Cargando…

Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire

Development of thymocytes through the positive selection checkpoint requires the rearrangement and expression of a suitable T cell receptor (TCR) α-chain that can pair with the already-expressed β-chain to make a TCR that is selectable. That is, it must have sufficient affinity for self MHC-peptide...

Descripción completa

Detalles Bibliográficos
Autores principales: Rybakin, Vasily, Westernberg, Luise, Fu, Guo, Kim, Hee-Ok, Ampudia, Jeanette, Sauer, Karsten, Gascoigne, Nicholas R. J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4264757/
https://www.ncbi.nlm.nih.gov/pubmed/25500569
http://dx.doi.org/10.1371/journal.pone.0114320
_version_ 1782348780636471296
author Rybakin, Vasily
Westernberg, Luise
Fu, Guo
Kim, Hee-Ok
Ampudia, Jeanette
Sauer, Karsten
Gascoigne, Nicholas R. J.
author_facet Rybakin, Vasily
Westernberg, Luise
Fu, Guo
Kim, Hee-Ok
Ampudia, Jeanette
Sauer, Karsten
Gascoigne, Nicholas R. J.
author_sort Rybakin, Vasily
collection PubMed
description Development of thymocytes through the positive selection checkpoint requires the rearrangement and expression of a suitable T cell receptor (TCR) α-chain that can pair with the already-expressed β-chain to make a TCR that is selectable. That is, it must have sufficient affinity for self MHC-peptide to induce the signals required for differentiation, but not too strong so as to induce cell death. Because both alleles of the α-chain continue to rearrange until a positively-selectable heterodimer is formed, thymocytes and T cells can in principle express dual α-chains. However, cell-surface expression of two TCRs is comparatively rare in mature T cells because of post-transcriptional regulatory mechanisms termed “phenotypic allelic exclusion”. We produced mice transgenic for a rearranged β-chain and for two unrearranged α-chains on a genetic background where endogenous α-chains could not be rearranged. Both Vα3.2 and Vα2 containing α-chains were efficiently positively selected, to the extent that a population of dual α-chain-bearing cells was not distinguishable from single α-chain-expressors. Surprisingly, Vα3.2-expressing cells were much more frequent than the Vα2 transgene-expressing cells, even though this Vα3.2-Vβ5 combination can reconstitute a known selectable TCR. In accord with previous work on the Vα3 repertoire, T cells bearing Vα3.2 expressed from the rearranged minilocus were predominantly selected into the CD8(+) T cell subpopulation. Because of the dominance of Vα3.2 expression over Vα2 expressed from the miniloci, the peripheral T cell population was predominantly CD8(+) cells.
format Online
Article
Text
id pubmed-4264757
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-42647572014-12-19 Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire Rybakin, Vasily Westernberg, Luise Fu, Guo Kim, Hee-Ok Ampudia, Jeanette Sauer, Karsten Gascoigne, Nicholas R. J. PLoS One Research Article Development of thymocytes through the positive selection checkpoint requires the rearrangement and expression of a suitable T cell receptor (TCR) α-chain that can pair with the already-expressed β-chain to make a TCR that is selectable. That is, it must have sufficient affinity for self MHC-peptide to induce the signals required for differentiation, but not too strong so as to induce cell death. Because both alleles of the α-chain continue to rearrange until a positively-selectable heterodimer is formed, thymocytes and T cells can in principle express dual α-chains. However, cell-surface expression of two TCRs is comparatively rare in mature T cells because of post-transcriptional regulatory mechanisms termed “phenotypic allelic exclusion”. We produced mice transgenic for a rearranged β-chain and for two unrearranged α-chains on a genetic background where endogenous α-chains could not be rearranged. Both Vα3.2 and Vα2 containing α-chains were efficiently positively selected, to the extent that a population of dual α-chain-bearing cells was not distinguishable from single α-chain-expressors. Surprisingly, Vα3.2-expressing cells were much more frequent than the Vα2 transgene-expressing cells, even though this Vα3.2-Vβ5 combination can reconstitute a known selectable TCR. In accord with previous work on the Vα3 repertoire, T cells bearing Vα3.2 expressed from the rearranged minilocus were predominantly selected into the CD8(+) T cell subpopulation. Because of the dominance of Vα3.2 expression over Vα2 expressed from the miniloci, the peripheral T cell population was predominantly CD8(+) cells. Public Library of Science 2014-12-12 /pmc/articles/PMC4264757/ /pubmed/25500569 http://dx.doi.org/10.1371/journal.pone.0114320 Text en © 2014 Rybakin et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rybakin, Vasily
Westernberg, Luise
Fu, Guo
Kim, Hee-Ok
Ampudia, Jeanette
Sauer, Karsten
Gascoigne, Nicholas R. J.
Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire
title Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire
title_full Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire
title_fullStr Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire
title_full_unstemmed Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire
title_short Allelic Exclusion of TCR α-Chains upon Severe Restriction of Vα Repertoire
title_sort allelic exclusion of tcr α-chains upon severe restriction of vα repertoire
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4264757/
https://www.ncbi.nlm.nih.gov/pubmed/25500569
http://dx.doi.org/10.1371/journal.pone.0114320
work_keys_str_mv AT rybakinvasily allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire
AT westernbergluise allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire
AT fuguo allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire
AT kimheeok allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire
AT ampudiajeanette allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire
AT sauerkarsten allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire
AT gascoignenicholasrj allelicexclusionoftcrachainsuponsevererestrictionofvarepertoire