Cargando…

A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease

BACKGROUND: Wilson disease is an autosomal recessive metabolic disorder resulting from accumulation of excess copper especially in the liver and brain. This disease is mainly characterized by hepatic disorders and less frequently by neuro‐psychiatric disturbances. This recessive disease is due to mu...

Descripción completa

Detalles Bibliográficos
Autores principales: Woimant, France, Poujois, Aurelia, Bloch, Adrien, Jordi, Tabaras, Laplanche, Jean‐Louis, Morel, Hélène, Collet, Corinne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7549599/
https://www.ncbi.nlm.nih.gov/pubmed/32770663
http://dx.doi.org/10.1002/mgg3.1428
_version_ 1783592826446020608
author Woimant, France
Poujois, Aurelia
Bloch, Adrien
Jordi, Tabaras
Laplanche, Jean‐Louis
Morel, Hélène
Collet, Corinne
author_facet Woimant, France
Poujois, Aurelia
Bloch, Adrien
Jordi, Tabaras
Laplanche, Jean‐Louis
Morel, Hélène
Collet, Corinne
author_sort Woimant, France
collection PubMed
description BACKGROUND: Wilson disease is an autosomal recessive metabolic disorder resulting from accumulation of excess copper especially in the liver and brain. This disease is mainly characterized by hepatic disorders and less frequently by neuro‐psychiatric disturbances. This recessive disease is due to mutation in ATP7B, which codes for an ATPase involved in copper‐transport across the plasma membrane. Molecular diagnosis of WD is positive in approximately 98% of cases. Also, in few cases, WD patients present a single deleterious mutation (heterozygous) or no mutation after sanger and NGS standard sequencing analysis of ATP7B. Therefore, in these problematic WD cases, we hypothesized that deleterious mutations reside in intronic regions of ATP7B. METHODS: Complete ATP7B gene was sequenced by Next Generation Sequencing including its promoter. RESULTS: Five unrelated families with Wilson disease shared the same novel, deep intronic NG_008806.1 (ATP7B_v001):c.2866‐1521G>A variant in ATP7B. Analysis of RNA transcripts from primary fibroblasts of one patient confirmed the deleterious impact of the intronic variant on splicing and its likely pathologic effect in this compound heterozygote. CONCLUSION: This discovery of a novel intronic mutation in ATP7B has improved the molecular diagnosis of WD in the French patient cohort to greater than 98%. Thus, we recommend complete sequencing of ATP7B gene, including introns, as a molecular diagnostic approach in cases of clinically confirmed WD which lack pathogenic exon or promoter variants in one or both alleles.
format Online
Article
Text
id pubmed-7549599
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75495992020-10-19 A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease Woimant, France Poujois, Aurelia Bloch, Adrien Jordi, Tabaras Laplanche, Jean‐Louis Morel, Hélène Collet, Corinne Mol Genet Genomic Med Original Articles BACKGROUND: Wilson disease is an autosomal recessive metabolic disorder resulting from accumulation of excess copper especially in the liver and brain. This disease is mainly characterized by hepatic disorders and less frequently by neuro‐psychiatric disturbances. This recessive disease is due to mutation in ATP7B, which codes for an ATPase involved in copper‐transport across the plasma membrane. Molecular diagnosis of WD is positive in approximately 98% of cases. Also, in few cases, WD patients present a single deleterious mutation (heterozygous) or no mutation after sanger and NGS standard sequencing analysis of ATP7B. Therefore, in these problematic WD cases, we hypothesized that deleterious mutations reside in intronic regions of ATP7B. METHODS: Complete ATP7B gene was sequenced by Next Generation Sequencing including its promoter. RESULTS: Five unrelated families with Wilson disease shared the same novel, deep intronic NG_008806.1 (ATP7B_v001):c.2866‐1521G>A variant in ATP7B. Analysis of RNA transcripts from primary fibroblasts of one patient confirmed the deleterious impact of the intronic variant on splicing and its likely pathologic effect in this compound heterozygote. CONCLUSION: This discovery of a novel intronic mutation in ATP7B has improved the molecular diagnosis of WD in the French patient cohort to greater than 98%. Thus, we recommend complete sequencing of ATP7B gene, including introns, as a molecular diagnostic approach in cases of clinically confirmed WD which lack pathogenic exon or promoter variants in one or both alleles. John Wiley and Sons Inc. 2020-08-08 /pmc/articles/PMC7549599/ /pubmed/32770663 http://dx.doi.org/10.1002/mgg3.1428 Text en © 2020 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Woimant, France
Poujois, Aurelia
Bloch, Adrien
Jordi, Tabaras
Laplanche, Jean‐Louis
Morel, Hélène
Collet, Corinne
A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease
title A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease
title_full A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease
title_fullStr A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease
title_full_unstemmed A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease
title_short A novel deep intronic variant in ATP7B in five unrelated families affected by Wilson disease
title_sort novel deep intronic variant in atp7b in five unrelated families affected by wilson disease
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7549599/
https://www.ncbi.nlm.nih.gov/pubmed/32770663
http://dx.doi.org/10.1002/mgg3.1428
work_keys_str_mv AT woimantfrance anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT poujoisaurelia anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT blochadrien anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT jorditabaras anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT laplanchejeanlouis anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT morelhelene anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT colletcorinne anoveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT woimantfrance noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT poujoisaurelia noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT blochadrien noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT jorditabaras noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT laplanchejeanlouis noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT morelhelene noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease
AT colletcorinne noveldeepintronicvariantinatp7binfiveunrelatedfamiliesaffectedbywilsondisease