Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by introducing transient DNA double-strand breaks (DSBs). Such DSBs are normally rejoined by TOP2 but on occasion can become abortive and remain unsealed. Here we identify homozygous mutations in the TDP2 gene encoding tyrosyl DNA phosphodiesterase-2, an enzyme that repairs 'abortive' TOP2-induced DSBs, in individuals with intellectual disability, seizures and ataxia. We show that cells from affected individuals are hypersensitive to TOP2-induced DSBs and that loss of TDP2 inhibits TOP2-dependent gene transcription in cultured human cells and in mouse post-mitotic neurons following abortive TOP2 activity. Notably, TDP2 is also required for normal le...
<div><p>Anticancer topoisomerase “poisons” exploit the break-and-rejoining mechanism of topoisomeras...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Item does not contain fulltextTopoisomerase II (TOP2) removes torsional stress from DNA and facilita...
DNA double-strand breaks (DSBs) induced by abortive topoisomerase II (TOP2) activity are a potential...
DNA double-strand breaks (DSBs) induced by abortive topoisomerase II (TOP2) activity are a potential...
The abortive activity of topoisomerases can result in clastogenic and/or lethal DNA damage in which ...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
Defective Tyrosyl-DNA phosphodiesterase 1 (TDP1) can cause spinocerebellar ataxia with axonal neurop...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
DNA topoisomerase II (TOP2) is a major DNA metabolic enzyme, with important roles in replication, tr...
Although accumulation of DNA damage and genomic instability in resting cells can cause neurodegenera...
Although accumulation of DNA damage and genomic instability in resting cells can cause neurodegenera...
Although defective repair of DNA double-strand breaks (DSBs) leads to neurodegenerative diseases, th...
<div><p>Anticancer topoisomerase “poisons” exploit the break-and-rejoining mechanism of topoisomeras...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...
Topoisomerase II (TOP2) removes torsional stress from DNA and facilitates gene transcription by intr...
Item does not contain fulltextTopoisomerase II (TOP2) removes torsional stress from DNA and facilita...
DNA double-strand breaks (DSBs) induced by abortive topoisomerase II (TOP2) activity are a potential...
DNA double-strand breaks (DSBs) induced by abortive topoisomerase II (TOP2) activity are a potential...
The abortive activity of topoisomerases can result in clastogenic and/or lethal DNA damage in which ...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
Defective Tyrosyl-DNA phosphodiesterase 1 (TDP1) can cause spinocerebellar ataxia with axonal neurop...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
DNA topoisomerase II (TOP2) is a major DNA metabolic enzyme, with important roles in replication, tr...
Although accumulation of DNA damage and genomic instability in resting cells can cause neurodegenera...
Although accumulation of DNA damage and genomic instability in resting cells can cause neurodegenera...
Although defective repair of DNA double-strand breaks (DSBs) leads to neurodegenerative diseases, th...
<div><p>Anticancer topoisomerase “poisons” exploit the break-and-rejoining mechanism of topoisomeras...
Accumulation of peptide-linked DNA breaks contributes to neurodegeration in humans. This is typified...
Topoisomerases are essential for DNA replication in dividing cells, but their genomic targets and fu...