Serine phosphorylation-dependent coregulation of topoisomerase I by the p14ARF tumor suppressor

Keya Bandyopadhyay1, Casey Lee, Ali Haghighi

  • 1Department of Cancer Cell Biology, Sidney Kimmel Cancer Center, San Diego, California, USA.

Biochemistry
|November 17, 2007
PubMed

Insights

p14ARF (ARF) protein regulates topoisomerase I activity and cancer drug sensitivity through serine phosphorylation. This interaction is key for camptothecin efficacy, with defects potentially causing drug resistance.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • p14ARF (ARF) and topoisomerase I are crucial in cancer and interact, activating topoisomerase I, a target for camptothecin drugs.
  • Regulation of the ARF/topoisomerase I interaction is not well understood, impacting cancer therapy effectiveness.

Purpose of the Study:

  • To investigate the role of topoisomerase I serine phosphorylation in regulating the ARF/topoisomerase I interaction.
  • To determine how this interaction affects cellular sensitivity to camptothecin chemotherapy.

Main Methods:

  • Utilized H358 and H23 lung cancer cell lines and purified recombinant human topoisomerase I.
  • Assessed topoisomerase I serine phosphorylation levels, activity, and ARF complex formation.
  • Examined cellular responses to camptothecin treatment following ARF manipulation (overexpression and siRNA knockdown).

Main Results:

  • H23 cells showed low topoisomerase I activity and poor ARF complexing due to lack of serine phosphorylation, which was restored by casein kinase II.
  • ARF levels did not affect camptothecin response in H23 cells.
  • In H358 and PC-3 cells, ARF overexpression sensitized cells to camptothecin, while ARF knockdown desensitized them, correlating with ARF/topoisomerase I complex and DNA-bound topoisomerase I levels.

Conclusions:

  • p14ARF acts as a serine phosphorylation-dependent coregulator of topoisomerase I in vivo.
  • ARF regulates cellular sensitivity to camptothecin by modulating topoisomerase I activity and DNA binding.
  • Disruptions in ARF/topoisomerase I complex formation may contribute to camptothecin resistance in cancer.

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