Peptides for inducing cytotoxic T lymphocyte responses to hepatitis B virus
Peptides are used to define epitopes that stimulate HLA-restricted cytotoxic T lymphocyte activity against hepatitis B virus antigens. The peptides are derived from regions of HBV polymerase, and are particularly useful in treating or preventing HBV infection, including methods for stimulating the immune response of chronically infected individuals to respond to HBV antigens.
1. An HBV immunogenic peptide of 50 amino acids or less in length, wherein said immunogenic peptide comprises HB pol 526-535 (Phe-Leu-Leu-Ala-Gln-Phe-Thr-Ser-Ala-Ile; SEQ ID NO:30), and wherein said immunogenic peptide binds to an appropriate HLA molecule to form a complex recognized by cytotoxic T cells wherein said cytotoxic T cells recognize a native HBV antigen.
2. The HBV immunogenic peptide of claim 1 , wherein said immunogenic peptide is 25 amino acids or less in length.
3. The HBV immunogenic peptide of claim 1 , wherein said immunogenic peptide is 10 or 11 amino acids in length.
4. The HBV immunogenic peptide of claim 1 , wherein said immunogenic peptide consists of HB pol 526-535 (Phe-Leu-Leu-Ala-Gln-Phe-Thr-Ser-Ala-Ile; SEQ ID NO:30).
5. An immunogenic composition comprising an HBV immunogenic peptide of 50 amino acids or less in length and a pharmaceutically acceptable carrier, wherein said immunogenic peptide comprises HB pol 526-535 (Phe-Leu-Leu-Ala-Gln-Phe-Thr-Ser-Ala-Ile; SEQ ID NO:30), and wherein said immunogenic peptide binds to an appropriate HLA molecule to form a complex recognized by cytotoxic T cells wherein said cytotoxic T cells recognize a native HBV antigen.
6. The immunogenic composition of claim 5 , wherein said immunogenic peptide is 25 amino acids or less in length.
7. The immunogenic composition of claim 5 , wherein said immunogenic peptide is 10 or 11 amino acids in length.
8. The immunogenic composition of claim 5 , wherein said immunogenic peptide consists of HB pol 526-535 (Phe-Leu-Leu-Ala-Gln-Phe-Thr-Ser-Ala-Ile; SEQ ID NO:30).
9. The immunogenic composition of claim 5 , wherein said peptide is in an immunogenically effective human dose and said pharmaceutically acceptable carrier is in a human dose.
10. The immunogenic composition of claim 5 , wherein said pharmaceutically acceptable carrier comprises a liposome.
11. The immunogenic peptide of claim 1 , wherein said peptide is located in a host cell, and is the result of expression of a recombinant nucleic acid molecule that encodes said immunogenic peptide and has been introduced into the host cell.
12. The immunogenic peptide of claim 11 , wherein said recombinant nucleic acid molecule that encodes said immunogenic peptide also encodes at least one additional peptide.
13. The immunogenic composition of claim 5 , wherein said composition further comprises a second immunogenic peptide.
14. The immunogenic composition of claim 13 , wherein said second immunogenic peptide elicits a T-helper cell-mediated immune response.
15. The immunogenic composition of claim 13 , wherein said second immunogenic peptide elicits a cytotoxic T lymphocyte response.
16. The immunogenic composition of claim 13 , wherein said immunogenic peptide and said second immunogenic peptide are conjugated to form a heteropolymer.
17. The immunogenic composition of claim 5 , wherein said peptide is in an immunogenically effective human dose and said pharmaceutically acceptable carrier is in a human dose.
18. The HBV immunogenic peptide of claim 1 , further comprising a carrier coupled thereto.
19. The HBV immunogenic peptide of claim 1 , further comprising a lipid coupled thereto.
20. A method of stimulating a cytotoxic T cell response, said method comprising administering the peptide of claim 1 , or a nucleic acid encoding said peptide, to a subject.
21. A method of stimulating a cytotoxic T cell response, said method comprising administering the peptide of claim 1 , or a nucleic acid encoding said peptide, to lymphocytes ex vivo.
22. The method of claim 21 , further comprising administering the lymphocytes to a subject.