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Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD)
CONTEXT: Classic ACTH resistance, due to disruption of ACTH signaling, accounts for the majority of cases of familial glucocorticoid deficiency (FGD). Recently FGD cases caused by mutations in the mitochondrial antioxidant, nicotinamide nucleotide transhydrogenase, have highlighted the importance of...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Endocrine Society
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207928/ https://www.ncbi.nlm.nih.gov/pubmed/24601690 http://dx.doi.org/10.1210/jc.2013-3844 |
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author | Prasad, Rathi Chan, Li F. Hughes, Claire R. Kaski, Juan P. Kowalczyk, Julia C. Savage, Martin O. Peters, Catherine J. Nathwani, Nisha Clark, Adrian J. L. Storr, Helen L. Metherell, Louise A. |
author_facet | Prasad, Rathi Chan, Li F. Hughes, Claire R. Kaski, Juan P. Kowalczyk, Julia C. Savage, Martin O. Peters, Catherine J. Nathwani, Nisha Clark, Adrian J. L. Storr, Helen L. Metherell, Louise A. |
author_sort | Prasad, Rathi |
collection | PubMed |
description | CONTEXT: Classic ACTH resistance, due to disruption of ACTH signaling, accounts for the majority of cases of familial glucocorticoid deficiency (FGD). Recently FGD cases caused by mutations in the mitochondrial antioxidant, nicotinamide nucleotide transhydrogenase, have highlighted the importance of redox regulation in steroidogenesis. OBJECTIVE: We hypothesized that other components of mitochondrial antioxidant systems would be good candidates in the etiology of FGD. DESIGN: Whole-exome sequencing was performed on three related patients, and segregation of putative causal variants confirmed by Sanger sequencing of all family members. A TXNRD2-knockdown H295R cell line was created to investigate redox homeostasis. SETTING: The study was conducted on patients from three pediatric centers in the United Kingdom. PATIENTS: Seven individuals from a consanguineous Kashmiri kindred, six of whom presented with FGD between 0.1 and 10.8 years, participated in the study. INTERVENTIONS: There were no interventions. MAIN OUTCOME MEASURE: Identification and functional interrogation of a novel homozygous mutation segregating with the disease trait were measured. RESULTS: A stop gain mutation, p.Y447X in TXNRD2, encoding the mitochondrial selenoprotein thioredoxin reductase 2 (TXNRD2) was identified and segregated with disease in this extended kindred. RT-PCR and Western blotting revealed complete absence of TXNRD2 in patients homozygous for the mutation. TXNRD2 deficiency leads to impaired redox homeostasis in a human adrenocortical cell line. CONCLUSION: In contrast to the Txnrd2-knockout mouse model, in which embryonic lethality as a consequence of hematopoietic and cardiac defects is described, absence of TXNRD2 in humans leads to glucocorticoid deficiency. This is the first report of a homozygous mutation in any component of the thioredoxin antioxidant system leading to inherited disease in humans. |
format | Online Article Text |
id | pubmed-4207928 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Endocrine Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-42079282014-11-04 Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) Prasad, Rathi Chan, Li F. Hughes, Claire R. Kaski, Juan P. Kowalczyk, Julia C. Savage, Martin O. Peters, Catherine J. Nathwani, Nisha Clark, Adrian J. L. Storr, Helen L. Metherell, Louise A. J Clin Endocrinol Metab JCEM Online: Advances in Genetics CONTEXT: Classic ACTH resistance, due to disruption of ACTH signaling, accounts for the majority of cases of familial glucocorticoid deficiency (FGD). Recently FGD cases caused by mutations in the mitochondrial antioxidant, nicotinamide nucleotide transhydrogenase, have highlighted the importance of redox regulation in steroidogenesis. OBJECTIVE: We hypothesized that other components of mitochondrial antioxidant systems would be good candidates in the etiology of FGD. DESIGN: Whole-exome sequencing was performed on three related patients, and segregation of putative causal variants confirmed by Sanger sequencing of all family members. A TXNRD2-knockdown H295R cell line was created to investigate redox homeostasis. SETTING: The study was conducted on patients from three pediatric centers in the United Kingdom. PATIENTS: Seven individuals from a consanguineous Kashmiri kindred, six of whom presented with FGD between 0.1 and 10.8 years, participated in the study. INTERVENTIONS: There were no interventions. MAIN OUTCOME MEASURE: Identification and functional interrogation of a novel homozygous mutation segregating with the disease trait were measured. RESULTS: A stop gain mutation, p.Y447X in TXNRD2, encoding the mitochondrial selenoprotein thioredoxin reductase 2 (TXNRD2) was identified and segregated with disease in this extended kindred. RT-PCR and Western blotting revealed complete absence of TXNRD2 in patients homozygous for the mutation. TXNRD2 deficiency leads to impaired redox homeostasis in a human adrenocortical cell line. CONCLUSION: In contrast to the Txnrd2-knockout mouse model, in which embryonic lethality as a consequence of hematopoietic and cardiac defects is described, absence of TXNRD2 in humans leads to glucocorticoid deficiency. This is the first report of a homozygous mutation in any component of the thioredoxin antioxidant system leading to inherited disease in humans. Endocrine Society 2014-08 2014-03-06 /pmc/articles/PMC4207928/ /pubmed/24601690 http://dx.doi.org/10.1210/jc.2013-3844 Text en Copyright © 2014 by the Endocrine Society 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 Prasad, Rathi Chan, Li F. Hughes, Claire R. Kaski, Juan P. Kowalczyk, Julia C. Savage, Martin O. Peters, Catherine J. Nathwani, Nisha Clark, Adrian J. L. Storr, Helen L. Metherell, Louise A. Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) |
title | Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) |
title_full | Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) |
title_fullStr | Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) |
title_full_unstemmed | Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) |
title_short | Thioredoxin Reductase 2 (TXNRD2) Mutation Associated With Familial Glucocorticoid Deficiency (FGD) |
title_sort | thioredoxin reductase 2 (txnrd2) mutation associated with familial glucocorticoid deficiency (fgd) |
topic | JCEM Online: Advances in Genetics |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207928/ https://www.ncbi.nlm.nih.gov/pubmed/24601690 http://dx.doi.org/10.1210/jc.2013-3844 |
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