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Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot

OBJECTIVE: Rare variants in certain transcription factors involved in cardiac development cause Mendelian forms of congenital heart disease. The purpose of this study was to systematically assess the frequency of rare transcription factor variants in sporadic patients with the cardiac outflow tract...

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Autores principales: Töpf, Ana, Griffin, Helen R., Glen, Elise, Soemedi, Rachel, Brown, Danielle L., Hall, Darroch, Rahman, Thahira J., Eloranta, Jyrki J., Jüngst, Christoph, Stuart, A. Graham, O'Sullivan, John, Keavney, Bernard D., Goodship, Judith A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4122343/
https://www.ncbi.nlm.nih.gov/pubmed/25093829
http://dx.doi.org/10.1371/journal.pone.0095453
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author Töpf, Ana
Griffin, Helen R.
Glen, Elise
Soemedi, Rachel
Brown, Danielle L.
Hall, Darroch
Rahman, Thahira J.
Eloranta, Jyrki J.
Jüngst, Christoph
Stuart, A. Graham
O'Sullivan, John
Keavney, Bernard D.
Goodship, Judith A.
author_facet Töpf, Ana
Griffin, Helen R.
Glen, Elise
Soemedi, Rachel
Brown, Danielle L.
Hall, Darroch
Rahman, Thahira J.
Eloranta, Jyrki J.
Jüngst, Christoph
Stuart, A. Graham
O'Sullivan, John
Keavney, Bernard D.
Goodship, Judith A.
author_sort Töpf, Ana
collection PubMed
description OBJECTIVE: Rare variants in certain transcription factors involved in cardiac development cause Mendelian forms of congenital heart disease. The purpose of this study was to systematically assess the frequency of rare transcription factor variants in sporadic patients with the cardiac outflow tract malformation tetralogy of Fallot (TOF). METHODS AND RESULTS: We sequenced the coding, 5′UTR, and 3′UTR regions of twelve transcription factor genes implicated in cardiac outflow tract development (NKX2.5, GATA4, ISL1, TBX20, MEF2C, BOP/SMYD1, HAND2, FOXC1, FOXC2, FOXH, FOXA2 and TBX1) in 93 non-syndromic, non-Mendelian TOF cases. We also analysed Illumina Human 660W-Quad SNP Array data for copy number variants in these genes; none were detected. Four of the rare variants detected have previously been shown to affect transactivation in in vitro reporter assays: FOXC1 p.P297S, FOXC2 p.Q444R, FOXH1 p.S113T and TBX1 p.P43_G61del PPPPRYDPCAAAAPGAPGP. Two further rare variants, HAND2 p.A25_A26insAA and FOXC1 p.G378_G380delGGG, A488_491delAAAA, affected transactivation in in vitro reporter assays. Each of these six functionally significant variants was present in a single patient in the heterozygous state; each of the four for which parental samples were available were maternally inherited. Thus in the 93 TOF cases we identified six functionally significant mutations in the secondary heart field transcriptional network. SIGNIFICANCE: This study indicates that rare genetic variants in the secondary heart field transcriptional network with functional effects on protein function occur in 3–13% of patients with TOF. This is the first report of a functionally significant HAND2 mutation in a patient with congenital heart disease.
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spelling pubmed-41223432014-08-12 Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot Töpf, Ana Griffin, Helen R. Glen, Elise Soemedi, Rachel Brown, Danielle L. Hall, Darroch Rahman, Thahira J. Eloranta, Jyrki J. Jüngst, Christoph Stuart, A. Graham O'Sullivan, John Keavney, Bernard D. Goodship, Judith A. PLoS One Research Article OBJECTIVE: Rare variants in certain transcription factors involved in cardiac development cause Mendelian forms of congenital heart disease. The purpose of this study was to systematically assess the frequency of rare transcription factor variants in sporadic patients with the cardiac outflow tract malformation tetralogy of Fallot (TOF). METHODS AND RESULTS: We sequenced the coding, 5′UTR, and 3′UTR regions of twelve transcription factor genes implicated in cardiac outflow tract development (NKX2.5, GATA4, ISL1, TBX20, MEF2C, BOP/SMYD1, HAND2, FOXC1, FOXC2, FOXH, FOXA2 and TBX1) in 93 non-syndromic, non-Mendelian TOF cases. We also analysed Illumina Human 660W-Quad SNP Array data for copy number variants in these genes; none were detected. Four of the rare variants detected have previously been shown to affect transactivation in in vitro reporter assays: FOXC1 p.P297S, FOXC2 p.Q444R, FOXH1 p.S113T and TBX1 p.P43_G61del PPPPRYDPCAAAAPGAPGP. Two further rare variants, HAND2 p.A25_A26insAA and FOXC1 p.G378_G380delGGG, A488_491delAAAA, affected transactivation in in vitro reporter assays. Each of these six functionally significant variants was present in a single patient in the heterozygous state; each of the four for which parental samples were available were maternally inherited. Thus in the 93 TOF cases we identified six functionally significant mutations in the secondary heart field transcriptional network. SIGNIFICANCE: This study indicates that rare genetic variants in the secondary heart field transcriptional network with functional effects on protein function occur in 3–13% of patients with TOF. This is the first report of a functionally significant HAND2 mutation in a patient with congenital heart disease. Public Library of Science 2014-08-05 /pmc/articles/PMC4122343/ /pubmed/25093829 http://dx.doi.org/10.1371/journal.pone.0095453 Text en © 2014 Töpf et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Töpf, Ana
Griffin, Helen R.
Glen, Elise
Soemedi, Rachel
Brown, Danielle L.
Hall, Darroch
Rahman, Thahira J.
Eloranta, Jyrki J.
Jüngst, Christoph
Stuart, A. Graham
O'Sullivan, John
Keavney, Bernard D.
Goodship, Judith A.
Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot
title Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot
title_full Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot
title_fullStr Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot
title_full_unstemmed Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot
title_short Functionally Significant, Rare Transcription Factor Variants in Tetralogy of Fallot
title_sort functionally significant, rare transcription factor variants in tetralogy of fallot
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4122343/
https://www.ncbi.nlm.nih.gov/pubmed/25093829
http://dx.doi.org/10.1371/journal.pone.0095453
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