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Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond

Common variable immunodeficiency (CVID) is the most frequent symptomatic primary immunodeficiency characterized by recurrent infections, hypogammaglobulinemia and poor response to vaccines. Its diagnosis is made based on clinical and immunological criteria, after exclusion of other diseases that can...

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Autores principales: de Valles-Ibáñez, Guillem, Esteve-Solé, Ana, Piquer, Mònica, González-Navarro, E. Azucena, Hernandez-Rodriguez, Jessica, Laayouni, Hafid, González-Roca, Eva, Plaza-Martin, Ana María, Deyà-Martínez, Ángela, Martín-Nalda, Andrea, Martínez-Gallo, Mónica, García-Prat, Marina, del Pino-Molina, Lucía, Cuscó, Ivón, Codina-Solà, Marta, Batlle-Masó, Laura, Solís-Moruno, Manuel, Marquès-Bonet, Tomàs, Bosch, Elena, López-Granados, Eduardo, Aróstegui, Juan Ignacio, Soler-Palacín, Pere, Colobran, Roger, Yagüe, Jordi, Alsina, Laia, Juan, Manel, Casals, Ferran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5960686/
https://www.ncbi.nlm.nih.gov/pubmed/29867916
http://dx.doi.org/10.3389/fimmu.2018.00636
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author de Valles-Ibáñez, Guillem
Esteve-Solé, Ana
Piquer, Mònica
González-Navarro, E. Azucena
Hernandez-Rodriguez, Jessica
Laayouni, Hafid
González-Roca, Eva
Plaza-Martin, Ana María
Deyà-Martínez, Ángela
Martín-Nalda, Andrea
Martínez-Gallo, Mónica
García-Prat, Marina
del Pino-Molina, Lucía
Cuscó, Ivón
Codina-Solà, Marta
Batlle-Masó, Laura
Solís-Moruno, Manuel
Marquès-Bonet, Tomàs
Bosch, Elena
López-Granados, Eduardo
Aróstegui, Juan Ignacio
Soler-Palacín, Pere
Colobran, Roger
Yagüe, Jordi
Alsina, Laia
Juan, Manel
Casals, Ferran
author_facet de Valles-Ibáñez, Guillem
Esteve-Solé, Ana
Piquer, Mònica
González-Navarro, E. Azucena
Hernandez-Rodriguez, Jessica
Laayouni, Hafid
González-Roca, Eva
Plaza-Martin, Ana María
Deyà-Martínez, Ángela
Martín-Nalda, Andrea
Martínez-Gallo, Mónica
García-Prat, Marina
del Pino-Molina, Lucía
Cuscó, Ivón
Codina-Solà, Marta
Batlle-Masó, Laura
Solís-Moruno, Manuel
Marquès-Bonet, Tomàs
Bosch, Elena
López-Granados, Eduardo
Aróstegui, Juan Ignacio
Soler-Palacín, Pere
Colobran, Roger
Yagüe, Jordi
Alsina, Laia
Juan, Manel
Casals, Ferran
author_sort de Valles-Ibáñez, Guillem
collection PubMed
description Common variable immunodeficiency (CVID) is the most frequent symptomatic primary immunodeficiency characterized by recurrent infections, hypogammaglobulinemia and poor response to vaccines. Its diagnosis is made based on clinical and immunological criteria, after exclusion of other diseases that can cause similar phenotypes. Currently, less than 20% of cases of CVID have a known underlying genetic cause. We have analyzed whole-exome sequencing and copy number variants data of 36 children and adolescents diagnosed with CVID and healthy relatives to estimate the proportion of monogenic cases. We have replicated an association of CVID to p.C104R in TNFRSF13B and reported the second case of homozygous patient to date. Our results also identify five causative genetic variants in LRBA, CTLA4, NFKB1, and PIK3R1, as well as other very likely causative variants in PRKCD, MAPK8, or DOCK8 among others. We experimentally validate the effect of the LRBA stop-gain mutation which abolishes protein production and downregulates the expression of CTLA4, and of the frameshift indel in CTLA4 producing expression downregulation of the protein. Our results indicate a monogenic origin of at least 15–24% of the CVID cases included in the study. The proportion of monogenic patients seems to be lower in CVID than in other PID that have also been analyzed by whole exome or targeted gene panels sequencing. Regardless of the exact proportion of CVID monogenic cases, other genetic models have to be considered for CVID. We propose that because of its prevalence and other features as intermediate penetrancies and phenotypic variation within families, CVID could fit with other more complex genetic scenarios. In particular, in this work, we explore the possibility of CVID being originated by an oligogenic model with the presence of heterozygous mutations in interacting proteins or by the accumulation of detrimental variants in particular immunological pathways, as well as perform association tests to detect association with rare genetic functional variation in the CVID cohort compared to healthy controls.
