Novel frameshift variants expand the map of the genetic defects in IRF2BP2.


Journal

Frontiers in immunology
ISSN: 1664-3224
Titre abrégé: Front Immunol
Pays: Switzerland
ID NLM: 101560960

Informations de publication

Date de publication:
2023
Historique:
received: 17 08 2023
accepted: 21 09 2023
medline: 26 10 2023
pubmed: 25 10 2023
entrez: 25 10 2023
Statut: epublish

Résumé

At present, the knowledge about disease-causing mutations in IRF2BP2 is very limited because only a few patients affected by this condition have been reported. As previous studies have described, the haploinsufficiency of this interferon transcriptional corepressors leads to the development of CVID. Very recently, a more accurate phenotype produced by truncating variants in this gene has been defined, manifesting CVID with gastrointestinal inflammatory symptoms and autoimmune manifestations. We analyzed 5 index cases with suspected primary immunodeficiency by high throughput sequencing. They were submitted for a genetic test with a panel of genes associated with immune system diseases, including IRF2BP2. The screening of SNVs, indels and CNVs fulfilling the criteria with very low allelic frequency and high protein impact, revealed five novel variants in IRF2BP2. In addition, we isolated both wild-type and mutated allele of the cDNA from one of the families. In this study, we report five novel loss-of-function (LoF) mutations in IRF2BP2 that likely cause primary immunodeficiency, with CVID as more frequent phenotype, variable expression of inflammatory gastrointestinal features, and one patient with predisposition of viral infection. All identified variants were frameshift changes, and one of them was a large deletion located on chromosome 1q42, which includes the whole sequence of IRF2BP2, among other genes. Both We describe novel variants in a delimited low-complex region, which may be considered a hotspot in IRF2BP2. Moreover, this is the first time that a large CNV in IRF2BP2 has been reported to cause CVID. The distinct mechanisms than LoF in IRF2BP2 could cause different phenotype compared with the mainly described. Further investigations are necessary to comprehend the regulatory mechanisms of IRF2BP2, which could be under variable expression of the disease.

Sections du résumé

Background
At present, the knowledge about disease-causing mutations in IRF2BP2 is very limited because only a few patients affected by this condition have been reported. As previous studies have described, the haploinsufficiency of this interferon transcriptional corepressors leads to the development of CVID. Very recently, a more accurate phenotype produced by truncating variants in this gene has been defined, manifesting CVID with gastrointestinal inflammatory symptoms and autoimmune manifestations.
Methods
We analyzed 5 index cases with suspected primary immunodeficiency by high throughput sequencing. They were submitted for a genetic test with a panel of genes associated with immune system diseases, including IRF2BP2. The screening of SNVs, indels and CNVs fulfilling the criteria with very low allelic frequency and high protein impact, revealed five novel variants in IRF2BP2. In addition, we isolated both wild-type and mutated allele of the cDNA from one of the families.
Results
In this study, we report five novel loss-of-function (LoF) mutations in IRF2BP2 that likely cause primary immunodeficiency, with CVID as more frequent phenotype, variable expression of inflammatory gastrointestinal features, and one patient with predisposition of viral infection. All identified variants were frameshift changes, and one of them was a large deletion located on chromosome 1q42, which includes the whole sequence of IRF2BP2, among other genes. Both
Conclusions
We describe novel variants in a delimited low-complex region, which may be considered a hotspot in IRF2BP2. Moreover, this is the first time that a large CNV in IRF2BP2 has been reported to cause CVID. The distinct mechanisms than LoF in IRF2BP2 could cause different phenotype compared with the mainly described. Further investigations are necessary to comprehend the regulatory mechanisms of IRF2BP2, which could be under variable expression of the disease.

Identifiants

pubmed: 37876937
doi: 10.3389/fimmu.2023.1279171
pmc: PMC10593445
doi:

Substances chimiques

IRF2BP2 protein, human 0
DNA-Binding Proteins 0
Transcription Factors 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1279171

Informations de copyright

Copyright © 2023 García-Aznar, Maneiro Pampín, García Ramos, Acuña Pérez, Paz Gandiaga, Minguell Domingo, Calavia, Soler-Palacin, Colobran, Novoa Bolívar and Ocejo Vinyals.

Déclaration de conflit d'intérêts

Authors JG-A, EM, MG and MA were employed by Health in Code. The remaining authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.

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Auteurs

José María García-Aznar (JM)

Department of Immunology, Health in Code, A Coruña, Galicia, Spain.

Emilia Maneiro Pampín (E)

Department of Immunology, Health in Code, A Coruña, Galicia, Spain.

Maite García Ramos (M)

Department of Immunology, Health in Code, A Coruña, Galicia, Spain.

María José Acuña Pérez (MJ)

Department of Immunology, Health in Code, A Coruña, Galicia, Spain.

Nerea Paz Gandiaga (N)

Genetics Division, Universitary Hospital Marqués de Valdecilla, Santander, Canatabria, Spain.

Laura Minguell Domingo (L)

Pediatrics Division, Universitary Hospital Arnau de Vilanova, Lleida, Catalonia, Spain.

Olga Calavia (O)

Pediatrics Division, Hospital Joan XXIII, Tarragona, Catalonia, Spain.

Pere Soler-Palacin (P)

Pediatric Infectious Diseases and Immunodeficiencies Unit, Children's Hospital, Barcelona, Catalonia, Spain.
Infection and Immunity in Pediatric Patients Research Group, Vall d'Hebron Research Institute (VHIR), Barcelona, Catalonia, Spain.

Roger Colobran (R)

Immunology Division, Vall d'Hebron University Hospital (HUVH), Barcelona, Catalonia, Spain.
Translational Immunology Research Group, Vall d'Hebron Research Institute (VHIR), Barcelona, Catalonia, Spain.
Department of Clinical and Molecular Genetics, Vall d'Hebron University Hospital (HUVH), Barcelona, Catalonia, Spain.
Department of Cell Biology, Physiology and Immunology, Autonomous University of Barcelona (UAB), Barcelona, Catalonia, Spain.

Erika M Novoa Bolívar (EM)

Immunology Division, Universitary Hospital Virgen de la Arrixaca, Murcia, Spain.

Javier Gonzalo Ocejo Vinyals (JG)

Immunology Division, Universitary Hospital Marqués de Valdecilla, IDIVAL, Santander, Cantabria, Spain.

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Classifications MeSH