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Large-scale molecular dynamics simulations of HLA-A*0201 complexed with a tumor-specific antigenic peptide: can the alpha3 and beta2m domains be neglected?

Abstract
Large-scale massively parallel molecular dynamics (MD) simulations of the human class I major histocompatibility complex (MHC) protein HLA-A*0201 bound to a decameric tumor-specific antigenic peptide GVYDGREHTV were performed using a scalable MD code on high-performance computing platforms. Such computational capabilities put us in reach of simulations of various scales and complexities. The supercomputing resources available for this study allow us to compare directly differences in the behavior of very large molecular models; in this case, the entire extracellular portion of the peptide-MHC complex vs. the isolated peptide binding domain. Comparison of the results from the partial and the whole system simulations indicates that the peptide is less tightly bound in the partial system than in the whole system. From a detailed study of conformations, solvent-accessible surface area, the nature of the water network structure, and the binding energies, we conclude that, when considering the conformation of the alpha1-alpha2 domain, the alpha3 and beta2m domains cannot be neglected.
AuthorsShunzhou Wan, Peter Coveney, Darren R Flower
JournalJournal of computational chemistry (J Comput Chem) Vol. 25 Issue 15 Pg. 1803-13 (Nov 30 2004) ISSN: 0192-8651 [Print] United States
PMID15386470 (Publication Type: Comparative Study, Journal Article, Research Support, Non-U.S. Gov't)
CopyrightCopyright 2004 Wiley Periodicals, Inc.
Chemical References
  • Antigens, Neoplasm
  • GVYDGREHTV
  • HLA-A Antigens
  • HLA-A*02:01 antigen
  • HLA-A2 Antigen
  • Histocompatibility Antigens Class I
  • MAGEA4 protein, human
  • Neoplasm Proteins
  • Oligopeptides
  • Water
Topics
  • Algorithms
  • Antigens, Neoplasm
  • Computer Simulation
  • HLA-A Antigens (chemistry)
  • HLA-A2 Antigen
  • Histocompatibility Antigens Class I (chemistry)
  • Humans
  • Major Histocompatibility Complex
  • Models, Molecular
  • Neoplasm Proteins (chemistry)
  • Oligopeptides (chemistry)
  • Protein Binding
  • Protein Structure, Tertiary
  • Thermodynamics
  • Water (chemistry)

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