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ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy

OBJECTIVE: Dominant optic atrophy (DOA) is the most common inherited optic neuropathy, with a prevalence of 1:12,000 to 1:25,000. OPA1 mutations are found in 70% of DOA patients, with a significant number remaining undiagnosed. METHODS: We screened 286 index cases presenting optic atrophy, negative...

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Autores principales: Caporali, Leonardo, Magri, Stefania, Legati, Andrea, Del Dotto, Valentina, Tagliavini, Francesca, Balistreri, Francesca, Nasca, Alessia, La Morgia, Chiara, Carbonelli, Michele, Valentino, Maria L., Lamantea, Eleonora, Baratta, Silvia, Schöls, Ludger, Schüle, Rebecca, Barboni, Piero, Cascavilla, Maria L., Maresca, Alessandra, Capristo, Mariantonietta, Ardissone, Anna, Pareyson, Davide, Cammarata, Gabriella, Melzi, Lisa, Zeviani, Massimo, Peverelli, Lorenzo, Lamperti, Costanza, Marzoli, Stefania B., Fang, Mingyan, Synofzik, Matthis, Ghezzi, Daniele, Carelli, Valerio, Taroni, Franco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7383914/
https://www.ncbi.nlm.nih.gov/pubmed/32219868
http://dx.doi.org/10.1002/ana.25723
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author Caporali, Leonardo
Magri, Stefania
Legati, Andrea
Del Dotto, Valentina
Tagliavini, Francesca
Balistreri, Francesca
Nasca, Alessia
La Morgia, Chiara
Carbonelli, Michele
Valentino, Maria L.
Lamantea, Eleonora
Baratta, Silvia
Schöls, Ludger
Schüle, Rebecca
Barboni, Piero
Cascavilla, Maria L.
Maresca, Alessandra
Capristo, Mariantonietta
Ardissone, Anna
Pareyson, Davide
Cammarata, Gabriella
Melzi, Lisa
Zeviani, Massimo
Peverelli, Lorenzo
Lamperti, Costanza
Marzoli, Stefania B.
Fang, Mingyan
Synofzik, Matthis
Ghezzi, Daniele
Carelli, Valerio
Taroni, Franco
author_facet Caporali, Leonardo
Magri, Stefania
Legati, Andrea
Del Dotto, Valentina
Tagliavini, Francesca
Balistreri, Francesca
Nasca, Alessia
La Morgia, Chiara
Carbonelli, Michele
Valentino, Maria L.
Lamantea, Eleonora
Baratta, Silvia
Schöls, Ludger
Schüle, Rebecca
Barboni, Piero
Cascavilla, Maria L.
Maresca, Alessandra
Capristo, Mariantonietta
Ardissone, Anna
Pareyson, Davide
Cammarata, Gabriella
Melzi, Lisa
Zeviani, Massimo
Peverelli, Lorenzo
Lamperti, Costanza
Marzoli, Stefania B.
Fang, Mingyan
Synofzik, Matthis
Ghezzi, Daniele
Carelli, Valerio
Taroni, Franco
author_sort Caporali, Leonardo
collection PubMed
description OBJECTIVE: Dominant optic atrophy (DOA) is the most common inherited optic neuropathy, with a prevalence of 1:12,000 to 1:25,000. OPA1 mutations are found in 70% of DOA patients, with a significant number remaining undiagnosed. METHODS: We screened 286 index cases presenting optic atrophy, negative for OPA1 mutations, by targeted next generation sequencing or whole exome sequencing. Pathogenicity and molecular mechanisms of the identified variants were studied in yeast and patient‐derived fibroblasts. RESULTS: Twelve cases (4%) were found to carry novel variants in AFG3L2, a gene that has been associated with autosomal dominant spinocerebellar ataxia 28 (SCA28). Half of cases were familial with a dominant inheritance, whereas the others were sporadic, including de novo mutations. Biallelic mutations were found in 3 probands with severe syndromic optic neuropathy, acting as recessive or phenotype‐modifier variants. All the DOA‐associated AFG3L2 mutations were clustered in the ATPase domain, whereas SCA28‐associated mutations mostly affect the proteolytic domain. The pathogenic role of DOA‐associated AFG3L2 mutations was confirmed in yeast, unraveling a mechanism distinct from that of SCA28‐associated AFG3L2 mutations. Patients' fibroblasts showed abnormal OPA1 processing, with accumulation of the fission‐inducing short forms leading to mitochondrial network fragmentation, not observed in SCA28 patients' cells. INTERPRETATION: This study demonstrates that mutations in AFG3L2 are a relevant cause of optic neuropathy, broadening the spectrum of clinical manifestations and genetic mechanisms associated with AFG3L2 mutations, and underscores the pivotal role of OPA1 and its processing in the pathogenesis of DOA. ANN NEUROL 2020 ANN NEUROL 2020;88:18–32
