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Frontiers in Immunology|May 13, 2022
Physicochemical Heuristics for Identifying High Fidelity, Near-Native Structural Models of Peptide/MHC ComplexesGrant L J Keller, Laura I Weiss, Brian M BakerMolecular Immunology|January 7, 2022
A previously unappreciated polymorphism in the beta chain of I-As expressed in autoimmunity-prone SJL mice: Combined impact on antibody, CD4 T cell recognition and MHC class II dimer structural stabilityKatherine A Richards, Courtney Lavery, Grant L J Keller, et al.Structure (London, England : 1993)|December 19, 2023
Accurate modeling of peptide-MHC structures with AlphaFoldVictor Mikhaylov, Chad A Brambley, Grant L J Keller, et al.Frontiers in Immunology|September 27, 2019
Structure Based Prediction of Neoantigen ImmunogenicityTimothy P Riley, Grant L J Keller, Angela R Smith, et al.Nature Chemical Biology|August 19, 2020
Structural dissimilarity from self drives neoepitope escape from immune toleranceJason R Devlin, Jesus A Alonso, Cory M Ayres, et al.Proceedings of the National Academy of Sciences of the United States of America|December 12, 2023
Structural and physical features that distinguish tumor-controlling from inactive cancer neoepitopesJean M Custodio, Cory M Ayres, Tatiana J Rosales, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|January 9, 2019
Improving T Cell Receptor On-Target Specificity via Structure-Guided DesignLance M Hellman, Kendra C Foley, Nishant K Singh, et al.Nature Communications|November 6, 2021
Reversion analysis reveals the in vivo immunogenicity of a poorly MHC I-binding cancer neoepitopeHakimeh Ebrahimi-Nik, Marmar Moussa, Ryan P Englander, et al.Nature Communications|November 24, 2022
A class-mismatched TCR bypasses MHC restriction via an unorthodox but fully functional binding geometryNishant K Singh, Jesus A Alonso, Jason R Devlin, et al.Pageof 1