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

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Last updated 25 março 2025
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
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
Precision neoantigen discovery using large-scale immunopeptidomes and composite modeling of MHC peptide presentation
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
CD4+ T-Cell Epitope Prediction by Combined Analysis of Antigen Conformational Flexibility and Peptide-MHCII Binding Affinity
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Improved Prediction of MHC II Antigen Presentation through Integration and Motif Deconvolution of Mass Spectrometry MHC Eluted Ligand Data
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Immunoinformatics based designing and simulation of multi-epitope vaccine against multi-drug resistant Stenotrophomonas maltophilia - ScienceDirect
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Frontiers Immunoinformatic exploration of a multi-epitope-based peptide vaccine candidate targeting emerging variants of SARS-CoV-2
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Full article: In silico designing of multi-epitope vaccine construct against human coronavirus infections
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Rapid assessment of T-cell receptor specificity of the immune repertoire
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
PANDORA v2.0: Benchmarking peptide-MHC II models and software improvements
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Designing of a next generation multiepitope based vaccine (MEV) against SARS-COV-2: Immunoinformatics and in silico approaches
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
Vaccines, Free Full-Text
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Frontiers Structural Comparison Between MHC Classes I and II; in Evolution, a Class-II-Like Molecule Probably Came First
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Full article: Multiple epitope-based vaccine prediction against SARS-CoV-2 spike glycoprotein
Frontiers  Multiple-Allele MHC Class II Epitope Engineering by a Molecular  Dynamics-Based Evolution Protocol
Frontiers PANDORA: A Fast, Anchor-Restrained Modelling Protocol for Peptide: MHC Complexes

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