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A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Repurposing Alkylating Agents in Melanoma via ERCC8 Silencing: A Novel Therapeutic Strategy
Silvia Filippi1, Emma Valeri1, Valeria Bartolocci1
1Unit of Molecular Genetics of Aging, Department of Ecological and Biological Sciences, University of Tuscia, 01100 Viterbo, Italy.
Abstract:
Background/Objectives: Melanoma is the deadliest form of skin cancer. Resistance to alkylating agents such as Temozolomide (TMZ) and Dacarbazine (DTIC) limits their clinical benefit, as these drugs remain palliative options when immunotherapies and targeted treatments fail. CSA/ERCC8 is a key component of transcription-coupled nucleotide excision repair (TC-NER), a pathway responsible for removing UV-induced DNA lesions. In principle, loss of a DNA repair factor would be expected to increase carcinogenesis. However, although CSA loss-of-function causes Cockayne Syndrome (CS), affected patients do not exhibit increased skin cancer incidence, suggesting that CSA impairment promotes apoptosis rather than tumor development. This paradox raises the possibility that CSA inhibition may selectively target melanoma cell survival pathways. Methods: The expression of CSA/ERCC8 was analyzed by qRT-PCR and Western blot. ERCC8 was silenced using antisense oligonucleotides. Cell viability, apoptosis, cell cycle progression, drug sensitivity, and DNA damage were assessed by functional assays, including IC50 determination and Bliss analysis for drug interactions. Results: We identified CSA/ERCC8 as a driver of melanoma chemoresistance. CSA was markedly overexpressed in primary and metastatic melanoma cells. ERCC8 silencing reduced proliferation, induced apoptosis, and significantly enhanced sensitivity to low doses of TMZ and DTIC while sparing normal cells. Conclusions: CSA represents a promising therapeutic target to overcome chemoresistance in melanoma. Its inhibition enhances the efficacy and selectivity of alkylating agents, supporting its potential as a salvage strategy for refractory disease and warranting further preclinical and clinical investigation.
Insights
Inhibiting CSA/ERCC8, a protein overexpressed in melanoma, can overcome chemoresistance. Silencing CSA enhances sensitivity to alkylating agents like Temozolomide and Dacarbazine, offering a potential new treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Melanoma, the deadliest skin cancer, often develops resistance to chemotherapy.
- Alkylating agents like Temozolomide (TMZ) and Dacarbazine (DTIC) have limited efficacy in melanoma treatment.
- CSA/ERCC8, a DNA repair factor, is paradoxically not linked to increased skin cancer in Cockayne Syndrome patients, suggesting a role in apoptosis promotion.
Purpose of the Study:
- To investigate the role of CSA/ERCC8 in melanoma chemoresistance.
- To determine if CSA inhibition can re-sensitize melanoma cells to alkylating agents.
Main Methods:
- Quantitative real-time PCR and Western blot were used to analyze CSA/ERCC8 expression.
- CSA/ERCC8 was silenced using antisense oligonucleotides.
- Functional assays assessed cell viability, apoptosis, cell cycle, and drug sensitivity (IC50, Bliss analysis).
Main Results:
- CSA/ERCC8 was significantly overexpressed in melanoma cells.
- Silencing CSA/ERCC8 reduced melanoma cell proliferation and induced apoptosis.
- ERCC8 inhibition enhanced melanoma cell sensitivity to low-dose TMZ and DTIC, while sparing normal cells.
Conclusions:
- CSA/ERCC8 is a key driver of melanoma chemoresistance.
- Targeting CSA/ERCC8 is a promising therapeutic strategy to overcome resistance to alkylating agents.
- CSA inhibition offers a potential salvage therapy for refractory melanoma, warranting further investigation.
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