Neural Models for Predicting Viral Vaccine Targets
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Vladimir Brusic | Guanglan Zhang | Asif M. Khan | Kellathur N. Srinivasan | J. Thomas August | V. Brusic | Guanglan Zhang | Asif M. Khan | G. Zhang | K. N. Srinivasan | J. August
[1] Obi L. Griffith,et al. The Genome Sequence of the SARS-Associated Coronavirus , 2003, Science.
[2] H. Rammensee,et al. SYFPEITHI: database for MHC ligands and peptide motifs , 1999, Immunogenetics.
[3] Jacek M. Zurada,et al. Introduction to artificial neural systems , 1992 .
[4] S. Marsh. Nomenclature for factors of the HLA system, update September 2003. , 2003, Tissue antigens.
[5] G. Ada. Overview of vaccines. , 1997, Molecular biotechnology.
[6] K. Parker,et al. Scheme for ranking potential HLA-A2 binding peptides based on independent binding of individual peptide side-chains. , 1994, Journal of immunology.
[7] G. Chelvanayagam. A roadmap for HLA-A, HLA-B, and HLA-C peptide binding specificities , 1996, Immunogenetics.
[8] Arne Elofsson,et al. Prediction of MHC class I binding peptides, using SVMHC , 2002, BMC Bioinformatics.
[9] E. Huarte,et al. Specific and general HLA-DR binding motifs: comparison of algorithms. , 2000, Human immunology.
[10] John Sidney,et al. Examining the independent binding assumption for binding of peptide epitopes to MHC-I molecules , 2003, Bioinform..
[11] Vladimir Brusic,et al. Prediction of MHC class II-binding peptides using an evolutionary algorithm and artificial neural network , 1998, Bioinform..
[12] J Zeleznikow,et al. Efficient discovery of immune response targets by cyclical refinement of QSAR models of peptide binding. , 2001, Journal of molecular graphics & modelling.
[13] L. Enjuanes,et al. The SARS Coronavirus: A Postgenomic Era , 2003, Science.
[14] Philip M. Long,et al. Comparative full-length genome sequence analysis of 14 SARS coronavirus isolates and common mutations associated with putative origins of infection , 2003, The Lancet.
[15] Vladimir Brusic,et al. Computational binding assays of antigenic peptides , 2006, Letters in Peptide Science.
[16] Kun Yu,et al. Methods for Prediction of Peptide Binding to MHC Molecules: A Comparative Study , 2002, Molecular medicine.
[17] V. Duquesne,et al. Modified vaccinia virus Ankara as a vaccine against feline coronavirus: immunogenicity and efficacy , 2004, Journal of Feline Medicine & Surgery.
[18] Vladimir Brusic,et al. MHCPEP, a database of MHC-binding peptides: update 1996 , 1997, Nucleic Acids Res..
[19] Vladimir Brusic,et al. Prediction of promiscuous peptides that bind HLA class I molecules , 2002, Immunology and cell biology.
[20] A Sette,et al. Two complementary methods for predicting peptides binding major histocompatibility complex molecules. , 1997, Journal of molecular biology.
[21] O. Schueler‐Furman,et al. Structure‐based prediction of binding peptides to MHC class I molecules: Application to a broad range of MHC alleles , 2000, Protein science : a publication of the Protein Society.
[22] J A Swets,et al. Measuring the accuracy of diagnostic systems. , 1988, Science.
[23] V. Brusic,et al. Neural network-based prediction of candidate T-cell epitopes , 1998, Nature Biotechnology.
[24] F. Sinigaglia,et al. Promiscuous and allele-specific anchors in HLA-DR-binding peptides , 1993, Cell.