A novel ATM-dependent checkpoint defect distinct from loss of function mutation promotes genomic instability in

Loredana Spoerri1, Kelly Brooks1, KeeMing Chia1,2

  • 1The University of Queensland Diamantina Institute, The University of Queensland, Brisbane, Qld, Australia.

Insights

Melanoma cells with genomic instability show a defect in the ATM-dependent cell cycle checkpoint. Elevated PLK1 activity overcomes this arrest, increasing instability and suggesting a common melanoma defect.

Area of Science:

  • Oncology
  • Genetics
  • Cell Biology

Background:

  • Melanomas exhibit significant genomic instability, correlating with poor prognosis.
  • The ATM-dependent cell cycle checkpoint is crucial for maintaining genomic integrity following DNA damage.

Purpose of the Study:

  • To identify novel defects in the ATM-dependent cell cycle checkpoint in melanoma.
  • To investigate the role of Polo-like kinase 1 (PLK1) in this checkpoint defect and its contribution to genomic instability.

Main Methods:

  • Analysis of ATM signaling, CHK2 activation, and cell cycle arrest in melanoma cell lines.
  • Manipulation of PLK1 activity (reduction and overexpression) to assess its impact on checkpoint function.
  • Assessment of genomic instability and sensitivity to ionizing radiation.

Main Results:

  • Melanoma cell lines with defects in the ATM-dependent checkpoint show intact ATM-CHK2 signaling but fail to maintain cell cycle arrest.
  • Elevated PLK1 activity drives premature recovery from the ATM-dependent arrest, leading to increased genomic instability.
  • Reducing PLK1 restored checkpoint arrest, while PLK1 overexpression bypassed the arrest and heightened instability.
  • This checkpoint defect is distinct from ATM loss-of-function mutations and is associated with high PLK1 levels in a subset of melanomas.

Conclusions:

  • A novel ATM-dependent cell cycle checkpoint defect, driven by elevated PLK1, promotes genomic instability in melanoma.
  • This defect appears to be a common feature in melanomas and may be present in other cancers.
  • Targeting PLK1 could be a therapeutic strategy for melanomas with this specific checkpoint deficiency.

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