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Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism

Recent studies have identified both recessive and dominant forms of mitochondrial disease that result from ATAD3A variants. The recessive form includes subjects with biallelic deletions mediated by non-allelic homologous recombination. We report five unrelated neonates with a lethal metabolic disord...

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Autores principales: Gunning, Adam C., Strucinska, Klaudia, Muñoz Oreja, Mikel, Parrish, Andrew, Caswell, Richard, Stals, Karen L., Durigon, Romina, Durlacher-Betzer, Karina, Cunningham, Mitchell H., Grochowski, Christopher M., Baptista, Julia, Tysoe, Carolyn, Baple, Emma, Lahiri, Nayana, Homfray, Tessa, Scurr, Ingrid, Armstrong, Catherine, Dean, John, Fernandez Pelayo, Uxoa, Jones, Aleck W.E., Taylor, Robert W., Misra, Vinod K., Yoon, Wan Hee, Wright, Caroline F., Lupski, James R., Spinazzola, Antonella, Harel, Tamar, Holt, Ian J., Ellard, Sian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010973/
https://www.ncbi.nlm.nih.gov/pubmed/32004445
http://dx.doi.org/10.1016/j.ajhg.2020.01.007
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author Gunning, Adam C.
Strucinska, Klaudia
Muñoz Oreja, Mikel
Parrish, Andrew
Caswell, Richard
Stals, Karen L.
Durigon, Romina
Durlacher-Betzer, Karina
Cunningham, Mitchell H.
Grochowski, Christopher M.
Baptista, Julia
Tysoe, Carolyn
Baple, Emma
Lahiri, Nayana
Homfray, Tessa
Scurr, Ingrid
Armstrong, Catherine
Dean, John
Fernandez Pelayo, Uxoa
Jones, Aleck W.E.
Taylor, Robert W.
Misra, Vinod K.
Yoon, Wan Hee
Wright, Caroline F.
Lupski, James R.
Spinazzola, Antonella
Harel, Tamar
Holt, Ian J.
Ellard, Sian
author_facet Gunning, Adam C.
Strucinska, Klaudia
Muñoz Oreja, Mikel
Parrish, Andrew
Caswell, Richard
Stals, Karen L.
Durigon, Romina
Durlacher-Betzer, Karina
Cunningham, Mitchell H.
Grochowski, Christopher M.
Baptista, Julia
Tysoe, Carolyn
Baple, Emma
Lahiri, Nayana
Homfray, Tessa
Scurr, Ingrid
Armstrong, Catherine
Dean, John
Fernandez Pelayo, Uxoa
Jones, Aleck W.E.
Taylor, Robert W.
Misra, Vinod K.
Yoon, Wan Hee
Wright, Caroline F.
Lupski, James R.
Spinazzola, Antonella
Harel, Tamar
Holt, Ian J.
Ellard, Sian
author_sort Gunning, Adam C.
collection PubMed
description Recent studies have identified both recessive and dominant forms of mitochondrial disease that result from ATAD3A variants. The recessive form includes subjects with biallelic deletions mediated by non-allelic homologous recombination. We report five unrelated neonates with a lethal metabolic disorder characterized by cardiomyopathy, corneal opacities, encephalopathy, hypotonia, and seizures in whom a monoallelic reciprocal duplication at the ATAD3 locus was identified. Analysis of the breakpoint junction fragment indicated that these 67 kb heterozygous duplications were likely mediated by non-allelic homologous recombination at regions of high sequence identity in ATAD3A exon 11 and ATAD3C exon 7. At the recombinant junction, the duplication allele produces a fusion gene derived from ATAD3A and ATAD3C, the protein product of which lacks key functional residues. Analysis of fibroblasts derived from two affected individuals shows that the fusion gene product is expressed and stable. These cells display perturbed cholesterol and mitochondrial DNA organization similar to that observed for individuals with severe ATAD3A deficiency. We hypothesize that the fusion protein acts through a dominant-negative mechanism to cause this fatal mitochondrial disorder. Our data delineate a molecular diagnosis for this disorder, extend the clinical spectrum associated with structural variation at the ATAD3 locus, and identify a third mutational mechanism for ATAD3 gene cluster variants. These results further affirm structural variant mutagenesis mechanisms in sporadic disease traits, emphasize the importance of copy number analysis in molecular genomic diagnosis, and highlight some of the challenges of detecting and interpreting clinically relevant rare gene rearrangements from next-generation sequencing data.