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spelling pubmed-59606862018-06-04 Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond de Valles-Ibáñez, Guillem Esteve-Solé, Ana Piquer, Mònica González-Navarro, E. Azucena Hernandez-Rodriguez, Jessica Laayouni, Hafid González-Roca, Eva Plaza-Martin, Ana María Deyà-Martínez, Ángela Martín-Nalda, Andrea Martínez-Gallo, Mónica García-Prat, Marina del Pino-Molina, Lucía Cuscó, Ivón Codina-Solà, Marta Batlle-Masó, Laura Solís-Moruno, Manuel Marquès-Bonet, Tomàs Bosch, Elena López-Granados, Eduardo Aróstegui, Juan Ignacio Soler-Palacín, Pere Colobran, Roger Yagüe, Jordi Alsina, Laia Juan, Manel Casals, Ferran Front Immunol Immunology Common variable immunodeficiency (CVID) is the most frequent symptomatic primary immunodeficiency characterized by recurrent infections, hypogammaglobulinemia and poor response to vaccines. Its diagnosis is made based on clinical and immunological criteria, after exclusion of other diseases that can cause similar phenotypes. Currently, less than 20% of cases of CVID have a known underlying genetic cause. We have analyzed whole-exome sequencing and copy number variants data of 36 children and adolescents diagnosed with CVID and healthy relatives to estimate the proportion of monogenic cases. We have replicated an association of CVID to p.C104R in TNFRSF13B and reported the second case of homozygous patient to date. Our results also identify five causative genetic variants in LRBA, CTLA4, NFKB1, and PIK3R1, as well as other very likely causative variants in PRKCD, MAPK8, or DOCK8 among others. We experimentally validate the effect of the LRBA stop-gain mutation which abolishes protein production and downregulates the expression of CTLA4, and of the frameshift indel in CTLA4 producing expression downregulation of the protein. Our results indicate a monogenic origin of at least 15–24% of the CVID cases included in the study. The proportion of monogenic patients seems to be lower in CVID than in other PID that have also been analyzed by whole exome or targeted gene panels sequencing. Regardless of the exact proportion of CVID monogenic cases, other genetic models have to be considered for CVID. We propose that because of its prevalence and other features as intermediate penetrancies and phenotypic variation within families, CVID could fit with other more complex genetic scenarios. In particular, in this work, we explore the possibility of CVID being originated by an oligogenic model with the presence of heterozygous mutations in interacting proteins or by the accumulation of detrimental variants in particular immunological pathways, as well as perform association tests to detect association with rare genetic functional variation in the CVID cohort compared to healthy controls. Frontiers Media S.A. 2018-05-14 /pmc/articles/PMC5960686/ /pubmed/29867916 http://dx.doi.org/10.3389/fimmu.2018.00636 Text en Copyright © 2018 de Valles-Ibáñez, Esteve-Solé, Piquer, González-Navarro, Hernandez-Rodriguez, Laayouni, González-Roca, Plaza-Martin, Deyà-Martínez, Martín-Nalda, Martínez-Gallo, García-Prat, del Pino-Molina, Cuscó, Codina-Solà, Batlle-Masó, Solís-Moruno, Marquès-Bonet, Bosch, López-Granados, Aróstegui, Soler-Palacín, Colobran, Yagüe, Alsina, Juan and Casals. 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 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
de Valles-Ibáñez, Guillem
Esteve-Solé, Ana
Piquer, Mònica
González-Navarro, E. Azucena
Hernandez-Rodriguez, Jessica
Laayouni, Hafid
González-Roca, Eva
Plaza-Martin, Ana María
Deyà-Martínez, Ángela
Martín-Nalda, Andrea
Martínez-Gallo, Mónica
García-Prat, Marina
del Pino-Molina, Lucía
Cuscó, Ivón
Codina-Solà, Marta
Batlle-Masó, Laura
Solís-Moruno, Manuel
Marquès-Bonet, Tomàs
Bosch, Elena
López-Granados, Eduardo
Aróstegui, Juan Ignacio
Soler-Palacín, Pere
Colobran, Roger
Yagüe, Jordi
Alsina, Laia
Juan, Manel
Casals, Ferran
Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond
title Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond
title_full Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond
title_fullStr Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond
title_full_unstemmed Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond
title_short Evaluating the Genetics of Common Variable Immunodeficiency: Monogenetic Model and Beyond
title_sort evaluating the genetics of common variable immunodeficiency: monogenetic model and beyond
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5960686/
https://www.ncbi.nlm.nih.gov/pubmed/29867916
http://dx.doi.org/10.3389/fimmu.2018.00636
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