DNM1L encodes dynamin-related protein 1 (DRP1), a multi-domain GTPase essential for mitochondrial and peroxisomal division. Autosomal dominant and recessive variants in DNM1L cause encephalopathy due to defective mitochondrial and peroxisomal fission 1 (EMPF1), which presents as a complex and clinically heterogeneous neurological disorder of variable severity, often accompanied by seizures. Clinical features are diverse, and no clear phenotype-genotype correlations were drawn to date. DNM1L-related sensory neuropathy has recently been reported as a predominant feature in one case with a de novo variant in the GTPase domain. Herein we present a second case with DNM1L-related sensory neuropathy as the predominant underlying feature without mo...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
OBJECTIVE: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
DNM1L encodes dynamin-related protein 1 (DRP1), a multi-domain GTPase essential for mitochondrial an...
Imbalances in mitochondrial and peroxisomal dynamics are associated with a spectrum of human neurolo...
International audienceImbalances in mitochondrial and peroxisomal dynamics are associated with a spe...
Background: The dynamin 1-like gene (DNM1L) encodes a GTPase that mediates mitochondrial and peroxis...
Background: Mitochondrial dynamics, including mitochondrial fission and fusion, transport and distri...
Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion. The DNM1L (dyn...
DNM1L encodes dynamin-related protein 1 (DRP1/DLP1), a key component of the mitochondrial fission ma...
ObjectiveTo evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the p...
Mitochondrial dynamics such as fission and fusion play a vital role in normal brain development and ...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
Mutations in DNM1L (DRP1), which encode a key player of mitochondrial and peroxisomal fission, have ...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
OBJECTIVE: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
DNM1L encodes dynamin-related protein 1 (DRP1), a multi-domain GTPase essential for mitochondrial an...
Imbalances in mitochondrial and peroxisomal dynamics are associated with a spectrum of human neurolo...
International audienceImbalances in mitochondrial and peroxisomal dynamics are associated with a spe...
Background: The dynamin 1-like gene (DNM1L) encodes a GTPase that mediates mitochondrial and peroxis...
Background: Mitochondrial dynamics, including mitochondrial fission and fusion, transport and distri...
Mitochondria are highly dynamic organelles, undergoing continuous fission and fusion. The DNM1L (dyn...
DNM1L encodes dynamin-related protein 1 (DRP1/DLP1), a key component of the mitochondrial fission ma...
ObjectiveTo evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the p...
Mitochondrial dynamics such as fission and fusion play a vital role in normal brain development and ...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
Mutations in DNM1L (DRP1), which encode a key player of mitochondrial and peroxisomal fission, have ...
Objective: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...
Mitochondria are dynamic organelles undergoing continuous fusion and fission with Drp1, encoded by t...
OBJECTIVE: To evaluate the phenotypic spectrum caused by mutations in dynamin 1 (DNM1), encoding the...