Cargando…

Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism

The micropolymorphism of major histocompatibility complex class I (MHC-I) can greatly alter the plasticity of peptide presentation, but elucidating the underlying mechanism remains a challenge. Here we investigated the impact of the micropolymorphism on peptide presentation of swine MHC-I (termed sw...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Xiaohui, Wang, Song, Li, Zhuolin, Li, Zibin, Qu, Zehui, Wang, Suqiu, Zou, Baohua, Liang, Ruiying, Xia, Chun, Zhang, Nianzhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7952875/
https://www.ncbi.nlm.nih.gov/pubmed/33717070
http://dx.doi.org/10.3389/fimmu.2021.592447
_version_ 1783663827493060608
author Wei, Xiaohui
Wang, Song
Li, Zhuolin
Li, Zibin
Qu, Zehui
Wang, Suqiu
Zou, Baohua
Liang, Ruiying
Xia, Chun
Zhang, Nianzhi
author_facet Wei, Xiaohui
Wang, Song
Li, Zhuolin
Li, Zibin
Qu, Zehui
Wang, Suqiu
Zou, Baohua
Liang, Ruiying
Xia, Chun
Zhang, Nianzhi
author_sort Wei, Xiaohui
collection PubMed
description The micropolymorphism of major histocompatibility complex class I (MHC-I) can greatly alter the plasticity of peptide presentation, but elucidating the underlying mechanism remains a challenge. Here we investigated the impact of the micropolymorphism on peptide presentation of swine MHC-I (termed swine leukocyte antigen class I, SLA-I) molecules via immunopeptidomes that were determined by our newly developed random peptide library combined with the mass spectrometry (MS) de novo sequencing method (termed RPLD–MS) and the corresponding crystal structures. The immunopeptidomes of SLA-1*04:01, SLA-1*13:01, and their mutants showed that mutations of residues 156 and 99 could expand and narrow the ranges of peptides presented by SLA-I molecules, respectively. R156A mutation of SLA-1*04:01 altered the charge properties and enlarged the volume size of pocket D, which eliminated the harsh restriction to accommodate the third (P3) anchor residue of the peptide and expanded the peptide binding scope. Compared with 99(Tyr) of SLA-1*0401, 99(Phe) of SLA-1*13:01 could not form a conservative hydrogen bond with the backbone of the P3 residues, leading to fewer changes in the pocket properties but a significant decrease in quantitative of immunopeptidomes. This absent force could be compensated by the salt bridge formed by P1-E and 170(Arg). These data illustrate two distinguishing manners that show how micropolymorphism alters the peptide-binding plasticity of SLA-I alleles, verifying the sensitivity and accuracy of the RPLD-MS method for determining the peptide binding characteristics of MHC-I in vitro and helping to more accurately predict and identify MHC-I restricted epitopes.
format Online
Article
Text
id pubmed-7952875
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-79528752021-03-13 Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism Wei, Xiaohui Wang, Song Li, Zhuolin Li, Zibin Qu, Zehui Wang, Suqiu Zou, Baohua Liang, Ruiying Xia, Chun Zhang, Nianzhi Front Immunol Immunology The micropolymorphism of major histocompatibility complex class I (MHC-I) can greatly alter the plasticity of peptide presentation, but elucidating the underlying mechanism remains a challenge. Here we investigated the impact of the micropolymorphism on peptide presentation of swine MHC-I (termed swine leukocyte antigen class I, SLA-I) molecules via immunopeptidomes that were determined by our newly developed random peptide library combined with the mass spectrometry (MS) de novo sequencing method (termed RPLD–MS) and the corresponding crystal structures. The immunopeptidomes of SLA-1*04:01, SLA-1*13:01, and their mutants showed that mutations of residues 156 and 99 could expand and narrow the ranges of peptides presented by SLA-I molecules, respectively. R156A mutation of SLA-1*04:01 altered the charge properties and enlarged the volume size of pocket D, which eliminated the harsh restriction to accommodate the third (P3) anchor residue of the peptide and expanded the peptide binding scope. Compared with 99(Tyr) of SLA-1*0401, 99(Phe) of SLA-1*13:01 could not form a conservative hydrogen bond with the backbone of the P3 residues, leading to fewer changes in the pocket properties but a significant decrease in quantitative of immunopeptidomes. This absent force could be compensated by the salt bridge formed by P1-E and 170(Arg). These data illustrate two distinguishing manners that show how micropolymorphism alters the peptide-binding plasticity of SLA-I alleles, verifying the sensitivity and accuracy of the RPLD-MS method for determining the peptide binding characteristics of MHC-I in vitro and helping to more accurately predict and identify MHC-I restricted epitopes. Frontiers Media S.A. 2021-02-26 /pmc/articles/PMC7952875/ /pubmed/33717070 http://dx.doi.org/10.3389/fimmu.2021.592447 Text en Copyright © 2021 Wei, Wang, Li, Li, Qu, Wang, Zou, Liang, Xia and Zhang http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Wei, Xiaohui
Wang, Song
Li, Zhuolin
Li, Zibin
Qu, Zehui
Wang, Suqiu
Zou, Baohua
Liang, Ruiying
Xia, Chun
Zhang, Nianzhi
Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism
title Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism
title_full Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism
title_fullStr Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism
title_full_unstemmed Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism
title_short Peptidomes and Structures Illustrate Two Distinguishing Mechanisms of Alternating the Peptide Plasticity Caused by Swine MHC Class I Micropolymorphism
title_sort peptidomes and structures illustrate two distinguishing mechanisms of alternating the peptide plasticity caused by swine mhc class i micropolymorphism
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7952875/
https://www.ncbi.nlm.nih.gov/pubmed/33717070
http://dx.doi.org/10.3389/fimmu.2021.592447
work_keys_str_mv AT weixiaohui peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT wangsong peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT lizhuolin peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT lizibin peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT quzehui peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT wangsuqiu peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT zoubaohua peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT liangruiying peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT xiachun peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism
AT zhangnianzhi peptidomesandstructuresillustratetwodistinguishingmechanismsofalternatingthepeptideplasticitycausedbyswinemhcclassimicropolymorphism