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Integrative analysis of epigenetic modulation in melanoma cell response to decitabine: clinical implications
Ruth Halaban1, Michael Krauthammer, Mattia Pelizzola
1Department of Dermatology, Yale University School of Medicine, New Haven, Connecticut, United States of America. ruth.halaban@yale.edu
Abstract:
Decitabine, an epigenetic modifier that reactivates genes otherwise suppressed by DNA promoter methylation, is effective for some, but not all cancer patients, especially those with solid tumors. It is commonly recognized that to overcome resistance and improve outcome, treatment should be guided by tumor biology, which includes genotype, epigenotype, and gene expression profile. We therefore took an integrative approach to better understand melanoma cell response to clinically relevant dose of decitabine and identify complementary targets for combined therapy. We employed eight different melanoma cell strains, determined their growth, apoptotic and DNA damage responses to increasing doses of decitabine, and chose a low, clinically relevant drug dose to perform whole-genome differential gene expression, bioinformatic analysis, and protein validation studies. The data ruled out the DNA damage response, demonstrated the involvement of p21(Cip1) in a p53-independent manner, identified the TGFbeta pathway genes CLU and TGFBI as markers of sensitivity to decitabine and revealed an effect on histone modification as part of decitabine-induced gene expression. Mutation analysis and knockdown by siRNA implicated activated beta-catenin/MITF, but not BRAF, NRAS or PTEN mutations as a source for resistance. The importance of protein stability predicted from the results was validated by the synergistic effect of Bortezomib, a proteasome inhibitor, in enhancing the growth arrest of decitabine in otherwise resistant melanoma cells. Our integrative analysis show that improved therapy can be achieved by comprehensive analysis of cancer cells, identified biomarkers for patient's selection and monitoring response, as well as targets for improved combination therapy.
Insights
Decitabine, an epigenetic drug, shows varied effectiveness in melanoma. Combining it with proteasome inhibitors like Bortezomib may overcome resistance by targeting protein stability, improving cancer therapy outcomes.
Area of Science:
- Cancer Biology
- Epigenetics
- Pharmacology
Background:
- Decitabine is an epigenetic modifier effective in some cancers but faces resistance, particularly in solid tumors.
- Personalized cancer treatment requires understanding tumor biology, including genotype, epigenotype, and gene expression.
- Melanoma treatment necessitates strategies to overcome drug resistance and improve patient outcomes.
Purpose of the Study:
- To investigate melanoma cell response to decitabine using an integrative approach.
- To identify biomarkers for decitabine sensitivity and resistance in melanoma.
- To discover complementary therapeutic targets for combination therapy in melanoma.
Main Methods:
- Utilized eight melanoma cell strains to assess growth, apoptosis, and DNA damage responses to decitabine.
- Performed whole-genome differential gene expression analysis at a clinically relevant decitabine dose.
- Conducted bioinformatic analysis, protein validation, mutation analysis, and siRNA knockdown studies.
Main Results:
- Decitabine's efficacy is independent of DNA damage response and involves p21(Cip1) in a p53-independent manner.
- CLU and TGFBI genes in the TGFbeta pathway are identified as decitabine sensitivity markers.
- Activated beta-catenin/MITF, not BRAF/NRAS/PTEN mutations, is linked to decitabine resistance; Bortezomib synergizes with decitabine in resistant cells.
Conclusions:
- Comprehensive analysis of cancer cells can guide improved melanoma therapy.
- Biomarkers for patient selection and response monitoring can enhance decitabine treatment.
- Targeting protein stability with agents like Bortezomib offers a strategy to improve combination therapy for resistant melanoma.
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