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FXN gene methylation determines carrier status in Friedreich ataxia

BACKGROUND: Friedreich ataxia (FRDA) is typically caused by homozygosity for an expanded GAA triplet-repeat (GAA-TRE) in intron 1 of the FXN gene. Some patients are compound heterozygous for the GAA-TRE and another FXN pathogenic variant. Detection of the GAA-TRE in the heterozygous state, occasiona...

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Autores principales: Lam, Christina, Gilliam, Kaitlyn M, Rodden, Layne N, Schadt, Kimberly A, Lynch, David R, Bidichandani, Sanjay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10423546/
https://www.ncbi.nlm.nih.gov/pubmed/36635061
http://dx.doi.org/10.1136/jmg-2022-108742
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author Lam, Christina
Gilliam, Kaitlyn M
Rodden, Layne N
Schadt, Kimberly A
Lynch, David R
Bidichandani, Sanjay
author_facet Lam, Christina
Gilliam, Kaitlyn M
Rodden, Layne N
Schadt, Kimberly A
Lynch, David R
Bidichandani, Sanjay
author_sort Lam, Christina
collection PubMed
description BACKGROUND: Friedreich ataxia (FRDA) is typically caused by homozygosity for an expanded GAA triplet-repeat (GAA-TRE) in intron 1 of the FXN gene. Some patients are compound heterozygous for the GAA-TRE and another FXN pathogenic variant. Detection of the GAA-TRE in the heterozygous state, occasionally technically challenging, is essential for diagnosing compound heterozygotes and asymptomatic carriers. OBJECTIVE: We explored if the FRDA differentially methylated region (FRDA-DMR) in intron 1, which is hypermethylated in cis with the GAA-TRE, effectively detects heterozygous GAA-TRE. METHODS: FXN DNA methylation was assayed by targeted bisulfite deep sequencing using the Illumina platform. RESULTS: FRDA-DMR methylation effectively identified a cohort of known heterozygous carriers of the GAA-TRE. In an individual with clinical features of FRDA, commercial testing showed a paternally inherited pathogenic FXN initiation codon variant but no GAA-TRE. Methylation in the FRDA-DMR effectively identified the proband, his mother and various maternal relatives as heterozygous carriers of the GAA-TRE, thus confirming the diagnosis of FRDA. CONCLUSION: FXN DNA methylation reliably detects the GAA-TRE in the heterozygous state and offers a robust alternative strategy to diagnose FRDA due to compound heterozygosity and to identify asymptomatic heterozygous carriers of the GAA-TRE.
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spelling pubmed-104235462023-08-14 FXN gene methylation determines carrier status in Friedreich ataxia Lam, Christina Gilliam, Kaitlyn M Rodden, Layne N Schadt, Kimberly A Lynch, David R Bidichandani, Sanjay J Med Genet Neurogenetics BACKGROUND: Friedreich ataxia (FRDA) is typically caused by homozygosity for an expanded GAA triplet-repeat (GAA-TRE) in intron 1 of the FXN gene. Some patients are compound heterozygous for the GAA-TRE and another FXN pathogenic variant. Detection of the GAA-TRE in the heterozygous state, occasionally technically challenging, is essential for diagnosing compound heterozygotes and asymptomatic carriers. OBJECTIVE: We explored if the FRDA differentially methylated region (FRDA-DMR) in intron 1, which is hypermethylated in cis with the GAA-TRE, effectively detects heterozygous GAA-TRE. METHODS: FXN DNA methylation was assayed by targeted bisulfite deep sequencing using the Illumina platform. RESULTS: FRDA-DMR methylation effectively identified a cohort of known heterozygous carriers of the GAA-TRE. In an individual with clinical features of FRDA, commercial testing showed a paternally inherited pathogenic FXN initiation codon variant but no GAA-TRE. Methylation in the FRDA-DMR effectively identified the proband, his mother and various maternal relatives as heterozygous carriers of the GAA-TRE, thus confirming the diagnosis of FRDA. CONCLUSION: FXN DNA methylation reliably detects the GAA-TRE in the heterozygous state and offers a robust alternative strategy to diagnose FRDA due to compound heterozygosity and to identify asymptomatic heterozygous carriers of the GAA-TRE. BMJ Publishing Group 2023-08 2023-01-12 /pmc/articles/PMC10423546/ /pubmed/36635061 http://dx.doi.org/10.1136/jmg-2022-108742 Text en © Author(s) (or their employer(s)) 2023. Re-use permitted under CC BY-NC. No commercial re-use. See rights and permissions. Published by BMJ. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited, appropriate credit is given, any changes made indicated, and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Neurogenetics
Lam, Christina
Gilliam, Kaitlyn M
Rodden, Layne N
Schadt, Kimberly A
Lynch, David R
Bidichandani, Sanjay
FXN gene methylation determines carrier status in Friedreich ataxia
title FXN gene methylation determines carrier status in Friedreich ataxia
title_full FXN gene methylation determines carrier status in Friedreich ataxia
title_fullStr FXN gene methylation determines carrier status in Friedreich ataxia
title_full_unstemmed FXN gene methylation determines carrier status in Friedreich ataxia
title_short FXN gene methylation determines carrier status in Friedreich ataxia
title_sort fxn gene methylation determines carrier status in friedreich ataxia
topic Neurogenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10423546/
https://www.ncbi.nlm.nih.gov/pubmed/36635061
http://dx.doi.org/10.1136/jmg-2022-108742
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