Activating the abscission checkpoint: Top2α senses chromatin bridges in cytokinesis: Top2α binds to DNA knots on chromatin bridges to activate the abscission checkpoint in human cells
- PMID: 38403725
- DOI: 10.1002/bies.202400011
Activating the abscission checkpoint: Top2α senses chromatin bridges in cytokinesis: Top2α binds to DNA knots on chromatin bridges to activate the abscission checkpoint in human cells
Abstract
How chromatin bridges are detected by the abscission checkpoint during mammalian cell division is unknown. Here, we discuss recent findings from our lab showing that the DNA topoisomerase IIα (Top2α) enzyme binds to catenated ("knotted") DNA next to the midbody and forms abortive Top2-DNA cleavage complexes (Top2ccs) on chromatin bridges. Top2ccs are then processed by the proteasome to promote localization of the DNA damage sensor protein Rad17 to Top2-generated double-strand DNA ends on DNA knots. In turn, Rad17 promotes local recruitment of the MRN protein complex and downstream ATM-Chk2-INCENP signaling to delay abscission and prevent chromatin bridge breakage in cytokinesis.
Keywords: Rad17; Topoisomerase II; abscission checkpoint; cell division; chromatin breakage; chromatin bridges; cytokinesis.
© 2024 The Authors. BioEssays published by Wiley Periodicals LLC.
Conflict of interest statement
The authors declare no conflict of interest.
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References
REFERENCES
-
- Kodba, S., & Chaigne, A. (2023). Delayed abscission in animal cells—From development to defects. Journal of Cell Science, 136, 260520.
-
- Petsalaki, E., & Zachos, G. (2021). The abscission checkpoint: A guardian of chromosomal stability. Cells‐Basel, 10, 10123350.
-
- Jiang, H., & Chan, Y. W. (2023). Chromatin bridges: stochastic breakage or regulated resolution? Trends in Genetics, 40, 69–82.
-
- Mendoza, M., Norden, C., Durrer, K., Rauter, H., Uhlmann, F., & Barral, Y. (2009). A mechanism for chromosome segregation sensing by the NoCut checkpoint. Nature Cell Biology, 11, 477–483.
-
- Petsalaki, E., & Zachos, G. (2021). An ATM‐Chk2‐INCENP pathway activates the abscission checkpoint. Journal of Cell Biology, 220, 202008029.
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