Frontiers Multiple-Allele MHC Class II Epitope Engineering by a Molecular Dynamics-Based Evolution Protocol

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Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
major histocompatibility complex class ii - List of Frontiers' open access articles
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
PDF) Impact of Structural Observables From Simulations to Predict the Effect of Single-Point Mutations in MHC Class II Peptide Binders
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Rapid, Precise, and Reproducible Prediction of Peptide–MHC Binding Affinities from Molecular Dynamics That Correlate Well with Experiment
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Toward Guided Mutagenesis: Gaussian Process Regression Predicts MHC Class II Antigen Mutant Binding
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Designing of a Multi-epitope Vaccine against the Structural Proteins of Marburg Virus Exploiting the Immunoinformatics Approach
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Predicting the Affinity of Peptides to Major Histocompatibility Complex Class II by Scoring Molecular Dynamics Simulations
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Utility of language model and physics-based approaches in modifying MHC Class-I immune-visibility for the design of vaccines and therapeutics
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
High-resolution profiling of MHC II peptide presentation capacity reveals SARS-CoV-2 CD4 T cell targets and mechanisms of immune escape
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Rapid, Precise, and Reproducible Prediction of Peptide–MHC Binding Affinities from Molecular Dynamics That Correlate Well with Experiment
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Rapid, Precise, and Reproducible Prediction of Peptide–MHC Binding Affinities from Molecular Dynamics That Correlate Well with Experiment
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Frontiers Peptide-Based Vaccines for Tuberculosis
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