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A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair

Severe Combined Immune Deficiency (SCID) is a primary deficiency of the immune system in which opportunistic and recurring infections are often fatal during neonatal or infant life. SCID is caused by an increasing number of genetic defects that induce an abrogation of T lymphocyte development or fun...

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Autores principales: Strubbe, Steven, De Bruyne, Marieke, Pannicke, Ulrich, Beyls, Elien, Vandekerckhove, Bart, Leclercq, Georges, De Baere, Elfride, Bordon, Victoria, Vral, Anne, Schwarz, Klaus, Haerynck, Filomeen, Taghon, Tom
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8248492/
https://www.ncbi.nlm.nih.gov/pubmed/34220820
http://dx.doi.org/10.3389/fimmu.2021.674226
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author Strubbe, Steven
De Bruyne, Marieke
Pannicke, Ulrich
Beyls, Elien
Vandekerckhove, Bart
Leclercq, Georges
De Baere, Elfride
Bordon, Victoria
Vral, Anne
Schwarz, Klaus
Haerynck, Filomeen
Taghon, Tom
author_facet Strubbe, Steven
De Bruyne, Marieke
Pannicke, Ulrich
Beyls, Elien
Vandekerckhove, Bart
Leclercq, Georges
De Baere, Elfride
Bordon, Victoria
Vral, Anne
Schwarz, Klaus
Haerynck, Filomeen
Taghon, Tom
author_sort Strubbe, Steven
collection PubMed
description Severe Combined Immune Deficiency (SCID) is a primary deficiency of the immune system in which opportunistic and recurring infections are often fatal during neonatal or infant life. SCID is caused by an increasing number of genetic defects that induce an abrogation of T lymphocyte development or function in which B and NK cells might be affected as well. Because of the increased availability and usage of next-generation sequencing (NGS), many novel variants in SCID genes are being identified and cause a heterogeneous disease spectrum. However, the molecular and functional implications of these new variants, of which some are non-coding, are often not characterized in detail. Using targeted NGS, we identified a novel homozygous c.465-1G>C splice acceptor site variant in the DCLRE1C gene in a T(-)B(-)NK(+) SCID patient and fully characterized the molecular and functional impact. By performing a minigene splicing reporter assay, we revealed deregulated splicing of the DCLRE1C transcript since a cryptic splice acceptor in exon 7 was employed. This induced a frameshift and the generation of a p.Arg155Serfs*15 premature termination codon (PTC) within all DCLRE1C splice variants, resulting in the absence of full-length ARTEMIS protein. Consistently, a V(D)J recombination assay and a G0 micronucleus assay demonstrated the inability of the predicted mutant ARTEMIS protein to perform V(D)J recombination and DNA damage repair, respectively. Together, these experiments molecularly and functionally clarify how a newly identified c.465-1G>C variant in the DCLRE1C gene is responsible for inducing SCID. In a clinical context, this demonstrates how the experimental validation of new gene variants, that are identified by NGS, can facilitate the diagnosis of SCID which can be vital for implementing appropriate therapies.
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spelling pubmed-82484922021-07-02 A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair Strubbe, Steven De Bruyne, Marieke Pannicke, Ulrich Beyls, Elien Vandekerckhove, Bart Leclercq, Georges De Baere, Elfride Bordon, Victoria Vral, Anne Schwarz, Klaus Haerynck, Filomeen Taghon, Tom Front Immunol Immunology Severe Combined Immune Deficiency (SCID) is a primary deficiency of the immune system in which opportunistic and recurring infections are often fatal during neonatal or infant life. SCID is caused by an increasing number of genetic defects that induce an abrogation of T lymphocyte development or function in which B and NK cells might be affected as well. Because of the increased availability and usage of next-generation sequencing (NGS), many novel variants in SCID genes are being identified and cause a heterogeneous disease spectrum. However, the molecular and functional implications of these new variants, of which some are non-coding, are often not characterized in detail. Using targeted NGS, we identified a novel homozygous c.465-1G>C splice acceptor site variant in the DCLRE1C gene in a T(-)B(-)NK(+) SCID patient and fully characterized the molecular and functional impact. By performing a minigene splicing reporter assay, we revealed deregulated splicing of the DCLRE1C transcript since a cryptic splice acceptor in exon 7 was employed. This induced a frameshift and the generation of a p.Arg155Serfs*15 premature termination codon (PTC) within all DCLRE1C splice variants, resulting in the absence of full-length ARTEMIS protein. Consistently, a V(D)J recombination assay and a G0 micronucleus assay demonstrated the inability of the predicted mutant ARTEMIS protein to perform V(D)J recombination and DNA damage repair, respectively. Together, these experiments molecularly and functionally clarify how a newly identified c.465-1G>C variant in the DCLRE1C gene is responsible for inducing SCID. In a clinical context, this demonstrates how the experimental validation of new gene variants, that are identified by NGS, can facilitate the diagnosis of SCID which can be vital for implementing appropriate therapies. Frontiers Media S.A. 2021-06-17 /pmc/articles/PMC8248492/ /pubmed/34220820 http://dx.doi.org/10.3389/fimmu.2021.674226 Text en Copyright © 2021 Strubbe, De Bruyne, Pannicke, Beyls, Vandekerckhove, Leclercq, De Baere, Bordon, Vral, Schwarz, Haerynck and Taghon 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
Strubbe, Steven
De Bruyne, Marieke
Pannicke, Ulrich
Beyls, Elien
Vandekerckhove, Bart
Leclercq, Georges
De Baere, Elfride
Bordon, Victoria
Vral, Anne
Schwarz, Klaus
Haerynck, Filomeen
Taghon, Tom
A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair
title A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair
title_full A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair
title_fullStr A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair
title_full_unstemmed A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair
title_short A Novel Non-Coding Variant in DCLRE1C Results in Deregulated Splicing and Induces SCID Through the Generation of a Truncated ARTEMIS Protein That Fails to Support V(D)J Recombination and DNA Damage Repair
title_sort novel non-coding variant in dclre1c results in deregulated splicing and induces scid through the generation of a truncated artemis protein that fails to support v(d)j recombination and dna damage repair
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8248492/
https://www.ncbi.nlm.nih.gov/pubmed/34220820
http://dx.doi.org/10.3389/fimmu.2021.674226
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