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A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant

We investigated two siblings with granulomatous histiocytosis prominent in the nasal area, mimicking rhinoscleroma and Rosai-Dorfman syndrome. Genome-wide linkage analysis and whole-exome sequencing identified a homozygous frameshift deletion in SLC29A3, which encodes human equilibrative nucleoside...

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Autores principales: Bolze, Alexandre, Abhyankar, Avinash, Grant, Audrey V., Patel, Bhavi, Yadav, Ruchi, Byun, Minji, Caillez, Daniel, Emile, Jean-Francois, Pastor-Anglada, Marçal, Abel, Laurent, Puel, Anne, Govindarajan, Rajgopal, de Pontual, Loic, Casanova, Jean-Laurent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3251605/
https://www.ncbi.nlm.nih.gov/pubmed/22238637
http://dx.doi.org/10.1371/journal.pone.0029708
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author Bolze, Alexandre
Abhyankar, Avinash
Grant, Audrey V.
Patel, Bhavi
Yadav, Ruchi
Byun, Minji
Caillez, Daniel
Emile, Jean-Francois
Pastor-Anglada, Marçal
Abel, Laurent
Puel, Anne
Govindarajan, Rajgopal
de Pontual, Loic
Casanova, Jean-Laurent
author_facet Bolze, Alexandre
Abhyankar, Avinash
Grant, Audrey V.
Patel, Bhavi
Yadav, Ruchi
Byun, Minji
Caillez, Daniel
Emile, Jean-Francois
Pastor-Anglada, Marçal
Abel, Laurent
Puel, Anne
Govindarajan, Rajgopal
de Pontual, Loic
Casanova, Jean-Laurent
author_sort Bolze, Alexandre
collection PubMed
description We investigated two siblings with granulomatous histiocytosis prominent in the nasal area, mimicking rhinoscleroma and Rosai-Dorfman syndrome. Genome-wide linkage analysis and whole-exome sequencing identified a homozygous frameshift deletion in SLC29A3, which encodes human equilibrative nucleoside transporter-3 (hENT3). Germline mutations in SLC29A3 have been reported in rare patients with a wide range of overlapping clinical features and inherited disorders including H syndrome, pigmented hypertrichosis with insulin-dependent diabetes, and Faisalabad histiocytosis. With the exception of insulin-dependent diabetes and mild finger and toe contractures in one sibling, the two patients with nasal granulomatous histiocytosis studied here displayed none of the many SLC29A3-associated phenotypes. This mild clinical phenotype probably results from a remarkable genetic mechanism. The SLC29A3 frameshift deletion prevents the expression of the normally coding transcripts. It instead leads to the translation, expression, and function of an otherwise noncoding, out-of-frame mRNA splice variant lacking exon 3 that is eliminated by nonsense-mediated mRNA decay (NMD) in healthy individuals. The mutated isoform differs from the wild-type hENT3 by the modification of 20 residues in exon 2 and the removal of another 28 amino acids in exon 3, which include the second transmembrane domain. As a result, this new isoform displays some functional activity. This mechanism probably accounts for the narrow and mild clinical phenotype of the patients. This study highlights the ‘rescue’ role played by a normally noncoding mRNA splice variant of SLC29A3, uncovering a new mechanism by which frameshift mutations can be hypomorphic.
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spelling pubmed-32516052012-01-11 A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant Bolze, Alexandre Abhyankar, Avinash Grant, Audrey V. Patel, Bhavi Yadav, Ruchi Byun, Minji Caillez, Daniel Emile, Jean-Francois Pastor-Anglada, Marçal Abel, Laurent Puel, Anne Govindarajan, Rajgopal de Pontual, Loic Casanova, Jean-Laurent PLoS One Research Article We investigated two siblings with granulomatous histiocytosis prominent in the nasal area, mimicking rhinoscleroma and Rosai-Dorfman syndrome. Genome-wide linkage analysis and whole-exome sequencing identified a homozygous frameshift deletion in SLC29A3, which encodes human equilibrative nucleoside transporter-3 (hENT3). Germline mutations in SLC29A3 have been reported in rare patients with a wide range of overlapping clinical features and inherited disorders including H syndrome, pigmented hypertrichosis with insulin-dependent diabetes, and Faisalabad histiocytosis. With the exception of insulin-dependent diabetes and mild finger and toe contractures in one sibling, the two patients with nasal granulomatous histiocytosis studied here displayed none of the many SLC29A3-associated phenotypes. This mild clinical phenotype probably results from a remarkable genetic mechanism. The SLC29A3 frameshift deletion prevents the expression of the normally coding transcripts. It instead leads to the translation, expression, and function of an otherwise noncoding, out-of-frame mRNA splice variant lacking exon 3 that is eliminated by nonsense-mediated mRNA decay (NMD) in healthy individuals. The mutated isoform differs from the wild-type hENT3 by the modification of 20 residues in exon 2 and the removal of another 28 amino acids in exon 3, which include the second transmembrane domain. As a result, this new isoform displays some functional activity. This mechanism probably accounts for the narrow and mild clinical phenotype of the patients. This study highlights the ‘rescue’ role played by a normally noncoding mRNA splice variant of SLC29A3, uncovering a new mechanism by which frameshift mutations can be hypomorphic. Public Library of Science 2012-01-04 /pmc/articles/PMC3251605/ /pubmed/22238637 http://dx.doi.org/10.1371/journal.pone.0029708 Text en Bolze 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
Bolze, Alexandre
Abhyankar, Avinash
Grant, Audrey V.
Patel, Bhavi
Yadav, Ruchi
Byun, Minji
Caillez, Daniel
Emile, Jean-Francois
Pastor-Anglada, Marçal
Abel, Laurent
Puel, Anne
Govindarajan, Rajgopal
de Pontual, Loic
Casanova, Jean-Laurent
A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant
title A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant
title_full A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant
title_fullStr A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant
title_full_unstemmed A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant
title_short A Mild Form of SLC29A3 Disorder: A Frameshift Deletion Leads to the Paradoxical Translation of an Otherwise Noncoding mRNA Splice Variant
title_sort mild form of slc29a3 disorder: a frameshift deletion leads to the paradoxical translation of an otherwise noncoding mrna splice variant
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3251605/
https://www.ncbi.nlm.nih.gov/pubmed/22238637
http://dx.doi.org/10.1371/journal.pone.0029708
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