such predictions. Antigenicity and functional cross-reactivity were evaluated by cytotoxicity assays and by measurement of cytokine levels. Specific T cells were isolated by T cell capture, and T cell receptor (TCR) V(beta) gene usage was identified by reverse transcriptase-polymerase chain reaction. RESULTS: We identified peptides that are targets of disease-specific cytotoxic T cell responses. T cell reactivity against the self peptides correlates with clinical signs of early, active myositis. Such reactivity is accompanied by production of proinflammatory cytokines, which may contribute to the damage. T cell cross-recognition of bacterial and human homologs was shown functionally as well as by sorting peptide-specific T cells and identifying oligoclonal and largely overlapping TCR V(beta) gene usage. CONCLUSION: These findings represent the first identification of a self epitope in juvenile DM, providing a potential candidate for antigen-specific immune therapy.

Bacterial Proteins↗

Genetic immunization maps T cell (auto)immune responses to self antigens homologous to exogenous proteins.

Genetic immunization represents a new tool for investigating physiological and pathological immune responses. Here we used genetic immunization with naked DNA to study the immune relevance of aminoacid sequence homologies by evaluating the outcome of immunization to a viral protein homologous to an HLA molecule. The viral protein was Balf2, a protein of Epstein-Barr virus (EBV) that shares aminoacid sequence homology with the HLA allele DRB1*0801. After genetic immunization of BALB/c mice with a construct encoding Balf2, we analyzed T cell responses of immunized mice. We found that cross-reactive proliferative and cytotoxic responses were raised to the homologous sequence as expressed by HLA-DRB1*0801. Furthermore, preferential secretion of Th1-type pro-inflammatory cytokines occurred. This strategy can allow rapid screening of interactive immune networks involving aminoacid sequence homologies between organisms.

Amino Acid Sequence↗