Cargando…
Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder
CRAC channel regulator 2 A (CRACR2A) is a large Rab GTPase that is expressed abundantly in T cells and acts as a signal transmitter between T cell receptor stimulation and activation of the Ca(2+)-NFAT and JNK-AP1 pathways. CRACR2A has been linked to human diseases in numerous genome-wide associatio...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
eLife Sciences Publications, Ltd
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8673834/ https://www.ncbi.nlm.nih.gov/pubmed/34908525 http://dx.doi.org/10.7554/eLife.72559 |
_version_ | 1784615525606752256 |
---|---|
author | Wu, Beibei Rice, Laura Shrimpton, Jennifer Lawless, Dylan Walker, Kieran Carter, Clive McKeown, Lynn Anwar, Rashida Doody, Gina M Srikanth, Sonal Gwack, Yousang Savic, Sinisa |
author_facet | Wu, Beibei Rice, Laura Shrimpton, Jennifer Lawless, Dylan Walker, Kieran Carter, Clive McKeown, Lynn Anwar, Rashida Doody, Gina M Srikanth, Sonal Gwack, Yousang Savic, Sinisa |
author_sort | Wu, Beibei |
collection | PubMed |
description | CRAC channel regulator 2 A (CRACR2A) is a large Rab GTPase that is expressed abundantly in T cells and acts as a signal transmitter between T cell receptor stimulation and activation of the Ca(2+)-NFAT and JNK-AP1 pathways. CRACR2A has been linked to human diseases in numerous genome-wide association studies, however, to date no patient with damaging variants in CRACR2A has been identified. In this study, we describe a patient harboring biallelic variants in CRACR2A [paternal allele c.834 gaG> gaT (p.E278D) and maternal alelle c.430 Aga > Gga (p.R144G) c.898 Gag> Tag (p.E300*)], the gene encoding CRACR2A. The 33-year-old patient of East-Asian origin exhibited late onset combined immunodeficiency characterised by recurrent chest infections, panhypogammaglobulinemia and CD4+ T cell lymphopenia. In vitro exposure of patient B cells to a T-dependent stimulus resulted in normal generation of antibody-secreting cells, however the patient’s T cells showed pronounced reduction in CRACR2A protein levels and reduced proximal TCR signaling, including dampened SOCE and reduced JNK phosphorylation, that contributed to a defect in proliferation and cytokine production. Expression of individual allelic mutants in CRACR2A-deleted T cells showed that the CRACR2A(E278D) mutant did not affect JNK phosphorylation, but impaired SOCE which resulted in reduced cytokine production. The truncated double mutant CRACR2A(R144G/E300*) showed a pronounced defect in JNK phosphorylation as well as SOCE and strong impairment in cytokine production. Thus, we have identified variants in CRACR2A that led to late-stage combined immunodeficiency characterized by loss of function in T cells. |
format | Online Article Text |
id | pubmed-8673834 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | eLife Sciences Publications, Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-86738342021-12-17 Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder Wu, Beibei Rice, Laura Shrimpton, Jennifer Lawless, Dylan Walker, Kieran Carter, Clive McKeown, Lynn Anwar, Rashida Doody, Gina M Srikanth, Sonal Gwack, Yousang Savic, Sinisa eLife Immunology and Inflammation CRAC channel regulator 2 A (CRACR2A) is a large Rab GTPase that is expressed abundantly in T cells and acts as a signal transmitter between T cell receptor stimulation and activation of the Ca(2+)-NFAT and JNK-AP1 pathways. CRACR2A has been linked to human diseases in numerous genome-wide association studies, however, to date no patient with damaging variants in CRACR2A has been identified. In this study, we describe a patient harboring biallelic variants in CRACR2A [paternal allele c.834 gaG> gaT (p.E278D) and maternal alelle c.430 Aga > Gga (p.R144G) c.898 Gag> Tag (p.E300*)], the gene encoding CRACR2A. The 33-year-old patient of East-Asian origin exhibited late onset combined immunodeficiency characterised by recurrent chest infections, panhypogammaglobulinemia and CD4+ T cell lymphopenia. In vitro exposure of patient B cells to a T-dependent stimulus resulted in normal generation of antibody-secreting cells, however the patient’s T cells showed pronounced reduction in CRACR2A protein levels and reduced proximal TCR signaling, including dampened SOCE and reduced JNK phosphorylation, that contributed to a defect in proliferation and cytokine production. Expression of individual allelic mutants in CRACR2A-deleted T cells showed that the CRACR2A(E278D) mutant did not affect JNK phosphorylation, but impaired SOCE which resulted in reduced cytokine production. The truncated double mutant CRACR2A(R144G/E300*) showed a pronounced defect in JNK phosphorylation as well as SOCE and strong impairment in cytokine production. Thus, we have identified variants in CRACR2A that led to late-stage combined immunodeficiency characterized by loss of function in T cells. eLife Sciences Publications, Ltd 2021-12-15 /pmc/articles/PMC8673834/ /pubmed/34908525 http://dx.doi.org/10.7554/eLife.72559 Text en © 2021, Wu et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited. |
spellingShingle | Immunology and Inflammation Wu, Beibei Rice, Laura Shrimpton, Jennifer Lawless, Dylan Walker, Kieran Carter, Clive McKeown, Lynn Anwar, Rashida Doody, Gina M Srikanth, Sonal Gwack, Yousang Savic, Sinisa Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder |
title | Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder |
title_full | Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder |
title_fullStr | Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder |
title_full_unstemmed | Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder |
title_short | Biallelic mutations in calcium release activated channel regulator 2A (CRACR2A) cause a primary immunodeficiency disorder |
title_sort | biallelic mutations in calcium release activated channel regulator 2a (cracr2a) cause a primary immunodeficiency disorder |
topic | Immunology and Inflammation |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8673834/ https://www.ncbi.nlm.nih.gov/pubmed/34908525 http://dx.doi.org/10.7554/eLife.72559 |
work_keys_str_mv | AT wubeibei biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT ricelaura biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT shrimptonjennifer biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT lawlessdylan biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT walkerkieran biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT carterclive biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT mckeownlynn biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT anwarrashida biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT doodyginam biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT srikanthsonal biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT gwackyousang biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder AT savicsinisa biallelicmutationsincalciumreleaseactivatedchannelregulator2acracr2acauseaprimaryimmunodeficiencydisorder |