Insertional mutations in exon 4 of the ferritin light chain (FTL) gene are associated with hereditary ferritinopathy (HF) or neuroferritinopathy, an autosomal dominant neurodegenerative disease characterized by progressive impairment of motor and cognitive functions. To determine the pathogenic mechanisms by which mutations in FTL lead to neurodegeneration, we investigated iron metabolism and markers of oxidative stress in the brain of transgenic (Tg) mice that express the mutant human FTL498-499InsTC cDNA. Compared with wild-type mice, brain extracts from Tg (FTL-Tg) mice showed an increase in the cytoplasmic levels of both FTL and ferritin heavy chain polypeptides, a decrease in the protein and mRNA levels of transferrin receptor-1, and a...
Abstract Background Nucleotide duplications in exon 4 of the ferritin light polypeptide (FTL) gene c...
Ferritin, the iron storage protein, is composed of light and heavy chain subunits, encoded by FTL an...
Abstract Background Iron accumulation in basal ganglia accompanies neuronal loss in Huntington’s dis...
AbstractNeuroferritinopathy is a rare genetic disease with a dominant autosomal transmission caused ...
Neuroferritinopathies are rare genetic diseases caused by mutations in the C−terminal domain of ferr...
none14noNeuroferritinopathy is a rare genetic disease with a dominant autosomal transmission caused ...
Iron homeostasis is tightly regulated by iron-binding proteins, as iron excess exhibits toxicity in ...
Aberrant expression of ferritin, a major iron-binding protein, has shown to be involved in neurodege...
Ferritin is the main intracellular protein of iron storage with a central role in the regulation of ...
Mutations in the ferritin light chain (FTL) gene cause the neurodegenerative disease neuroferritinop...
Ferritin is the main intracellular protein of iron storage with a central role in the regulation of ...
Ferritin, a 24-mer heteropolymer of heavy (H) and light (L) subunits, is the main cellular iron stor...
AbstractBecause of the increasing evidence that H63D HFE polymorphism appears in higher frequency in...
The 'neurodegeneration with brain iron accumulation' (NBIA) disease family entails movement or cogni...
<div><p>Ferritin, a 24-mer heteropolymer of heavy (H) and light (L) subunits, is the main cellular i...
Abstract Background Nucleotide duplications in exon 4 of the ferritin light polypeptide (FTL) gene c...
Ferritin, the iron storage protein, is composed of light and heavy chain subunits, encoded by FTL an...
Abstract Background Iron accumulation in basal ganglia accompanies neuronal loss in Huntington’s dis...
AbstractNeuroferritinopathy is a rare genetic disease with a dominant autosomal transmission caused ...
Neuroferritinopathies are rare genetic diseases caused by mutations in the C−terminal domain of ferr...
none14noNeuroferritinopathy is a rare genetic disease with a dominant autosomal transmission caused ...
Iron homeostasis is tightly regulated by iron-binding proteins, as iron excess exhibits toxicity in ...
Aberrant expression of ferritin, a major iron-binding protein, has shown to be involved in neurodege...
Ferritin is the main intracellular protein of iron storage with a central role in the regulation of ...
Mutations in the ferritin light chain (FTL) gene cause the neurodegenerative disease neuroferritinop...
Ferritin is the main intracellular protein of iron storage with a central role in the regulation of ...
Ferritin, a 24-mer heteropolymer of heavy (H) and light (L) subunits, is the main cellular iron stor...
AbstractBecause of the increasing evidence that H63D HFE polymorphism appears in higher frequency in...
The 'neurodegeneration with brain iron accumulation' (NBIA) disease family entails movement or cogni...
<div><p>Ferritin, a 24-mer heteropolymer of heavy (H) and light (L) subunits, is the main cellular i...
Abstract Background Nucleotide duplications in exon 4 of the ferritin light polypeptide (FTL) gene c...
Ferritin, the iron storage protein, is composed of light and heavy chain subunits, encoded by FTL an...
Abstract Background Iron accumulation in basal ganglia accompanies neuronal loss in Huntington’s dis...