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Uracil-DNA Glycosylase Assay by Matrix-assisted Laser Desorption/Ionization Time-of-flight Mass Spectrometry Analysis
Published on: April 22, 2022
Thymine DNA glycosylase as a novel target for melanoma
Pietro Mancuso1,2,3, Rossella Tricarico1, Vikram Bhattacharjee4
1Cancer Epigenetics Program, Fox Chase Cancer Center, 333 Cottman Avenue, Philadelphia, PA, 19111, USA.
Abstract:
Melanoma is an aggressive neoplasm with increasing incidence that is classified by the NCI as a recalcitrant cancer, i.e., a cancer with poor prognosis, lacking progress in diagnosis and treatment. In addition to conventional therapy, melanoma treatment is currently based on targeting the BRAF/MEK/ERK signaling pathway and immune checkpoints. As drug resistance remains a major obstacle to treatment success, advanced therapeutic approaches based on novel targets are still urgently needed. We reasoned that the base excision repair enzyme thymine DNA glycosylase (TDG) could be such a target for its dual role in safeguarding the genome and the epigenome, by performing the last of the multiple steps in DNA demethylation. Here we show that TDG knockdown in melanoma cell lines causes cell cycle arrest, senescence, and death by mitotic alterations; alters the transcriptome and methylome; and impairs xenograft tumor formation. Importantly, untransformed melanocytes are minimally affected by TDG knockdown, and adult mice with conditional knockout of Tdg are viable. Candidate TDG inhibitors, identified through a high-throughput fluorescence-based screen, reduced viability and clonogenic capacity of melanoma cell lines and increased cellular levels of 5-carboxylcytosine, the last intermediate in DNA demethylation, indicating successful on-target activity. These findings suggest that TDG may provide critical functions specific to cancer cells that make it a highly suitable anti-melanoma drug target. By potentially disrupting both DNA repair and the epigenetic state, targeting TDG may represent a completely new approach to melanoma therapy.
Insights
Targeting thymine DNA glycosylase (TDG) shows promise for melanoma treatment. Inhibiting TDG disrupts cancer cell functions, offering a novel therapeutic strategy for this aggressive neoplasm.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Melanoma is an aggressive cancer with poor prognosis and limited treatment options.
- Current therapies target BRAF/MEK/ERK pathways and immune checkpoints, but drug resistance is a major challenge.
- Novel therapeutic targets are needed for advanced melanoma treatment.
Purpose of the Study:
- To investigate thymine DNA glycosylase (TDG) as a potential therapeutic target for melanoma.
- To evaluate the effects of TDG inhibition on melanoma cell behavior and tumor formation.
Main Methods:
- TDG was knocked down in melanoma cell lines.
- Transcriptome and methylome alterations were analyzed.
- Melanoma xenograft models were used to assess tumor formation.
- High-throughput screening identified candidate TDG inhibitors.
Main Results:
- TDG knockdown induced cell cycle arrest, senescence, and death in melanoma cells.
- TDG inhibition altered melanoma cell transcriptome and methylome.
- TDG knockdown impaired xenograft tumor formation.
- Identified TDG inhibitors reduced melanoma cell viability and clonogenic capacity.
Conclusions:
- TDG plays critical roles in melanoma cell survival and proliferation.
- TDG is a promising and specific therapeutic target for melanoma.
- Targeting TDG offers a novel approach to melanoma therapy by disrupting DNA repair and epigenetic regulation.
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