Influenza A virus vaccines and inhibitors
The present invention includes compositions and methods related to the structure and function of the cellular polyadenylation and specificity factor 30 (CPSF30) binding site on the surface of the influenza A non-structural protein 1 (NS1). Specifically, critical biochemical reagents, conditions for crystallization and NMR analysis, assays, and general processes are described for (i) discovering, designing, and optimizing small molecule inhibitors of influenza A (avian flu) viruses and (ii) creating attenuated influenza virus strains suitable for avian and human flu vaccine development.
1. An isolated crystal of protein complex comprising residues 85 to 215 of non-structural protein 1 (NS1) of influenza A virus as set forth in SEQ ID NO: 1 and cellular polyadenylation and specificity factor 30 (CPSF30) F2F3 fragment as set forth in SEQ ID NO: 2, wherein the crystal has space group P4 1 , and unit cell parameters a=b=50.96 Å, c=205.39 Å and α=β=γ=90°.
2. An isolated protein complex comprising non-structural protein 1 (NS1) of influenza A virus comprising amino acids 85 to 215 of SEQ ID NO: 1 in complex with cellular polyadenylation and specificity factor 30 (CPSF30) F2F3 fragment consisting of amino acids as set forth in SEQ ID NO: 2.
3. The isolated protein complex of claim 2 , wherein the complex comprises a tetramer interface.
4. The isolated protein complex of claim 3 , wherein the tetramer interface comprises atoms of residues F103, L105, M106 of influenza strain A/Udorn/72.
5. The isolated protein complex of claim 2 , wherein the complex comprises a CPSF30-binding epitope comprising M106, K110, I117, I119, Q121, D125, L144, V180, G183, G184, W187 of influenza strain A/Udorn/72.