Chromatid catenation is actively monitored in human cells, with progression from G2 to mitosis being inhibited when chromatids are insufficiently decatenated. Mitotic delay was quantified in normal and checkpoint-deficient human cells during treatment with ICRF-193, a topoisomerase II catalytic inhibitor that prevents chromatid decatenation without producing topoisomerase-associated DNA strand breaks. Ataxia telangiectasia (A-T) cells, defective in DNA damage checkpoints, showed normal mitotic delay when treated with ICRF-193. The mitotic delay in response to ICRF-193 was ablated in human fibroblasts expressing an ataxia telangiectasia mutated- and rad3-related (ATR) kinase-inactive ATR allele (ATRki). BRCA1-mutant HCC1937 cells also displa...
To prevent accumulation of mutations, cells respond to DNA lesions by blocking cell cycle progressio...
Defective DNA repair is being demonstrated to be a useful target in cancer treatment. Currently, def...
The genomes of eukaryotic cells are constantly under assault by exogenous and endogenous forms of DN...
Chromatid catenation is actively monitored in human cells, with progression from G2 to mitosis being...
The decatenation G2 checkpoint is proposed to delay cellular progression from G2 into mitosis when i...
Unperturbed mitotic cell division is essential for survival. For cells to complete mitosis, genetic ...
AbstractWe have shown previously that ICRF-193, a catalytic inhibitor of DNA topoisomerase II (topo ...
AbstractAfter chromosome replication, the intertwined sister chromatids are disentangled by topoisom...
Inhibition of replicon initiation is a stereotypic DNA damage response mediated through S checkpoint...
In order to divide, a cell has to successfully duplicate its DNA during S-phase, followed by the div...
SummaryThe decatenation checkpoint normally delays entry into mitosis until chromosomes have been di...
SummaryCells must accurately replicate and segregate their DNA once per cell cycle in order to succe...
Topoisomerase IIα (topoIIα) is an essential mammalian enzyme that topologically modifies DNA and is ...
DNA damage response (DDR) pathways are triggered to ensure proper repair of DNA lesions and preserve...
Genotoxic stress such as ionizing radiation halts entry into mitosis by activation of the G2 DNA dam...
To prevent accumulation of mutations, cells respond to DNA lesions by blocking cell cycle progressio...
Defective DNA repair is being demonstrated to be a useful target in cancer treatment. Currently, def...
The genomes of eukaryotic cells are constantly under assault by exogenous and endogenous forms of DN...
Chromatid catenation is actively monitored in human cells, with progression from G2 to mitosis being...
The decatenation G2 checkpoint is proposed to delay cellular progression from G2 into mitosis when i...
Unperturbed mitotic cell division is essential for survival. For cells to complete mitosis, genetic ...
AbstractWe have shown previously that ICRF-193, a catalytic inhibitor of DNA topoisomerase II (topo ...
AbstractAfter chromosome replication, the intertwined sister chromatids are disentangled by topoisom...
Inhibition of replicon initiation is a stereotypic DNA damage response mediated through S checkpoint...
In order to divide, a cell has to successfully duplicate its DNA during S-phase, followed by the div...
SummaryThe decatenation checkpoint normally delays entry into mitosis until chromosomes have been di...
SummaryCells must accurately replicate and segregate their DNA once per cell cycle in order to succe...
Topoisomerase IIα (topoIIα) is an essential mammalian enzyme that topologically modifies DNA and is ...
DNA damage response (DDR) pathways are triggered to ensure proper repair of DNA lesions and preserve...
Genotoxic stress such as ionizing radiation halts entry into mitosis by activation of the G2 DNA dam...
To prevent accumulation of mutations, cells respond to DNA lesions by blocking cell cycle progressio...
Defective DNA repair is being demonstrated to be a useful target in cancer treatment. Currently, def...
The genomes of eukaryotic cells are constantly under assault by exogenous and endogenous forms of DN...