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NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency

CONTEXT: Intronic DNA frequently encodes potential exonic sequences called pseudoexons. In recent years, mutations resulting in aberrant pseudoexon inclusion have been increasingly recognized to cause disease. OBJECTIVES: To find the genetic cause of familial glucocorticoid deficiency (FGD) in two s...

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Autores principales: Novoselova, Tatiana V., Rath, Shoshana R., Carpenter, Karen, Pachter, Nicholas, Dickinson, Jan E., Price, Glynis, Chan, Li F., Choong, Catherine S., Metherell, Louise A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Endocrine Society 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4318891/
https://www.ncbi.nlm.nih.gov/pubmed/25459914
http://dx.doi.org/10.1210/jc.2014-3641
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author Novoselova, Tatiana V.
Rath, Shoshana R.
Carpenter, Karen
Pachter, Nicholas
Dickinson, Jan E.
Price, Glynis
Chan, Li F.
Choong, Catherine S.
Metherell, Louise A.
author_facet Novoselova, Tatiana V.
Rath, Shoshana R.
Carpenter, Karen
Pachter, Nicholas
Dickinson, Jan E.
Price, Glynis
Chan, Li F.
Choong, Catherine S.
Metherell, Louise A.
author_sort Novoselova, Tatiana V.
collection PubMed
description CONTEXT: Intronic DNA frequently encodes potential exonic sequences called pseudoexons. In recent years, mutations resulting in aberrant pseudoexon inclusion have been increasingly recognized to cause disease. OBJECTIVES: To find the genetic cause of familial glucocorticoid deficiency (FGD) in two siblings. PATIENTS: The proband and his affected sibling, from nonconsanguineous parents of East Asian and South African origin, were diagnosed with FGD at the ages of 21 and 8 months, respectively. DESIGN: Whole exome sequencing was performed on genomic DNA (gDNA) of the siblings. Variants in genes known to cause FGD were assessed for causality. Further analysis of gDNA and cDNA was performed by PCR/RT-PCR followed by automated Sanger sequencing. RESULTS: Whole exome sequencing identified a single, novel heterozygous variant (p.Arg71*) in nicotinamide nucleotide transhydrogenase (NNT) in both affected individuals. Follow-up cDNA analysis in the proband identified a 69-bp pseudoexon inclusion event, and Sanger sequencing of his gDNA identified a 4-bp duplication responsible for its activation. The variants segregated with the disease: p.Arg71* was inherited from the mother, the pseudoexon change was inherited from the father, and an unaffected sibling had inherited only the p.Arg71* variant. CONCLUSIONS: FGD in these siblings is caused by compound heterozygous mutations in NNT; one causing pseudoexon inclusion in combination with another leading to Arg71*. Discovery of this pseudoexon activation mutation highlights the importance of identifying sequence changes in introns by cDNA analysis. The clinical implications of these findings include: facilitation of antenatal genetic diagnosis, early institution of potentially lifesaving therapy, and the possibility of preventative or curative intervention.
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spelling pubmed-43188912015-02-24 NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency Novoselova, Tatiana V. Rath, Shoshana R. Carpenter, Karen Pachter, Nicholas Dickinson, Jan E. Price, Glynis Chan, Li F. Choong, Catherine S. Metherell, Louise A. J Clin Endocrinol Metab JCEM Online: Advances in Genetics CONTEXT: Intronic DNA frequently encodes potential exonic sequences called pseudoexons. In recent years, mutations resulting in aberrant pseudoexon inclusion have been increasingly recognized to cause disease. OBJECTIVES: To find the genetic cause of familial glucocorticoid deficiency (FGD) in two siblings. PATIENTS: The proband and his affected sibling, from nonconsanguineous parents of East Asian and South African origin, were diagnosed with FGD at the ages of 21 and 8 months, respectively. DESIGN: Whole exome sequencing was performed on genomic DNA (gDNA) of the siblings. Variants in genes known to cause FGD were assessed for causality. Further analysis of gDNA and cDNA was performed by PCR/RT-PCR followed by automated Sanger sequencing. RESULTS: Whole exome sequencing identified a single, novel heterozygous variant (p.Arg71*) in nicotinamide nucleotide transhydrogenase (NNT) in both affected individuals. Follow-up cDNA analysis in the proband identified a 69-bp pseudoexon inclusion event, and Sanger sequencing of his gDNA identified a 4-bp duplication responsible for its activation. The variants segregated with the disease: p.Arg71* was inherited from the mother, the pseudoexon change was inherited from the father, and an unaffected sibling had inherited only the p.Arg71* variant. CONCLUSIONS: FGD in these siblings is caused by compound heterozygous mutations in NNT; one causing pseudoexon inclusion in combination with another leading to Arg71*. Discovery of this pseudoexon activation mutation highlights the importance of identifying sequence changes in introns by cDNA analysis. The clinical implications of these findings include: facilitation of antenatal genetic diagnosis, early institution of potentially lifesaving therapy, and the possibility of preventative or curative intervention. Endocrine Society 2015-02 2014-12-02 /pmc/articles/PMC4318891/ /pubmed/25459914 http://dx.doi.org/10.1210/jc.2014-3641 Text en This article has been published under the terms of the Creative Commons Attribution License (CC-BY (http://creativecommons.org/licenses/by/3.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Copyright for this article is retained by the author(s). Author(s) grant(s) The Endocrine Society the exclusive right to publish the article and identify itself as the original publisher.
spellingShingle JCEM Online: Advances in Genetics
Novoselova, Tatiana V.
Rath, Shoshana R.
Carpenter, Karen
Pachter, Nicholas
Dickinson, Jan E.
Price, Glynis
Chan, Li F.
Choong, Catherine S.
Metherell, Louise A.
NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency
title NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency
title_full NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency
title_fullStr NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency
title_full_unstemmed NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency
title_short NNT Pseudoexon Activation as a Novel Mechanism for Disease in Two Siblings With Familial Glucocorticoid Deficiency
title_sort nnt pseudoexon activation as a novel mechanism for disease in two siblings with familial glucocorticoid deficiency
topic JCEM Online: Advances in Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4318891/
https://www.ncbi.nlm.nih.gov/pubmed/25459914
http://dx.doi.org/10.1210/jc.2014-3641
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