Deregulation of mitochondrial network in terminally differentiated cells contributes to a broad spectrum of disorders. Methylmalonic acidemia (MMA) is one of the most common inherited metabolic disorders, due to deficiency of the mitochondrial methylmalonyl-coenzyme A mutase (MMUT). How MMUT deficiency triggers cell damage remains unknown, preventing the development of disease-modifying therapies. Here we combine genetic and pharmacological approaches to demonstrate that MMUT deficiency induces metabolic and mitochondrial alterations that are exacerbated by anomalies in PINK1/Parkin-mediated mitophagy, causing the accumulation of dysfunctional mitochondria that trigger epithelial stress and ultimately cell damage. Using drug-disease network...
The present PhD thesis project concerned the development of novel cellular models to be used for the...
The mitochondria are essential for cellular energy production and are involved in many processes in ...
Mitochondria—the intracellular powerhouse in which nutrients are converted into energy in the form o...
Deregulation of mitochondrial network in terminally differentiated cells contributes to a broad spec...
Dysregulation of the mitochondrial network in terminally differentiated cells contributes to a broad...
Methylmalonic acidemia (MMA) is an autosomal recessive inborn error of metabolism due to the deficie...
Methylmalonic acidemia (MMA) is a rare inborn error of metabolism caused by deficiency of the methyl...
Mitochondrial fusion is essential to mitochondrial fitness and cellular health. Neurons of patients ...
Methylmalonic acidurias represent a group of rare inborn errors of metabolism caused by deficient ac...
Mitochondrial bioenergetics require the coordination of two different and independent genomes. Mutat...
Mitochondria are highly dynamic, double-membrane-enclosed organelles that sustain cellular metabolis...
Isolated methylmalonic aciduria (MMAuria) is primarily caused by deficiency of methylmalonyl-CoA mut...
Mitochondria are the powerhouses of the cell and their function is often disturbed in disease, espec...
Methylmalonic acidemia (MMA), caused by mutations in MUT, and propionic acidemia (PA), caused by mut...
Methylmalonic acidurias (MMAurias) are a group of inherited disorders in the catabolism of branched-...
The present PhD thesis project concerned the development of novel cellular models to be used for the...
The mitochondria are essential for cellular energy production and are involved in many processes in ...
Mitochondria—the intracellular powerhouse in which nutrients are converted into energy in the form o...
Deregulation of mitochondrial network in terminally differentiated cells contributes to a broad spec...
Dysregulation of the mitochondrial network in terminally differentiated cells contributes to a broad...
Methylmalonic acidemia (MMA) is an autosomal recessive inborn error of metabolism due to the deficie...
Methylmalonic acidemia (MMA) is a rare inborn error of metabolism caused by deficiency of the methyl...
Mitochondrial fusion is essential to mitochondrial fitness and cellular health. Neurons of patients ...
Methylmalonic acidurias represent a group of rare inborn errors of metabolism caused by deficient ac...
Mitochondrial bioenergetics require the coordination of two different and independent genomes. Mutat...
Mitochondria are highly dynamic, double-membrane-enclosed organelles that sustain cellular metabolis...
Isolated methylmalonic aciduria (MMAuria) is primarily caused by deficiency of methylmalonyl-CoA mut...
Mitochondria are the powerhouses of the cell and their function is often disturbed in disease, espec...
Methylmalonic acidemia (MMA), caused by mutations in MUT, and propionic acidemia (PA), caused by mut...
Methylmalonic acidurias (MMAurias) are a group of inherited disorders in the catabolism of branched-...
The present PhD thesis project concerned the development of novel cellular models to be used for the...
The mitochondria are essential for cellular energy production and are involved in many processes in ...
Mitochondria—the intracellular powerhouse in which nutrients are converted into energy in the form o...