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spelling pubmed-73839142020-07-27 ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy Caporali, Leonardo Magri, Stefania Legati, Andrea Del Dotto, Valentina Tagliavini, Francesca Balistreri, Francesca Nasca, Alessia La Morgia, Chiara Carbonelli, Michele Valentino, Maria L. Lamantea, Eleonora Baratta, Silvia Schöls, Ludger Schüle, Rebecca Barboni, Piero Cascavilla, Maria L. Maresca, Alessandra Capristo, Mariantonietta Ardissone, Anna Pareyson, Davide Cammarata, Gabriella Melzi, Lisa Zeviani, Massimo Peverelli, Lorenzo Lamperti, Costanza Marzoli, Stefania B. Fang, Mingyan Synofzik, Matthis Ghezzi, Daniele Carelli, Valerio Taroni, Franco Ann Neurol Research Articles OBJECTIVE: Dominant optic atrophy (DOA) is the most common inherited optic neuropathy, with a prevalence of 1:12,000 to 1:25,000. OPA1 mutations are found in 70% of DOA patients, with a significant number remaining undiagnosed. METHODS: We screened 286 index cases presenting optic atrophy, negative for OPA1 mutations, by targeted next generation sequencing or whole exome sequencing. Pathogenicity and molecular mechanisms of the identified variants were studied in yeast and patient‐derived fibroblasts. RESULTS: Twelve cases (4%) were found to carry novel variants in AFG3L2, a gene that has been associated with autosomal dominant spinocerebellar ataxia 28 (SCA28). Half of cases were familial with a dominant inheritance, whereas the others were sporadic, including de novo mutations. Biallelic mutations were found in 3 probands with severe syndromic optic neuropathy, acting as recessive or phenotype‐modifier variants. All the DOA‐associated AFG3L2 mutations were clustered in the ATPase domain, whereas SCA28‐associated mutations mostly affect the proteolytic domain. The pathogenic role of DOA‐associated AFG3L2 mutations was confirmed in yeast, unraveling a mechanism distinct from that of SCA28‐associated AFG3L2 mutations. Patients' fibroblasts showed abnormal OPA1 processing, with accumulation of the fission‐inducing short forms leading to mitochondrial network fragmentation, not observed in SCA28 patients' cells. INTERPRETATION: This study demonstrates that mutations in AFG3L2 are a relevant cause of optic neuropathy, broadening the spectrum of clinical manifestations and genetic mechanisms associated with AFG3L2 mutations, and underscores the pivotal role of OPA1 and its processing in the pathogenesis of DOA. ANN NEUROL 2020 ANN NEUROL 2020;88:18–32 John Wiley & Sons, Inc. 2020-04-21 2020-07 /pmc/articles/PMC7383914/ /pubmed/32219868 http://dx.doi.org/10.1002/ana.25723 Text en © 2020 The Authors. Annals of Neurology published by Wiley Periodicals, Inc. on behalf of American Neurological Association. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Caporali, Leonardo
Magri, Stefania
Legati, Andrea
Del Dotto, Valentina
Tagliavini, Francesca
Balistreri, Francesca
Nasca, Alessia
La Morgia, Chiara
Carbonelli, Michele
Valentino, Maria L.
Lamantea, Eleonora
Baratta, Silvia
Schöls, Ludger
Schüle, Rebecca
Barboni, Piero
Cascavilla, Maria L.
Maresca, Alessandra
Capristo, Mariantonietta
Ardissone, Anna
Pareyson, Davide
Cammarata, Gabriella
Melzi, Lisa
Zeviani, Massimo
Peverelli, Lorenzo
Lamperti, Costanza
Marzoli, Stefania B.
Fang, Mingyan
Synofzik, Matthis
Ghezzi, Daniele
Carelli, Valerio
Taroni, Franco
ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy
title ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy
title_full ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy
title_fullStr ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy
title_full_unstemmed ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy
title_short ATPase Domain AFG3L2 Mutations Alter OPA1 Processing and Cause Optic Neuropathy
title_sort atpase domain afg3l2 mutations alter opa1 processing and cause optic neuropathy
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7383914/
https://www.ncbi.nlm.nih.gov/pubmed/32219868
http://dx.doi.org/10.1002/ana.25723
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