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Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells
Published on: August 21, 2013
An unusual DNA binding compound, S23906, induces mitotic catastrophe in cultured human cells
Nathalie Cahuzac1, Aurélie Studény, Kris Marshall
1Institut de Recherches Servier, Cancer Research Division, Croissy-sur Seine, France.
Abstract:
The biochemical pathways that lead cells to mitotic catastrophe are not well understood. To identify these pathways, we have taken an approach of treating cells with a novel genotoxic compound and characterizing whether cells enter mitotic catastrophe or not. S23906 is a novel acronycine derivative that forms adducts with the N2 residue of guanine in the minor groove of the DNA helix and destabilizes base pairing to cause helix opening. We observed, in HeLa and HT-29 cells, that S23906 induced gamma-H2AX and activated checkpoint kinase 1, as did bleomycin, camptothecin, and cisplatin, when tested under equi-toxic conditions. S23906 also induced cyclin E1 protein, although this activity was not required for cytotoxicity because knock down of cyclin E1 by RNA interference did not affect the number of dead cells after treatment. Cyclin B1 levels first decreased and then increased after treatment with S23906. Cyclin B1 was associated with Cdk1 kinase activity, which correlated with an increase in the number of mitotic cells. By 32 h after treatment, at least 20% of the cells entered mitotic catastrophe as determined by microscopy. Suppression of the DNA checkpoint response by co-treatment with caffeine increased the number of cells in mitosis. These results suggest that mitotic catastrophe is one of the cellular responses to S23906 and that mitotic catastrophe may be a common cellular response to many different types of DNA damage.
Insights
This study investigates cellular responses to the genotoxic compound S23906, revealing it induces mitotic catastrophe. Mitotic catastrophe appears to be a common cellular response to various DNA damages.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- The precise biochemical pathways leading to mitotic catastrophe remain unclear.
- Investigating cellular responses to novel genotoxic compounds can elucidate these pathways.
Purpose of the Study:
- To identify biochemical pathways involved in mitotic catastrophe.
- To characterize the cellular response of S23906, a novel genotoxic compound.
Main Methods:
- Treatment of HeLa and HT-29 cells with S23906 and other genotoxic agents (bleomycin, camptothecin, cisplatin).
- Analysis of DNA damage markers (gamma-H2AX), checkpoint kinase 1 activation, and cell cycle regulators (cyclin E1, cyclin B1).
- Microscopic evaluation of mitotic catastrophe and assessment of DNA checkpoint response suppression using caffeine.
Main Results:
- S23906 induced gamma-H2AX and activated checkpoint kinase 1, similar to known genotoxins.
- S23906 induced cyclin E1, but this was not essential for cytotoxicity.
- At 32 hours post-treatment, S23906 induced mitotic catastrophe in at least 20% of cells, with suppression of DNA checkpoints increasing mitotic entry.
Conclusions:
- Mitotic catastrophe is a cellular response to S23906-induced DNA damage.
- Mitotic catastrophe may be a generalized response to diverse forms of DNA damage.
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