AbstractMutations in the OPA1 gene are associated with autosomal dominant optic atrophy. OPA1 encodes a dynamin-related protein orthologous to Msp1 of Schizosaccharomyces pombe and Mgm1p of Saccharomyces cerevisiae, both involved in mitochondrial morphology and genome maintenance. We present immuno-fluorescence and biochemical evidences showing that OPA1 resides in the mitochondria where it is imported through its highly basic amino-terminal extension. Proteolysis experiments indicate that OPA1 is present in the inter-membrane space and electron microscopy further localizes it close to the cristae. The strong association of OPA1 with membranes suggests its anchoring to the inner membrane
Balanced fusion and fission are key for the proper function and physiology of mitochondria. Remodell...
Many muscular and neurological disorders are associated with mitochondrial dysfunction and are often...
Dominant optic atrophy (DOA) is an inherited mitochondrial disease leading to specific degeneration ...
AbstractMutations in the OPA1 gene are associated with autosomal dominant optic atrophy. OPA1 encode...
AbstractThe studies addressing the molecular mechanisms governing mitochondrial fusion and fission h...
OPA1 is the major gene responsible for Dominant Optic Atrophy (DOA), a blinding disease that affects...
The dynamin-related GTPase OPA1 is mutated in autosomal dominant optic atrophy (DOA) (Kjer type), an...
The maintenance of mitochondrial energetics requires the proper regulation of mitochondrial morpholo...
AbstractMitochondrial fusion depends on the evolutionary conserved dynamin, OPA1/Mgm1p/Msp1p, whose ...
AbstractMitochondrial morphology is controlled by large GTPases, such as Msp1p, whose action on mito...
Inner mitochondrial membrane fusion and cristae shape depend on optic atrophy protein 1, OPA1. Mutat...
SummaryMitochondria amplify activation of caspases during apoptosis by releasing cytochrome c and ot...
OPA1 is a dynamin-related GTPase that controls mitochondrial dynamics, cristae integrity, energetics...
OPA1 is a 120kDa large GTPase belonging to the dynamin superfamily. It is the only known mitochondri...
Mutations in the OPA1 gene product result in the most common form of autosomal dominant optic atroph...
Balanced fusion and fission are key for the proper function and physiology of mitochondria. Remodell...
Many muscular and neurological disorders are associated with mitochondrial dysfunction and are often...
Dominant optic atrophy (DOA) is an inherited mitochondrial disease leading to specific degeneration ...
AbstractMutations in the OPA1 gene are associated with autosomal dominant optic atrophy. OPA1 encode...
AbstractThe studies addressing the molecular mechanisms governing mitochondrial fusion and fission h...
OPA1 is the major gene responsible for Dominant Optic Atrophy (DOA), a blinding disease that affects...
The dynamin-related GTPase OPA1 is mutated in autosomal dominant optic atrophy (DOA) (Kjer type), an...
The maintenance of mitochondrial energetics requires the proper regulation of mitochondrial morpholo...
AbstractMitochondrial fusion depends on the evolutionary conserved dynamin, OPA1/Mgm1p/Msp1p, whose ...
AbstractMitochondrial morphology is controlled by large GTPases, such as Msp1p, whose action on mito...
Inner mitochondrial membrane fusion and cristae shape depend on optic atrophy protein 1, OPA1. Mutat...
SummaryMitochondria amplify activation of caspases during apoptosis by releasing cytochrome c and ot...
OPA1 is a dynamin-related GTPase that controls mitochondrial dynamics, cristae integrity, energetics...
OPA1 is a 120kDa large GTPase belonging to the dynamin superfamily. It is the only known mitochondri...
Mutations in the OPA1 gene product result in the most common form of autosomal dominant optic atroph...
Balanced fusion and fission are key for the proper function and physiology of mitochondria. Remodell...
Many muscular and neurological disorders are associated with mitochondrial dysfunction and are often...
Dominant optic atrophy (DOA) is an inherited mitochondrial disease leading to specific degeneration ...