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Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy

Dominant Optic Atrophy (DOA) is one of the most common inherited mitochondrial diseases, leading to blindness. It is caused by the chronic degeneration of the retinal ganglion cells (RGCs) and their axons forming the optic nerve. Until now, DOA has been mainly associated with genes encoding proteins...

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Autores principales: Charif, Majida, Chevrollier, Arnaud, Gueguen, Naïg, Kane, Selma, Bris, Céline, Goudenège, David, Desquiret-Dumas, Valerie, Meunier, Isabelle, Mochel, Fanny, Jeanjean, Luc, Varenne, Fanny, Procaccio, Vincent, Reynier, Pascal, Bonneau, Dominique, Amati-Bonneau, Patrizia, Lenaers, Guy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9320445/
https://www.ncbi.nlm.nih.gov/pubmed/35885985
http://dx.doi.org/10.3390/genes13071202
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author Charif, Majida
Chevrollier, Arnaud
Gueguen, Naïg
Kane, Selma
Bris, Céline
Goudenège, David
Desquiret-Dumas, Valerie
Meunier, Isabelle
Mochel, Fanny
Jeanjean, Luc
Varenne, Fanny
Procaccio, Vincent
Reynier, Pascal
Bonneau, Dominique
Amati-Bonneau, Patrizia
Lenaers, Guy
author_facet Charif, Majida
Chevrollier, Arnaud
Gueguen, Naïg
Kane, Selma
Bris, Céline
Goudenège, David
Desquiret-Dumas, Valerie
Meunier, Isabelle
Mochel, Fanny
Jeanjean, Luc
Varenne, Fanny
Procaccio, Vincent
Reynier, Pascal
Bonneau, Dominique
Amati-Bonneau, Patrizia
Lenaers, Guy
author_sort Charif, Majida
collection PubMed
description Dominant Optic Atrophy (DOA) is one of the most common inherited mitochondrial diseases, leading to blindness. It is caused by the chronic degeneration of the retinal ganglion cells (RGCs) and their axons forming the optic nerve. Until now, DOA has been mainly associated with genes encoding proteins involved in mitochondrial network dynamics. Using next-generation and exome sequencing, we identified for the first time heterozygous PMPCA variants having a causative role in the pathology of late-onset primary DOA in five patients. PMPCA encodes an α subunit of the mitochondrial peptidase (MPP), responsible for the cleavage and maturation of the mitochondrial precursor proteins imported from the cytoplasm into mitochondria. Recently, PMPCA has been identified as the gene responsible for Autosomal Recessive Cerebellar Ataxia type 2 (SCAR2) and another severe recessive mitochondrial disease. In this study, four PMPCA variants were identified, two are frameshifts (c.309delA and c.820delG) classified as pathogenic and two are missenses (c.1363G>A and c.1547G>A) classified with uncertain pathological significance. Functional assays on patients’ fibroblasts show a hyperconnection of the mitochondrial network and revealed that frameshift variants reduced α-MPP levels, while not significantly affecting the respiratory machinery. These results suggest that alterations in mitochondrial peptidase function can affect the fusion-fission balance, a key element in maintaining the physiology of retinal ganglion cells, and consequently lead to their progressive degeneration.
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spelling pubmed-93204452022-07-27 Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy Charif, Majida Chevrollier, Arnaud Gueguen, Naïg Kane, Selma Bris, Céline Goudenège, David Desquiret-Dumas, Valerie Meunier, Isabelle Mochel, Fanny Jeanjean, Luc Varenne, Fanny Procaccio, Vincent Reynier, Pascal Bonneau, Dominique Amati-Bonneau, Patrizia Lenaers, Guy Genes (Basel) Article Dominant Optic Atrophy (DOA) is one of the most common inherited mitochondrial diseases, leading to blindness. It is caused by the chronic degeneration of the retinal ganglion cells (RGCs) and their axons forming the optic nerve. Until now, DOA has been mainly associated with genes encoding proteins involved in mitochondrial network dynamics. Using next-generation and exome sequencing, we identified for the first time heterozygous PMPCA variants having a causative role in the pathology of late-onset primary DOA in five patients. PMPCA encodes an α subunit of the mitochondrial peptidase (MPP), responsible for the cleavage and maturation of the mitochondrial precursor proteins imported from the cytoplasm into mitochondria. Recently, PMPCA has been identified as the gene responsible for Autosomal Recessive Cerebellar Ataxia type 2 (SCAR2) and another severe recessive mitochondrial disease. In this study, four PMPCA variants were identified, two are frameshifts (c.309delA and c.820delG) classified as pathogenic and two are missenses (c.1363G>A and c.1547G>A) classified with uncertain pathological significance. Functional assays on patients’ fibroblasts show a hyperconnection of the mitochondrial network and revealed that frameshift variants reduced α-MPP levels, while not significantly affecting the respiratory machinery. These results suggest that alterations in mitochondrial peptidase function can affect the fusion-fission balance, a key element in maintaining the physiology of retinal ganglion cells, and consequently lead to their progressive degeneration. MDPI 2022-07-05 /pmc/articles/PMC9320445/ /pubmed/35885985 http://dx.doi.org/10.3390/genes13071202 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Charif, Majida
Chevrollier, Arnaud
Gueguen, Naïg
Kane, Selma
Bris, Céline
Goudenège, David
Desquiret-Dumas, Valerie
Meunier, Isabelle
Mochel, Fanny
Jeanjean, Luc
Varenne, Fanny
Procaccio, Vincent
Reynier, Pascal
Bonneau, Dominique
Amati-Bonneau, Patrizia
Lenaers, Guy
Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy
title Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy
title_full Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy
title_fullStr Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy
title_full_unstemmed Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy
title_short Next-Generation Sequencing Identifies Novel PMPCA Variants in Patients with Late-Onset Dominant Optic Atrophy
title_sort next-generation sequencing identifies novel pmpca variants in patients with late-onset dominant optic atrophy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9320445/
https://www.ncbi.nlm.nih.gov/pubmed/35885985
http://dx.doi.org/10.3390/genes13071202
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