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Motif of HLA-B*3503 peptide ligands

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References

  • Beck, Y., Satz, L., Takamiya, Y., Nakayama, S., Ling, L., Ishikawa, Y., Nagao, T., Uchida, H., Tokunaga, K., Müller, C. A., Juji, T., and Takiguchi, M. Polymorphism of human minor histocompatibility antigens: T cell recognition of human minor histocompatibility peptides presented by HLA-B35 subtype molecules. J Exp Med 181: 2037–2048, 1995

    Google Scholar 

  • Bodmer, J. G., Marsh, S. G. E., Albert, E. D., Bodmer, W. F., Bontrop, R. E., Charron, D., Dupont, B., Erlich, H. A., Mach, B., Mayr, W. R., Parham, P., Sasazuki, T., Schreuder, G. M. T., Strominger, J. L., Svejgaard, A., and Terasaki, P. I. Nomenclature for factors of the HLA system, 1995. Tissue Antigens 46: 1–18, 1995

    Google Scholar 

  • Falk, K., Rötzschke, O., Stevanović, S., Jung, G., and Rammensee, H.-G. Allele-specific motifs revealed by sequencing of self-peptides eluted from MHC molecules. Nature 351: 290–296, 1991

    Google Scholar 

  • Falk, K., Rötzschke, O., Grahovac, B., Schendel, D. J., Stevanović, S., Jung, G., and Rammensee, H.-G. Peptide motifs of HLA-B35 and-B37 molecules. Immunogenetics 38: 161–162, 1993

    Google Scholar 

  • Falk, K., Rötzschke, O., Takiguchi, M., Gnau, V., Stevanović, S., Jung, G., and Rammensee, H.-G. Peptide motifs of HLA-B51, B52, and-B78 molecules and implications for Behcet's disease. Int Immunol 7: 223–228, 1995

    Google Scholar 

  • Gunning, P., Leavitt, J., Muscat, G., Ng, S.-Y., and Kedes, L. A human β-actin expression vector system directs high-level accumulation of antisense transcripts. Proc Natl Acad Sci USA 84: 4831–4835, 1987

    Google Scholar 

  • Hill, A. V. S., Elvin, J., Willis, A. C., Aidoo, M., Allsopp, C. E. M., Gotch, F. M., Gao, X. M., Takiguchi, M., Greenwood, B. M., Townsend, A. R. M., McMichael, A. J., and Whittle, H. C. Molecular analysis of the association of HLA-B53 and resistance to severe malaria. Nature 360: 434–439, 1992

    Google Scholar 

  • Itescu, S., Rose, S., Dwyer, E., and Winchester, R. Grouping HLA-B locus seralogic specificities according to shared structural motifs suggests that different peptide-anchoring pockets may have contrasting influences on the course of HIV-1 infection. Hum Immunol 42: 81–89, 1995

    Google Scholar 

  • Matsumura, M., Fremont, D. H., Peterson, P. A., and Wilson, I. A. Emerging principles for the recognition of peptide antigens by MHC class I molecules. Science 257: 927–934, 1992

    Google Scholar 

  • Parham, P. and Bodmer, W. F. Monoclonal antibody to a human histocompatibility alloantigen, HLA-A2. Nature 276: 397–399, 1978

    Google Scholar 

  • Perarnau, B. M., Gillet, A. C., Hakem, R., Barad, M., and Lemonnier, F. A. Human beta 2-microglobulin specifically enhances cell surface expression of HLA class I molecules in transfected murine cells. J Immunol 141: 1383–1389, 1988

    Google Scholar 

  • Ragupathi, G., Cereb, N., and Yang, S. Y. The relative distribution of B35 alleles and their IEF isotypes in a HLA-B35-positive population. Tissue Antigens 46: 24–31, 1995

    Google Scholar 

  • Rammensee, H.-G. Chemistry of peptides associated with MHC class I and class II molecules. Curr Opin Immunol 7: 85–96, 1995

    Google Scholar 

  • Rowland-Jones, S., Sutton, J., Ariyoshi, K., Dong, T., Gotch, F., McAdam, S., Whitby, D., Sabally, S., Gallimore, A., Corrah, T., Takiguchi, M., Schultz, T., McMichael, A., and Whittle, H., HIV-specific cytotoxic T-cells in HIV-exposed but uninfected Gambian women. Nature Medicine 1: 59–64, 1995

    Google Scholar 

  • Schönbach, C., Ibe, M., Shiga, H., Takamiya, Y., Miwa, K., Nokihara, K., and Takiguchi, M. Fine tuning of peptide binding to HLA-B*3501 molecules by nonanchor residues. J Immunol 154: 5951–5958, 1995

    Google Scholar 

  • Sidney, J., Del Guercio, M.-F., Southwood, S., Engelhard, V. H., Appella, E., Rammensee, H.-G., Falk, K., Rötzschke, O., Takiguchi, M., Kubo, R. T., Grey, H. M., and Sette, A. Several HLA alleles share overlapping peptide specificities. J Immunol 154: 247–259, 1995

    Google Scholar 

  • Steinle, A., Reinhardt, C., Nössner, E., Uchanska-Ziegler, B., Ziegler, A., and Schendel, D. J. Microheterogeneity in HLA-B35 alleles influences peptide-dependent allorecognition by cytotoxic T cells but not binding of a peptide-restricted monoclonal antibody. Hum Immunol 38: 261–269, 1993

    Google Scholar 

  • Tiwari, J. L. and Terasaki, P. I. HLA and Disease Associations, Springer, New York, 1985

    Google Scholar 

  • Trapani, J. A., Mizuno, S., Kang, S. H., Yang, S. Y., and Dupont, B. Molecular mapping of a new public HLA class I epitope shared by all HLA-B and HLA-C antigens and defined by a monoclonal antibody. Immunogenetics 29: 25–32, 1989

    Google Scholar 

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Steinle, A., Falk, K., Rötzschke, O. et al. Motif of HLA-B*3503 peptide ligands. Immunogenetics 43, 105–107 (1995). https://doi.org/10.1007/BF00186615

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