Cargando…

Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation

The LAT transmembrane adaptor is essential to transduce intracellular signals triggered by the TCR. Phosphorylation of its four C-terminal tyrosine residues (136, 175, 195, and 235 in mouse LAT) recruits several proteins resulting in the assembly of the LAT signalosome. Among those tyrosine residues...

Descripción completa

Detalles Bibliográficos
Autores principales: Arbulo-Echevarria, Mikel M., Vico-Barranco, Inmaculada, Zhang, Fanghui, Fernandez-Aguilar, Luis M., Chotomska, Martyna, Narbona-Sánchez, Isaac, Zhang, Lichen, Malissen, Bernard, Liang, Yinming, Aguado, Enrique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9768323/
https://www.ncbi.nlm.nih.gov/pubmed/36569841
http://dx.doi.org/10.3389/fimmu.2022.1054920
_version_ 1784854139765784576
author Arbulo-Echevarria, Mikel M.
Vico-Barranco, Inmaculada
Zhang, Fanghui
Fernandez-Aguilar, Luis M.
Chotomska, Martyna
Narbona-Sánchez, Isaac
Zhang, Lichen
Malissen, Bernard
Liang, Yinming
Aguado, Enrique
author_facet Arbulo-Echevarria, Mikel M.
Vico-Barranco, Inmaculada
Zhang, Fanghui
Fernandez-Aguilar, Luis M.
Chotomska, Martyna
Narbona-Sánchez, Isaac
Zhang, Lichen
Malissen, Bernard
Liang, Yinming
Aguado, Enrique
author_sort Arbulo-Echevarria, Mikel M.
collection PubMed
description The LAT transmembrane adaptor is essential to transduce intracellular signals triggered by the TCR. Phosphorylation of its four C-terminal tyrosine residues (136, 175, 195, and 235 in mouse LAT) recruits several proteins resulting in the assembly of the LAT signalosome. Among those tyrosine residues, the one found at position 136 of mouse LAT plays a critical role for T cell development and activation. The kinetics of phosphorylation of this residue is delayed as compared to the three other C-terminal tyrosines due to a conserved glycine residue found at position 135. Mutation of this glycine into an aspartate residue (denoted LAT(G135D)) increased TCR signaling and altered antigen recognition in human Jurkat T cells and ex vivo mouse T cells. Here, using a strain of LAT(G135D) knockin mice, we showed that the LAT(G135D) mutation modifies thymic development, causing an increase in the percentage of CD4+CD8+ double-positive cells, and a reduction in the percentage of CD4+ and CD8+ single-positive cells. Interestingly, the LAT(G135D) mutation alters thymic development even in a heterozygous state. In the periphery, the LAT(G135D) mutation reduces the percentage of CD8+ T cells and results in a small increment of γδ T cells. Remarkably, the LAT(G135D) mutation dramatically increases the percentage of central memory CD8+ T cells. Finally, analysis of the proliferation and activation of T lymphocytes shows increased responses of T cells from mutant mice. Altogether, our results reinforce the view that the residue preceding Tyr136 of LAT constitutes a crucial checkpoint in T cell development and activation.
format Online
Article
Text
id pubmed-9768323
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-97683232022-12-22 Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation Arbulo-Echevarria, Mikel M. Vico-Barranco, Inmaculada Zhang, Fanghui Fernandez-Aguilar, Luis M. Chotomska, Martyna Narbona-Sánchez, Isaac Zhang, Lichen Malissen, Bernard Liang, Yinming Aguado, Enrique Front Immunol Immunology The LAT transmembrane adaptor is essential to transduce intracellular signals triggered by the TCR. Phosphorylation of its four C-terminal tyrosine residues (136, 175, 195, and 235 in mouse LAT) recruits several proteins resulting in the assembly of the LAT signalosome. Among those tyrosine residues, the one found at position 136 of mouse LAT plays a critical role for T cell development and activation. The kinetics of phosphorylation of this residue is delayed as compared to the three other C-terminal tyrosines due to a conserved glycine residue found at position 135. Mutation of this glycine into an aspartate residue (denoted LAT(G135D)) increased TCR signaling and altered antigen recognition in human Jurkat T cells and ex vivo mouse T cells. Here, using a strain of LAT(G135D) knockin mice, we showed that the LAT(G135D) mutation modifies thymic development, causing an increase in the percentage of CD4+CD8+ double-positive cells, and a reduction in the percentage of CD4+ and CD8+ single-positive cells. Interestingly, the LAT(G135D) mutation alters thymic development even in a heterozygous state. In the periphery, the LAT(G135D) mutation reduces the percentage of CD8+ T cells and results in a small increment of γδ T cells. Remarkably, the LAT(G135D) mutation dramatically increases the percentage of central memory CD8+ T cells. Finally, analysis of the proliferation and activation of T lymphocytes shows increased responses of T cells from mutant mice. Altogether, our results reinforce the view that the residue preceding Tyr136 of LAT constitutes a crucial checkpoint in T cell development and activation. Frontiers Media S.A. 2022-12-07 /pmc/articles/PMC9768323/ /pubmed/36569841 http://dx.doi.org/10.3389/fimmu.2022.1054920 Text en Copyright © 2022 Arbulo-Echevarria, Vico-Barranco, Zhang, Fernandez-Aguilar, Chotomska, Narbona-Sánchez, Zhang, Malissen, Liang and Aguado https://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
Arbulo-Echevarria, Mikel M.
Vico-Barranco, Inmaculada
Zhang, Fanghui
Fernandez-Aguilar, Luis M.
Chotomska, Martyna
Narbona-Sánchez, Isaac
Zhang, Lichen
Malissen, Bernard
Liang, Yinming
Aguado, Enrique
Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation
title Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation
title_full Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation
title_fullStr Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation
title_full_unstemmed Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation
title_short Mutation of the glycine residue preceding the sixth tyrosine of the LAT adaptor severely alters T cell development and activation
title_sort mutation of the glycine residue preceding the sixth tyrosine of the lat adaptor severely alters t cell development and activation
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9768323/
https://www.ncbi.nlm.nih.gov/pubmed/36569841
http://dx.doi.org/10.3389/fimmu.2022.1054920
work_keys_str_mv AT arbuloechevarriamikelm mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT vicobarrancoinmaculada mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT zhangfanghui mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT fernandezaguilarluism mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT chotomskamartyna mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT narbonasanchezisaac mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT zhanglichen mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT malissenbernard mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT liangyinming mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation
AT aguadoenrique mutationoftheglycineresidueprecedingthesixthtyrosineofthelatadaptorseverelyalterstcelldevelopmentandactivation