Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.

Major Histocompatibility class II (MHC-II) molecules sample peptides from the extracellular space allowing the immune system to detect the presence of foreign microbes from this compartment. Prediction of MHC class II ligands is complicated by the open binding cleft of the MHC class II molecule, all...

Full description

Bibliographic Details
Main Authors: Kasper Winther Jørgensen, Søren Buus, Morten Nielsen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-12-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3012731?pdf=render
id doaj-47c8945066e2451c86dda1b7162bfc4a
record_format Article
spelling doaj-47c8945066e2451c86dda1b7162bfc4a2020-11-25T00:23:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-12-01512e1587710.1371/journal.pone.0015877Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.Kasper Winther JørgensenSøren BuusMorten NielsenMajor Histocompatibility class II (MHC-II) molecules sample peptides from the extracellular space allowing the immune system to detect the presence of foreign microbes from this compartment. Prediction of MHC class II ligands is complicated by the open binding cleft of the MHC class II molecule, allowing binding of peptides extending out of the binding groove. Furthermore, only a few HLA-DR alleles have been characterized with a sufficient number of peptides (100-200 peptides per allele) to derive accurate description of their binding motif. Little work has been performed characterizing structural properties of MHC class II ligands. Here, we perform one such large-scale analysis. A large set of SYFPEITHI MHC class II ligands covering more than 20 different HLA-DR molecules was analyzed in terms of their secondary structure and surface exposure characteristics in the context of the native structure of the corresponding source protein. We demonstrated that MHC class II ligands are significantly more exposed and have significantly more coil content than other peptides in the same protein with similar predicted binding affinity. We next exploited this observation to derive an improved prediction method for MHC class II ligands by integrating prediction of MHC- peptide binding with prediction of surface exposure and protein secondary structure. This combined prediction method was shown to significantly outperform the state-of-the-art MHC class II peptide binding prediction method when used to identify MHC class II ligands. We also tried to integrate N- and O-glycosylation in our prediction methods but this additional information was found not to improve prediction performance. In summary, these findings strongly suggest that local structural properties influence antigen processing and/or the accessibility of peptides to the MHC class II molecule.http://europepmc.org/articles/PMC3012731?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kasper Winther Jørgensen
Søren Buus
Morten Nielsen
spellingShingle Kasper Winther Jørgensen
Søren Buus
Morten Nielsen
Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.
PLoS ONE
author_facet Kasper Winther Jørgensen
Søren Buus
Morten Nielsen
author_sort Kasper Winther Jørgensen
title Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.
title_short Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.
title_full Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.
title_fullStr Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.
title_full_unstemmed Structural properties of MHC class II ligands, implications for the prediction of MHC class II epitopes.
title_sort structural properties of mhc class ii ligands, implications for the prediction of mhc class ii epitopes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-12-01
description Major Histocompatibility class II (MHC-II) molecules sample peptides from the extracellular space allowing the immune system to detect the presence of foreign microbes from this compartment. Prediction of MHC class II ligands is complicated by the open binding cleft of the MHC class II molecule, allowing binding of peptides extending out of the binding groove. Furthermore, only a few HLA-DR alleles have been characterized with a sufficient number of peptides (100-200 peptides per allele) to derive accurate description of their binding motif. Little work has been performed characterizing structural properties of MHC class II ligands. Here, we perform one such large-scale analysis. A large set of SYFPEITHI MHC class II ligands covering more than 20 different HLA-DR molecules was analyzed in terms of their secondary structure and surface exposure characteristics in the context of the native structure of the corresponding source protein. We demonstrated that MHC class II ligands are significantly more exposed and have significantly more coil content than other peptides in the same protein with similar predicted binding affinity. We next exploited this observation to derive an improved prediction method for MHC class II ligands by integrating prediction of MHC- peptide binding with prediction of surface exposure and protein secondary structure. This combined prediction method was shown to significantly outperform the state-of-the-art MHC class II peptide binding prediction method when used to identify MHC class II ligands. We also tried to integrate N- and O-glycosylation in our prediction methods but this additional information was found not to improve prediction performance. In summary, these findings strongly suggest that local structural properties influence antigen processing and/or the accessibility of peptides to the MHC class II molecule.
url http://europepmc.org/articles/PMC3012731?pdf=render
work_keys_str_mv AT kasperwintherjørgensen structuralpropertiesofmhcclassiiligandsimplicationsforthepredictionofmhcclassiiepitopes
AT sørenbuus structuralpropertiesofmhcclassiiligandsimplicationsforthepredictionofmhcclassiiepitopes
AT mortennielsen structuralpropertiesofmhcclassiiligandsimplicationsforthepredictionofmhcclassiiepitopes
_version_ 1725355943889207296