As mitochondria are vulnerable to oxidative damage and represent the main source of reactive oxygen species (ROS), they are considered key tuners of ROS metabolism and buffering, whose dysfunction can progressively impact neuronal networks and disease. Defects in DNA repair and DNA damage response (DDR) may also affect neuronal health and lead to neuropathology. A number of congenital DNA repair and DDR defective syndromes, indeed, show neurological phenotypes, and a growing body of evidence indicate that defects in the mechanisms that control genome stability in neurons acts as aging-related modifiers of common neurodegenerative diseases such as Alzheimer, Parkinson's, Huntington diseases and Amyotrophic Lateral Sclerosis. In this review we elaborate on the established principles and recent concepts supporting the hypothesis that deficiencies in either DNA repair or DDR might contribute to neurodegeneration via mechanisms involving mitochondrial dysfunction/deranged metabolism.

D'Errico, M., Parlanti, E., Pascucci, B., Filomeni, G., Mastroberardino, P.g., Dogliotti, E. (2021). The interplay between mitochondrial functionality and genome integrity in the prevention of human neurologic diseases. ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 710, 108977 [10.1016/j.abb.2021.108977].

The interplay between mitochondrial functionality and genome integrity in the prevention of human neurologic diseases

Filomeni, Giuseppe
Membro del Collaboration Group
;
2021-01-01

Abstract

As mitochondria are vulnerable to oxidative damage and represent the main source of reactive oxygen species (ROS), they are considered key tuners of ROS metabolism and buffering, whose dysfunction can progressively impact neuronal networks and disease. Defects in DNA repair and DNA damage response (DDR) may also affect neuronal health and lead to neuropathology. A number of congenital DNA repair and DDR defective syndromes, indeed, show neurological phenotypes, and a growing body of evidence indicate that defects in the mechanisms that control genome stability in neurons acts as aging-related modifiers of common neurodegenerative diseases such as Alzheimer, Parkinson's, Huntington diseases and Amyotrophic Lateral Sclerosis. In this review we elaborate on the established principles and recent concepts supporting the hypothesis that deficiencies in either DNA repair or DDR might contribute to neurodegeneration via mechanisms involving mitochondrial dysfunction/deranged metabolism.
2021
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/10 - BIOCHIMICA
English
DNA damage Response
DNA repair
DNA repair Defective syndromes
Mitochondrial dysfunction
Neurodegenerative diseases
Oxidatively induced DNA damage
DNA Damage
DNA Repair
DNA, Mitochondrial
Genome, Human
Genome, Mitochondrial
Genomic Instability
Humans
Metabolic Networks and Pathways
Mitochondria
Mitochondrial Dynamics
Mitophagy
Models, Neurological
Mutation
Neurodegenerative Diseases
Reactive Oxygen Species
https://www.sciencedirect.com/science/article/abs/pii/S0003986121002265?via=ihub
D'Errico, M., Parlanti, E., Pascucci, B., Filomeni, G., Mastroberardino, P.g., Dogliotti, E. (2021). The interplay between mitochondrial functionality and genome integrity in the prevention of human neurologic diseases. ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 710, 108977 [10.1016/j.abb.2021.108977].
D'Errico, M; Parlanti, E; Pascucci, B; Filomeni, G; Mastroberardino, Pg; Dogliotti, E
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/292061
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