International audienceMitochondria form dynamic tubular networks through processes of fission and fusion. Defect in mitochondrial dynamics lead to various pathologies, including several common and some rare neurodegenerative disorders. OPA1 and MFN2 are two key players in mitochondrial fusion associated with Autosomal Dominant Optic Atrophy and Charcot Marie Tooth neuropathy type 2A respectively. We used micropatterned coverslips to standardize the visualization of mitochondrial distribution in skin fibroblasts. In fibroblasts from affected patients, mutations in the OPA1 and MFN2 genes were found to affect the volume and cellular distribution of mitochondria. In G1/S cell cycle phase, mitochondria emerging from the microtubule organizing c...
AbstractDeleterious consequences of heterozygous OPA1 mutations responsible for autosomal dominant o...
Objective Defective mitochondrial function due to OPA1 mutations causes primarily optic atrophy and ...
Mitochondria form a highly dynamic filamen-tous network. The elongated shape of theindividual mitoch...
Mitochondria form dynamic tubular networks through processes of fission and fusion. Defect in mitoch...
AbstractThe mitochondria are dynamic organelles that constantly fuse and divide. An equilibrium betw...
Abstract Mitochondrial quality control is fundamental to all neurodegenerative diseases, including t...
Mitochondria are highly specialized in function, but mitochondrial and, therefore, cellular integrit...
Mitochondria exist as dynamic networks whose morphology is driven by the complex interplay between f...
Mitochondria form a highly interconnected tubular network throughout the cell via a dynamic process,...
Abstract: Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotyp...
Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotype characte...
Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotype characte...
In addition to ATP generation, mitochondria are essential in various cellular processes ranging from...
Autosomal dominant optic atrophy (ADOA) and Charcot-Marie-Tooth type 2A disease are two hereditary n...
Many muscular and neurological disorders are associated with mitochondrial dysfunction and are often...
AbstractDeleterious consequences of heterozygous OPA1 mutations responsible for autosomal dominant o...
Objective Defective mitochondrial function due to OPA1 mutations causes primarily optic atrophy and ...
Mitochondria form a highly dynamic filamen-tous network. The elongated shape of theindividual mitoch...
Mitochondria form dynamic tubular networks through processes of fission and fusion. Defect in mitoch...
AbstractThe mitochondria are dynamic organelles that constantly fuse and divide. An equilibrium betw...
Abstract Mitochondrial quality control is fundamental to all neurodegenerative diseases, including t...
Mitochondria are highly specialized in function, but mitochondrial and, therefore, cellular integrit...
Mitochondria exist as dynamic networks whose morphology is driven by the complex interplay between f...
Mitochondria form a highly interconnected tubular network throughout the cell via a dynamic process,...
Abstract: Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotyp...
Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotype characte...
Mutations in OPA1 cause autosomal dominant optic atrophy (DOA) as well as DOA+, a phenotype characte...
In addition to ATP generation, mitochondria are essential in various cellular processes ranging from...
Autosomal dominant optic atrophy (ADOA) and Charcot-Marie-Tooth type 2A disease are two hereditary n...
Many muscular and neurological disorders are associated with mitochondrial dysfunction and are often...
AbstractDeleterious consequences of heterozygous OPA1 mutations responsible for autosomal dominant o...
Objective Defective mitochondrial function due to OPA1 mutations causes primarily optic atrophy and ...
Mitochondria form a highly dynamic filamen-tous network. The elongated shape of theindividual mitoch...