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Updated: Apr 26, 2026

Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage
Published on: August 21, 2021
DNA-damage response during mitosis induces whole-chromosome missegregation
Samuel F Bakhoum1, Lilian Kabeche2, John P Murnane3
1Department of Biochemistry, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire. Norris Cotton Cancer Center, Geisel School of Medicine at Dartmouth, Lebanon, New Hampshire. Department of Radiation Oncology, Memorial Sloan Kettering Cancer Center, New York, New York. samuel.bakhoum@gmail.com duane.a.compton@dartmouth.edu.
Unlabelled:
Many cancers display both structural (s-CIN) and numerical (w-CIN) chromosomal instabilities. Defective chromosome segregation during mitosis has been shown to cause DNA damage that induces structural rearrangements of chromosomes (s-CIN). In contrast, whether DNA damage can disrupt mitotic processes to generate whole chromosomal instability (w-CIN) is unknown. Here, we show that activation of the DNA-damage response (DDR) during mitosis selectively stabilizes kinetochore-microtubule (k-MT) attachments to chromosomes through Aurora-A and PLK1 kinases, thereby increasing the frequency of lagging chromosomes during anaphase. Inhibition of DDR proteins, ATM or CHK2, abolishes the effect of DNA damage on k-MTs and chromosome segregation, whereas activation of the DDR in the absence of DNA damage is sufficient to induce chromosome segregation errors. Finally, inhibiting the DDR during mitosis in cancer cells with persistent DNA damage suppresses inherent chromosome segregation defects. Thus, the DDR during mitosis inappropriately stabilizes k-MTs, creating a link between s-CIN and w-CIN.
Significance:
The genome-protective role of the DDR depends on its ability to delay cell division until damaged DNA can be fully repaired. Here, we show that when DNA damage is induced during mitosis, the DDR unexpectedly induces errors in the segregation of entire chromosomes, thus linking structural and numerical chromosomal instabilities.
Insights
The DNA-damage response (DDR) activated during mitosis stabilizes attachments, causing chromosome segregation errors and linking structural and numerical chromosomal instability (CIN). Inhibiting the DDR suppresses these defects in cancer cells.
Area of Science:
- Cell Biology
- Genetics
- Cancer Research
Background:
- Cancers exhibit both structural (s-CIN) and numerical (w-CIN) chromosomal instabilities.
- DNA damage from defective mitosis causes s-CIN, but its role in generating w-CIN is unclear.
Purpose of the Study:
- To investigate if DNA damage can disrupt mitosis and cause whole chromosomal instability (w-CIN).
- To explore the link between the DNA-damage response (DDR) and chromosome segregation errors during mitosis.
Main Methods:
- Studied the effect of DNA damage on kinetochore-microtubule (k-MT) attachments during mitosis.
- Utilized inhibitors of DDR proteins (ATM, CHK2) and kinases (Aurora-A, PLK1).
- Assessed chromosome segregation accuracy in cancer cells with persistent DNA damage.
Main Results:
- Activation of the DDR during mitosis stabilizes k-MT attachments via Aurora-A and PLK1.
- This stabilization increases lagging chromosomes and chromosome segregation errors.
- Inhibition of DDR proteins (ATM, CHK2) prevents these errors, while DDR activation alone causes them.
Conclusions:
- The DDR, when activated during mitosis, inappropriately stabilizes k-MT attachments.
- This mechanism links structural chromosomal instability (s-CIN) to numerical chromosomal instability (w-CIN).
- Targeting the DDR during mitosis may suppress chromosome segregation defects in cancer.
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