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Clinical and Molecular Allergy : CMA|September 17, 2008
Three dimensional structure directs T-cell epitope dominance associated with allergyScott J Melton, Samuel J LandryJournal of Virology|December 7, 2007
Three-dimensional structure determines the pattern of CD4+ T-cell epitope dominance in influenza virus hemagglutininSamuel J LandryInternational Journal of Molecular Sciences|December 11, 2019
A History of Molecular Chaperone Structures in the Protein Data BankNeil Andrew D Bascos, Samuel J LandryJournal of Immunological Methods|February 20, 2016
CD4+ T-cell epitope prediction using antigen processing constraintsRamgopal R Mettu, Tysheena Charles, Samuel J LandryMolecular Immunology|August 9, 2006
Antigen three-dimensional structure guides the processing and presentation of helper T-cell epitopesStephanie Carmicle, N Kalaya Steede, Samuel J LandryEuropean Journal of Immunology|April 10, 2008
Antigen structure influences helper T-cell epitope dominance in the human immune response to HIV envelope glycoprotein gp120Denise Mirano-Bascos, Magdalena Tary-Lehmann, Samuel J LandryBiochemistry|May 6, 2021
The Serpin-like Loop Insertion of Ovalbumin Increases the Stability and Decreases the OVA 323-339 Epitope Processing EfficiencyDaniel L Moss, Ramgopal R Mettu, Samuel J LandryBiochimica Et Biophysica Acta|September 25, 2010
The prediction and characterization of YshA, an unknown outer-membrane protein from Salmonella typhimuriumThomas C Freeman, Samuel J Landry, William C WimleyThe Journal of Biological Chemistry|October 24, 2001
Proteolytic sensitivity and helper T-cell epitope immunodominance associated with the mobile loop in Hsp10sStephanie Carmicle, Guixiang Dai, N Kalaya Steede, et al.Pageof 4