Related Experiment Video
Updated: Feb 2, 2026

Dual Effects of Melanoma Cell-derived Factors on Bone Marrow Adipocytes Differentiation
Published on: August 23, 2018
Network assessment of demethylation treatment in melanoma: Differential transcriptome-methylome and antigen profile
Zhijie Jiang1, Caterina Cinti2, Monia Taranta2
1Center for Computational Science, University of Miami, Miami, FL, United States of America.
Background:
In melanoma, like in other cancers, both genetic alterations and epigenetic underlie the metastatic process. These effects are usually measured by changes in both methylome and transcriptome profiles, whose cross-correlation remains uncertain. We aimed to assess at systems scale the significance of epigenetic treatment in melanoma cells with different metastatic potential.
Methods And Findings:
Treatment by DAC demethylation with 5-Aza-2'-deoxycytidine of two melanoma cell lines endowed with different metastatic potential, SKMEL-2 and HS294T, was performed and high-throughput coupled RNA-Seq and RRBS-Seq experiments delivered differential profiles (DiP) of both transcriptomes and methylomes. Methylation levels measured at both TSS and gene body were studied to inspect correlated patterns with wide-spectrum transcript abundance levels quantified in both protein coding and non-coding RNA (ncRNA) regions. The DiP were then mapped onto standard bio-annotation sources (pathways, biological processes) and network configurations were obtained. The prioritized associations for target identification purposes were expected to elucidate the reprogramming dynamics induced by the epigenetic therapy. The interactomic connectivity maps of each cell line were formed to support the analysis of epigenetically re-activated genes. i.e. those supposedly silenced by melanoma. In particular, modular protein interaction networks (PIN) were used, evidencing a limited number of shared annotations, with an example being MAPK13 (cascade of cellular responses evoked by extracellular stimuli). This gene is also a target associated to the PANDAR ncRNA, therapeutically relevant because of its aberrant expression observed in various cancers. Overall, the non-metastatic SKMEL-2 map reveals post-treatment re-activation of a richer pathway landscape, involving cadherins and integrins as signatures of cell adhesion and proliferation. Relatively more lncRNAs were also annotated, indicating more complex regulation patterns in view of target identification. Finally, the antigen maps matched to DiP display other differential signatures with respect to the metastatic potential of the cell lines. In particular, as demethylated melanomas show connected targets that grow with the increased metastatic potential, also the potential target actionability seems to depend to some degree on the metastatic state. However, caution is required when assessing the direct influence of re-activated genes over the identified targets. In light of the stronger treatment effects observed in non-metastatic conditions, some limitations likely refer to in silico data integration tools and resources available for the analysis of tumor antigens.
Conclusion:
Demethylation treatment strongly affects early melanoma progression by re-activating many genes. This evidence suggests that the efficacy of this type of therapeutic intervention is potentially high at the pre-metastatic stages. The biomarkers that can be assessed through antigens seem informative depending on the metastatic conditions, and networks help to elucidate the assessment of possible targets actionability.
Insights
Epigenetic therapy using 5-Aza-2'-deoxycytidine (DAC) reactivates genes in melanoma cells, showing potential for pre-metastatic treatment. Biomarkers and network analysis aid in assessing therapeutic targets based on metastatic potential.
Area of Science:
- Oncology
- Epigenetics
- Genomics
Background:
- Melanoma metastasis involves genetic and epigenetic factors, with cross-correlation between methylome and transcriptome profiles remaining unclear.
- Understanding epigenetic modifications is crucial for deciphering melanoma progression and identifying therapeutic targets.
Purpose of the Study:
- To assess the significance of epigenetic treatment on melanoma cells with varying metastatic potential at a systems scale.
- To investigate the correlation between methylome and transcriptome profiles following epigenetic therapy.
Main Methods:
- Treatment of melanoma cell lines (SKMEL-2, HS294T) with 5-Aza-2 ac-deoxycytidine (DAC) for demethylation.
- High-throughput RNA-Seq and RRBS-Seq to generate differential profiles (DiP) of transcriptomes and methylomes.
- Bioinformatic analysis including pathway mapping, network construction, and interactomic connectivity analysis.
Main Results:
- DAC treatment induced differential profiles in methylomes and transcriptomes, affecting both protein-coding and non-coding RNA regions.
- Network analysis revealed shared targets like MAPK13 and highlighted differential pathway activation, with non-metastatic cells showing richer post-treatment landscapes.
- Antigen mapping indicated that target actionability is influenced by metastatic potential, with stronger effects observed in non-metastatic conditions.
Conclusions:
- Demethylation treatment significantly impacts early melanoma progression by re-activating genes, suggesting therapeutic potential at pre-metastatic stages.
- Antigen-based biomarkers are informative depending on metastatic conditions, and network analysis aids in assessing target actionability.
- Further research is needed to refine in silico tools for analyzing tumor antigens and understanding direct gene influence on targets.
Related Concept Videos
Protein Networks
These interactions can be represented through maps depicting protein-protein interaction networks, represented as nodes and edges. Nodes are circles that are representative of a protein,...
Protein Networks
Network Covalent Solids
To break or to melt a covalent network solid, covalent bonds must be broken. Because covalent bonds are relatively strong, covalent network solids are typically...
Ribosome Profiling
Applications of ribosome profiling
Ribosome profiling has many applications, including in vivo monitoring of translation inside a particular organ or tissue type and quantifying new protein synthesis levels.
The technique...
Antigen Presenting Cells
T cells require the help of antigen-presenting cells (APCs), which process foreign antigens into smaller fragments that can be recognized by T cells. These APCs are highly specialized cells that efficiently internalize antigens...
Network Function of a Circuit

