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Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia

Tricuspid Atresia (TA) is a rare form of congenital heart disease (CHD) with usually poor prognosis in humans. It presents as a complete absence of the right atrio-ventricular connection secured normally by the tricuspid valve. Defects in the tricuspid valve are so far not associated with any geneti...

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Autores principales: Abdul-Sater, Zahi, Yehya, Amin, Beresian, Jean, Salem, Elie, Kamar, Amina, Baydoun, Serine, Shibbani, Kamel, Soubra, Ayman, Bitar, Fadi, Nemer, Georges
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3511479/
https://www.ncbi.nlm.nih.gov/pubmed/23226213
http://dx.doi.org/10.1371/journal.pone.0049532
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author Abdul-Sater, Zahi
Yehya, Amin
Beresian, Jean
Salem, Elie
Kamar, Amina
Baydoun, Serine
Shibbani, Kamel
Soubra, Ayman
Bitar, Fadi
Nemer, Georges
author_facet Abdul-Sater, Zahi
Yehya, Amin
Beresian, Jean
Salem, Elie
Kamar, Amina
Baydoun, Serine
Shibbani, Kamel
Soubra, Ayman
Bitar, Fadi
Nemer, Georges
author_sort Abdul-Sater, Zahi
collection PubMed
description Tricuspid Atresia (TA) is a rare form of congenital heart disease (CHD) with usually poor prognosis in humans. It presents as a complete absence of the right atrio-ventricular connection secured normally by the tricuspid valve. Defects in the tricuspid valve are so far not associated with any genetic locus, although mutations in numerous genes were linked to multiple forms of congenital heart disease. In the last decade, Knock-out mice have offered models for cardiologists and geneticists to study the causes of congenital disease. One such model was the Nfatc1 (−/−) mice embryos which die at mid-gestation stage due to a complete absence of the valves. NFATC1 belongs to the Rel family of transcription factors members of which were shown to be implicated in gene activation, cell differentiation, and organogenesis. We have previously shown that a tandem repeat in the intronic region of NFATC1 is associated with ventricular septal defects. In this report, we unravel for the first time a potential link between a mutation in NFATC1 and TA. Two heterozygous missense mutations were found in the NFATC1 gene in one indexed-case out of 19 patients with TA. The two amino-acids changes were not found neither in other patients with CHDs, nor in the control healthy population. Moreover, we showed that these mutations alter dramatically the normal function of the protein at the cellular localization, DNA binding and transcriptional levels suggesting they are disease-causing.
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spelling pubmed-35114792012-12-05 Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia Abdul-Sater, Zahi Yehya, Amin Beresian, Jean Salem, Elie Kamar, Amina Baydoun, Serine Shibbani, Kamel Soubra, Ayman Bitar, Fadi Nemer, Georges PLoS One Research Article Tricuspid Atresia (TA) is a rare form of congenital heart disease (CHD) with usually poor prognosis in humans. It presents as a complete absence of the right atrio-ventricular connection secured normally by the tricuspid valve. Defects in the tricuspid valve are so far not associated with any genetic locus, although mutations in numerous genes were linked to multiple forms of congenital heart disease. In the last decade, Knock-out mice have offered models for cardiologists and geneticists to study the causes of congenital disease. One such model was the Nfatc1 (−/−) mice embryos which die at mid-gestation stage due to a complete absence of the valves. NFATC1 belongs to the Rel family of transcription factors members of which were shown to be implicated in gene activation, cell differentiation, and organogenesis. We have previously shown that a tandem repeat in the intronic region of NFATC1 is associated with ventricular septal defects. In this report, we unravel for the first time a potential link between a mutation in NFATC1 and TA. Two heterozygous missense mutations were found in the NFATC1 gene in one indexed-case out of 19 patients with TA. The two amino-acids changes were not found neither in other patients with CHDs, nor in the control healthy population. Moreover, we showed that these mutations alter dramatically the normal function of the protein at the cellular localization, DNA binding and transcriptional levels suggesting they are disease-causing. Public Library of Science 2012-11-30 /pmc/articles/PMC3511479/ /pubmed/23226213 http://dx.doi.org/10.1371/journal.pone.0049532 Text en © 2012 Abdul-Sater 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
Abdul-Sater, Zahi
Yehya, Amin
Beresian, Jean
Salem, Elie
Kamar, Amina
Baydoun, Serine
Shibbani, Kamel
Soubra, Ayman
Bitar, Fadi
Nemer, Georges
Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia
title Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia
title_full Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia
title_fullStr Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia
title_full_unstemmed Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia
title_short Two Heterozygous Mutations in NFATC1 in a Patient with Tricuspid Atresia
title_sort two heterozygous mutations in nfatc1 in a patient with tricuspid atresia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3511479/
https://www.ncbi.nlm.nih.gov/pubmed/23226213
http://dx.doi.org/10.1371/journal.pone.0049532
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