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Published on: March 9, 2012
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.
Abstract:
p14ARF (ARF) and topoisomerase I play central roles in cancer and have recently been shown to interact. The interaction activates topoisomerase I, an important target for camptothecin-like chemotherapeutic drugs, but the regulation of the interaction is poorly understood. We have used the H358 and H23 lung cancer cell lines and purified recombinant human topoisomerase I to demonstrate that the ARF/topoisomerase I interaction is regulated by topoisomerase I serine phosphorylation, a modification that regulates topoisomerase I activity. Both cell lines express wild-type ARF and topoisomerase I proteins at equivalent levels, but H23 topoisomerase I, unlike that of H358 cells, is largely devoid of serine phosphorylation, has low activity, and complexes poorly with ARF. The ability of H23 topoisomerase I to complex with ARF can be restored by treatment with the serine kinase, casein kinase II. Consistent with these observations, we show that the response of H23 cells to camptothecin treatment is unaffected by changes in intracellular levels of ARF. However, in H358 and PC-3 cells, which express a serine phosphorylated topoisomerase I that complexes with ARF, ectopic overexpression of ARF causes sensitization to camptothecin, and siRNA-mediated down-regulation of endogenous ARF causes desensitization to camptothecin. These biological responses correlate with increased and decreased levels, respectively, of ARF/topoisomerase I complex and DNA-bound topoisomerase I. Thus, ARF is a serine phosphorylation-dependent coregulator of topoisomerase I in vivo, and it regulates cellular sensitivity to camptothecin by interacting with topoisomerase I. Certain cancer associated defects affecting ARF/topoisomerase I complex formation could contribute to cellular resistance to camptothecin.
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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