Defective responses to DNA single strand breaks underlie various neurodegenerative diseases. However, the exact role of this repair pathway during the development and maintenance of the nervous system is unclear. Using murine neural-specific inactivation of Xrcc1, a factor that is critical for the repair of DNA single strand breaks, we found a profound neuropathology that is characterized by the loss of cerebellar interneurons. This cell loss was linked to p53-dependent cell cycle arrest and occurred as interneuron progenitors commenced differentiation. Loss of Xrcc1 also led to the persistence of DNA strand breaks throughout the nervous system and abnormal hippocampal function. Collectively, these data detail the in vivo link between DNA s...
Defects in DNA repair frequently lead to neurodevelopmental and neurodegenerative diseases, undersco...
DNA double-strand breaks are a feature of many acute and long-term neurological disorders, including...
Oxidative DNA damage induces changes in the neuronal cell cycle and activates a DNA damage response ...
Defective responses to DNA single strand breaks underpin various neurodegenerative diseases. However...
Defective responses to DNA single strand breaks underlie various neurodegenerative diseases. However...
DNA single-strand breaks (SSBs) are amongst the most frequent DNA lesions arising in cells and can t...
A number of DNA repair disorders are known to cause neurological problems. These disorders can be br...
Neuronal degeneration is a hallmark of many DNA repair syndromes. Yet, how DNA damage causes neurona...
AbstractDNA single-strand break repair (SSBR) is critical for the survival and genetic stability of ...
Neuronal degeneration is a hallmark of many DNA repair syndromes. Yet, how DNA damage causes neurona...
Maintaining genomic stability constitutes a major challenge facing cells. DNA breaks can arise from ...
The integrity of our genetic material is under constant attack from numerous endogenous and exogenou...
Human genetic syndromes deficient in nucleotide excision repair (NER), such as xeroderma pigmentosum...
Thesis (M.A.)--Boston UniversityERCC1 is a DNA repair protein that forms a heterodimer with XPF. The...
The integrity of our genetic material is under constant attack from numerous endogenous and exogenou...
Defects in DNA repair frequently lead to neurodevelopmental and neurodegenerative diseases, undersco...
DNA double-strand breaks are a feature of many acute and long-term neurological disorders, including...
Oxidative DNA damage induces changes in the neuronal cell cycle and activates a DNA damage response ...
Defective responses to DNA single strand breaks underpin various neurodegenerative diseases. However...
Defective responses to DNA single strand breaks underlie various neurodegenerative diseases. However...
DNA single-strand breaks (SSBs) are amongst the most frequent DNA lesions arising in cells and can t...
A number of DNA repair disorders are known to cause neurological problems. These disorders can be br...
Neuronal degeneration is a hallmark of many DNA repair syndromes. Yet, how DNA damage causes neurona...
AbstractDNA single-strand break repair (SSBR) is critical for the survival and genetic stability of ...
Neuronal degeneration is a hallmark of many DNA repair syndromes. Yet, how DNA damage causes neurona...
Maintaining genomic stability constitutes a major challenge facing cells. DNA breaks can arise from ...
The integrity of our genetic material is under constant attack from numerous endogenous and exogenou...
Human genetic syndromes deficient in nucleotide excision repair (NER), such as xeroderma pigmentosum...
Thesis (M.A.)--Boston UniversityERCC1 is a DNA repair protein that forms a heterodimer with XPF. The...
The integrity of our genetic material is under constant attack from numerous endogenous and exogenou...
Defects in DNA repair frequently lead to neurodevelopmental and neurodegenerative diseases, undersco...
DNA double-strand breaks are a feature of many acute and long-term neurological disorders, including...
Oxidative DNA damage induces changes in the neuronal cell cycle and activates a DNA damage response ...