Identification and attenuation of the immunosuppressive domains in fusion proteins of enveloped RNA viruses
The present invention relates to enveloped RNA viruses. The invention in particular relates to the generation of superior antigens for mounting an immune response by first identifying then mutating the immunosuppressive domains in fusion proteins of enveloped RNA viruses resulting in decreased immunosuppressive properties of viral envelope proteins from the viruses.
1. A dimeric form of a synthetic peptide comprising an immunosuppressive domain, wherein the immunosuppressive domain comprises the amino acid sequence of SEQ ID NO:4, and further comprises a cysteine residue at an N-terminal or C-terminal position, and wherein the peptide is dimerized through said cysteine residue.
2. The dimeric form of a synthetic peptide according to claim 1 , wherein said dimerization is through a disulfide bond involving said cysteine residue.
3. The dimeric form of a synthetic peptide according to claim 1 , wherein said peptide comprises the amino acid sequence of SEQ ID NO:214.
4. The dimeric form of a synthetic peptide according to claim 1 , wherein said peptide is derived from a virus different from the group consisting of retrovirus and filovirus.
5. The dimeric form of a synthetic peptide according to claim 1 , wherein said peptide is derived from an influenza virus.
6. The dimeric form of a synthetic peptide according to claim 1 , wherein said peptide is derived from a virus different from lentivirus.
7. The dimeric form of a synthetic peptide according to claim 1 , wherein said peptide is recombinant or obtained by recombinant technology.
8. A pharmaceutical composition comprising the dimeric for of a synthetic peptide according to claim 1 .
9. The pharmaceutical composition according to claim 8 further comprising at least one pharmaceutically acceptable excipient, diluent or carrier.
10. A nucleic acid sequence encoding the synthetic peptide according to claim 1 .
11. An isolated eukaryotic expression vector comprising the nucleic acid sequence according to claim 10 .
12. The isolated eukaryotic expression vector according to claim 11 , wherein said isolated eukaryotic expression vector is a viral vector.
13. The isolated eukaryotic expression vector according to claim 12 , wherein said viral vector is selected from the group consisting of vaccinia virus, measles virus, retroviridae, baculovirus, and adenovirus.