Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion. The DNM1L (dynamin-1 like) gene encodes for the DRP1 protein, an evolutionary conserved member of the dynamin family, responsible for fission of mitochondria, and having a role in the division of peroxisomes, as well. DRP1 impairment is implicated in several neurological disorders and associated with either de novo dominant or compound heterozygous mutations. In five patients presenting with severe epileptic encephalopathy, we identified five de novo dominant DNM1L variants, the pathogenicity of which was validated in a yeast model. Fluorescence microscopy revealed abnormally elongated mitochondria and aberrant peroxisomes in mutant fibroblasts, indicating...
Mitochondrial dynamics such as fission and fusion play a vital role in normal brain development and ...
ObjectiveTo evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the p...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion. The DNM1L (dyn...
Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion, and mitochondr...
DNM1L encodes dynamin-related protein 1 (DRP1/DLP1), a key component of the mitochondrial fission ma...
Imbalances in mitochondrial and peroxisomal dynamics are associated with a spectrum of human neurolo...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
International audienceImbalances in mitochondrial and peroxisomal dynamics are associated with a spe...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
Background: Mitochondrial dynamics, including mitochondrial fission and fusion, transport and distri...
Background: The dynamin 1-like gene (DNM1L) encodes a GTPase that mediates mitochondrial and peroxis...
DNM1L encodes dynamin-related protein 1 (DRP1), a multi-domain GTPase essential for mitochondrial an...
BACKGROUND: Mitochondria are dynamic organelles which undergo continuous fission and fusion to maint...
Motivation: DRP1 is an essential GTPase in mitochondrial cleavage, trafficking, and distribution, an...
Mitochondrial dynamics such as fission and fusion play a vital role in normal brain development and ...
ObjectiveTo evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the p...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion. The DNM1L (dyn...
Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion, and mitochondr...
DNM1L encodes dynamin-related protein 1 (DRP1/DLP1), a key component of the mitochondrial fission ma...
Imbalances in mitochondrial and peroxisomal dynamics are associated with a spectrum of human neurolo...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
International audienceImbalances in mitochondrial and peroxisomal dynamics are associated with a spe...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
Background: Mitochondrial dynamics, including mitochondrial fission and fusion, transport and distri...
Background: The dynamin 1-like gene (DNM1L) encodes a GTPase that mediates mitochondrial and peroxis...
DNM1L encodes dynamin-related protein 1 (DRP1), a multi-domain GTPase essential for mitochondrial an...
BACKGROUND: Mitochondria are dynamic organelles which undergo continuous fission and fusion to maint...
Motivation: DRP1 is an essential GTPase in mitochondrial cleavage, trafficking, and distribution, an...
Mitochondrial dynamics such as fission and fusion play a vital role in normal brain development and ...
ObjectiveTo evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the p...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...