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spelling pubmed-70109732020-03-10 Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism Gunning, Adam C. Strucinska, Klaudia Muñoz Oreja, Mikel Parrish, Andrew Caswell, Richard Stals, Karen L. Durigon, Romina Durlacher-Betzer, Karina Cunningham, Mitchell H. Grochowski, Christopher M. Baptista, Julia Tysoe, Carolyn Baple, Emma Lahiri, Nayana Homfray, Tessa Scurr, Ingrid Armstrong, Catherine Dean, John Fernandez Pelayo, Uxoa Jones, Aleck W.E. Taylor, Robert W. Misra, Vinod K. Yoon, Wan Hee Wright, Caroline F. Lupski, James R. Spinazzola, Antonella Harel, Tamar Holt, Ian J. Ellard, Sian Am J Hum Genet Report Recent studies have identified both recessive and dominant forms of mitochondrial disease that result from ATAD3A variants. The recessive form includes subjects with biallelic deletions mediated by non-allelic homologous recombination. We report five unrelated neonates with a lethal metabolic disorder characterized by cardiomyopathy, corneal opacities, encephalopathy, hypotonia, and seizures in whom a monoallelic reciprocal duplication at the ATAD3 locus was identified. Analysis of the breakpoint junction fragment indicated that these 67 kb heterozygous duplications were likely mediated by non-allelic homologous recombination at regions of high sequence identity in ATAD3A exon 11 and ATAD3C exon 7. At the recombinant junction, the duplication allele produces a fusion gene derived from ATAD3A and ATAD3C, the protein product of which lacks key functional residues. Analysis of fibroblasts derived from two affected individuals shows that the fusion gene product is expressed and stable. These cells display perturbed cholesterol and mitochondrial DNA organization similar to that observed for individuals with severe ATAD3A deficiency. We hypothesize that the fusion protein acts through a dominant-negative mechanism to cause this fatal mitochondrial disorder. Our data delineate a molecular diagnosis for this disorder, extend the clinical spectrum associated with structural variation at the ATAD3 locus, and identify a third mutational mechanism for ATAD3 gene cluster variants. These results further affirm structural variant mutagenesis mechanisms in sporadic disease traits, emphasize the importance of copy number analysis in molecular genomic diagnosis, and highlight some of the challenges of detecting and interpreting clinically relevant rare gene rearrangements from next-generation sequencing data. Elsevier 2020-02-06 2020-01-30 /pmc/articles/PMC7010973/ /pubmed/32004445 http://dx.doi.org/10.1016/j.ajhg.2020.01.007 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Report
Gunning, Adam C.
Strucinska, Klaudia
Muñoz Oreja, Mikel
Parrish, Andrew
Caswell, Richard
Stals, Karen L.
Durigon, Romina
Durlacher-Betzer, Karina
Cunningham, Mitchell H.
Grochowski, Christopher M.
Baptista, Julia
Tysoe, Carolyn
Baple, Emma
Lahiri, Nayana
Homfray, Tessa
Scurr, Ingrid
Armstrong, Catherine
Dean, John
Fernandez Pelayo, Uxoa
Jones, Aleck W.E.
Taylor, Robert W.
Misra, Vinod K.
Yoon, Wan Hee
Wright, Caroline F.
Lupski, James R.
Spinazzola, Antonella
Harel, Tamar
Holt, Ian J.
Ellard, Sian
Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism
title Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism
title_full Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism
title_fullStr Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism
title_full_unstemmed Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism
title_short Recurrent De Novo NAHR Reciprocal Duplications in the ATAD3 Gene Cluster Cause a Neurogenetic Trait with Perturbed Cholesterol and Mitochondrial Metabolism
title_sort recurrent de novo nahr reciprocal duplications in the atad3 gene cluster cause a neurogenetic trait with perturbed cholesterol and mitochondrial metabolism
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7010973/
https://www.ncbi.nlm.nih.gov/pubmed/32004445
http://dx.doi.org/10.1016/j.ajhg.2020.01.007
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