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Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies

Missense variants are a major source of human genetic variation. Here we analyze a new mouse missense variant, Rasgrp1(Anaef), with an ENU-mutated EF hand in the Rasgrp1 Ras guanine nucleotide exchange factor. Rasgrp1(Anaef) mice exhibit anti-nuclear autoantibodies and gradually accumulate a CD44(hi...

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Autores principales: Daley, Stephen R, Coakley, Kristen M, Hu, Daniel Y, Randall, Katrina L, Jenne, Craig N, Limnander, Andre, Myers, Darienne R, Polakos, Noelle K, Enders, Anselm, Roots, Carla, Balakishnan, Bhavani, Miosge, Lisa A, Sjollema, Geoff, Bertram, Edward M, Field, Matthew A, Shao, Yunli, Andrews, T Daniel, Whittle, Belinda, Barnes, S Whitney, Walker, John R, Cyster, Jason G, Goodnow, Christopher C, Roose, Jeroen P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858598/
https://www.ncbi.nlm.nih.gov/pubmed/24336796
http://dx.doi.org/10.7554/eLife.01020
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author Daley, Stephen R
Coakley, Kristen M
Hu, Daniel Y
Randall, Katrina L
Jenne, Craig N
Limnander, Andre
Myers, Darienne R
Polakos, Noelle K
Enders, Anselm
Roots, Carla
Balakishnan, Bhavani
Miosge, Lisa A
Sjollema, Geoff
Bertram, Edward M
Field, Matthew A
Shao, Yunli
Andrews, T Daniel
Whittle, Belinda
Barnes, S Whitney
Walker, John R
Cyster, Jason G
Goodnow, Christopher C
Roose, Jeroen P
author_facet Daley, Stephen R
Coakley, Kristen M
Hu, Daniel Y
Randall, Katrina L
Jenne, Craig N
Limnander, Andre
Myers, Darienne R
Polakos, Noelle K
Enders, Anselm
Roots, Carla
Balakishnan, Bhavani
Miosge, Lisa A
Sjollema, Geoff
Bertram, Edward M
Field, Matthew A
Shao, Yunli
Andrews, T Daniel
Whittle, Belinda
Barnes, S Whitney
Walker, John R
Cyster, Jason G
Goodnow, Christopher C
Roose, Jeroen P
author_sort Daley, Stephen R
collection PubMed
description Missense variants are a major source of human genetic variation. Here we analyze a new mouse missense variant, Rasgrp1(Anaef), with an ENU-mutated EF hand in the Rasgrp1 Ras guanine nucleotide exchange factor. Rasgrp1(Anaef) mice exhibit anti-nuclear autoantibodies and gradually accumulate a CD44(hi) Helios(+) PD-1(+) CD4(+) T cell population that is dependent on B cells. Despite reduced Rasgrp1-Ras-ERK activation in vitro, thymocyte selection in Rasgrp1(Anaef) is mostly normal in vivo, although CD44 is overexpressed on naïve thymocytes and T cells in a T-cell-autonomous manner. We identify CD44 expression as a sensitive reporter of tonic mTOR-S6 kinase signaling through a novel mouse strain, chino, with a reduction-of-function mutation in Mtor. Elevated tonic mTOR-S6 signaling occurs in Rasgrp1(Anaef) naïve CD4(+) T cells. CD44 expression, CD4(+) T cell subset ratios and serum autoantibodies all returned to normal in Rasgrp1(Anaef)Mtor(chino) double-mutant mice, demonstrating that increased mTOR activity is essential for the Rasgrp1(Anaef) T cell dysregulation. DOI: http://dx.doi.org/10.7554/eLife.01020.001
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spelling pubmed-38585982013-12-13 Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies Daley, Stephen R Coakley, Kristen M Hu, Daniel Y Randall, Katrina L Jenne, Craig N Limnander, Andre Myers, Darienne R Polakos, Noelle K Enders, Anselm Roots, Carla Balakishnan, Bhavani Miosge, Lisa A Sjollema, Geoff Bertram, Edward M Field, Matthew A Shao, Yunli Andrews, T Daniel Whittle, Belinda Barnes, S Whitney Walker, John R Cyster, Jason G Goodnow, Christopher C Roose, Jeroen P eLife Biochemistry Missense variants are a major source of human genetic variation. Here we analyze a new mouse missense variant, Rasgrp1(Anaef), with an ENU-mutated EF hand in the Rasgrp1 Ras guanine nucleotide exchange factor. Rasgrp1(Anaef) mice exhibit anti-nuclear autoantibodies and gradually accumulate a CD44(hi) Helios(+) PD-1(+) CD4(+) T cell population that is dependent on B cells. Despite reduced Rasgrp1-Ras-ERK activation in vitro, thymocyte selection in Rasgrp1(Anaef) is mostly normal in vivo, although CD44 is overexpressed on naïve thymocytes and T cells in a T-cell-autonomous manner. We identify CD44 expression as a sensitive reporter of tonic mTOR-S6 kinase signaling through a novel mouse strain, chino, with a reduction-of-function mutation in Mtor. Elevated tonic mTOR-S6 signaling occurs in Rasgrp1(Anaef) naïve CD4(+) T cells. CD44 expression, CD4(+) T cell subset ratios and serum autoantibodies all returned to normal in Rasgrp1(Anaef)Mtor(chino) double-mutant mice, demonstrating that increased mTOR activity is essential for the Rasgrp1(Anaef) T cell dysregulation. DOI: http://dx.doi.org/10.7554/eLife.01020.001 eLife Sciences Publications, Ltd 2013-12-12 /pmc/articles/PMC3858598/ /pubmed/24336796 http://dx.doi.org/10.7554/eLife.01020 Text en Copyright © 2013, Daley et al http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry
Daley, Stephen R
Coakley, Kristen M
Hu, Daniel Y
Randall, Katrina L
Jenne, Craig N
Limnander, Andre
Myers, Darienne R
Polakos, Noelle K
Enders, Anselm
Roots, Carla
Balakishnan, Bhavani
Miosge, Lisa A
Sjollema, Geoff
Bertram, Edward M
Field, Matthew A
Shao, Yunli
Andrews, T Daniel
Whittle, Belinda
Barnes, S Whitney
Walker, John R
Cyster, Jason G
Goodnow, Christopher C
Roose, Jeroen P
Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies
title Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies
title_full Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies
title_fullStr Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies
title_full_unstemmed Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies
title_short Rasgrp1 mutation increases naïve T-cell CD44 expression and drives mTOR-dependent accumulation of Helios(+) T cells and autoantibodies
title_sort rasgrp1 mutation increases naïve t-cell cd44 expression and drives mtor-dependent accumulation of helios(+) t cells and autoantibodies
topic Biochemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3858598/
https://www.ncbi.nlm.nih.gov/pubmed/24336796
http://dx.doi.org/10.7554/eLife.01020
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