Histone H2AX phosphorylation as a molecular pharmacological marker for DNA interstrand crosslink cancer chemotherapy

P H Clingen1, J Y-H Wu, J Miller

  • 1Cancer Research UK Drug-DNA Interactions Research Group, UCL Cancer Institute, University College London, 72 Huntley Street, London, WC1E 6DD, UK. p.clingen@ucl.ac.uk

Insights

GammaH2AX is a sensitive marker for DNA damage from nitrogen mustard and cisplatin, showing promise in predicting cellular sensitivity to interstrand crosslinking agents.

Area of Science:

  • Molecular Biology
  • Genetics
  • Pharmacology

Background:

  • DNA interstrand crosslinking (ICL) agents are crucial in cancer therapy.
  • Understanding their mechanisms and identifying sensitivity markers is vital.

Purpose of the Study:

  • Investigate H2AX phosphorylation mechanisms by ICL agents.
  • Determine if gammaH2AX can predict ICL cellular chemosensitivity.

Main Methods:

  • Treated human fibroblasts and Chinese hamster cells with nitrogen mustard (HN2) or cisplatin.
  • Measured DNA ICLs using the comet assay.
  • Detected gammaH2AX foci via immunofluorescence microscopy.

Main Results:

  • GammaH2AX response peaked 2-3 hours after DNA ICLs.
  • GammaH2AX detection required 6-10 times lower drug concentrations than the comet assay.
  • Persistent gammaH2AX foci were observed in defective DNA repair (ERCC1, XRCC3) and chemoresistant (A2780cisR) cells.

Conclusions:

  • GammaH2AX is a sensitive marker for HN2/cisplatin-induced DNA damage.
  • GammaH2AX shows potential for predicting cellular chemosensitivity to ICL agents.