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Journal of Molecular Biology|June 27, 1997
Quasi-equivalent viruses: a paradigm for protein assembliesJ E Johnson, J A SpeirReviews in Immunogenetics|March 21, 2001
Emerging principles for T cell receptor recognition of antigen in cellular immunityK C Garcia, M Degano, J A Speir, et al.Virology|March 1, 1993
Preliminary X-ray data analysis of crystalline cowpea chlorotic mottle virusJ A Speir, S Munshi, T S Baker, et al.Virology|August 1, 1996
Analysis of a salt stable mutant of cowpea chlorotic mottle virusJ M Fox, X Zhao, J A Speir, et al.Virology|January 6, 1997
Characterization of a disassembly deficient mutant of cowpea chlorotic mottle virusJ M Fox, F G Albert, J A Speir, et al.Blood Cells, Molecules & Diseases|May 19, 2001
The hHFE gene of browsing and grazing rhinoceroses: a possible site of adaptation to a low-iron dietE Beutler, C West, J A Speir, et al.Immunity|February 19, 1999
Crystal structure of an MHC class I presented glycopeptide that generates carbohydrate-specific CTLJ A Speir, U M Abdel-Motal, M Jondal, et al.Journal of Virology|March 1, 1997
Structure-based rationale for the rescue of systemic movement of brome mosaic virus by spontaneous second-site mutations in the coat protein geneS Flasinski, A Dzianott, J A Speir, et al.Immunity|February 13, 2001
Two different, highly exposed, bulged structures for an unusually long peptide bound to rat MHC class I RT1-AaJ A Speir, J Stevens, E Joly, et al.Structure (London, England : 1993)|January 15, 1995
Structures of the native and swollen forms of cowpea chlorotic mottle virus determined by X-ray crystallography and cryo-electron microscopyJ A Speir, S Munshi, G Wang, et al.Pageof 2