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Comprehensive DNA Methylation Analysis Using a Methyl-CpG-binding Domain Capture-based Method in Chronic Lymphocytic Leukemia Patients
Published on: June 16, 2017
Analyzing integrated network of methylation and gene expression profiles in lung squamous cell carcinoma
Yusri Dwi Heryanto1, Kotoe Katayama2, Seiya Imoto3,2
1Division of Health Medical Intelligence, Human Genome Center, Institute of Medical Science, The University of Tokyo, Tokyo, Japan. yusri_dh@ims.u-tokyo.ac.jp.
Abstract:
Gene expression, DNA methylation, and their organizational relationships are commonly altered in lung squamous cell carcinoma (LUSC). To elucidate these complex interactions, we reconstructed a differentially expressed gene network and a differentially methylated cytosine (DMC) network by partial information decomposition and an inverse correlation algorithm, respectively. Then, we performed graph union to integrate the networks. Community detection and enrichment analysis of the integrated network revealed close interactions between the cell cycle, keratinization, immune system, and xenobiotic metabolism gene sets in LUSC. DMC analysis showed that hypomethylation targeted the gene sets responsible for cell cycle, keratinization, and NRF2 pathways. On the other hand, hypermethylated genes affected circulatory system development, the immune system, extracellular matrix organization, and cilium organization. By centrality measurement, we identified NCAPG2, PSMG3, and FADD as hub genes that were highly connected to other nodes and might play important roles in LUSC gene dysregulation. We also found that the genes with high betweenness centrality are more likely to affect patients' survival than those with low betweenness centrality. These results showed that the integrated network analysis enabled us to obtain a global view of the interactions and regulations in LUSC.
Insights
Lung squamous cell carcinoma involves altered gene expression and DNA methylation. Integrated network analysis revealed key interactions and identified potential therapeutic targets like NCAPG2, PSMG3, and FADD.
Area of Science:
- Oncology
- Genomics
- Bioinformatics
Background:
- Gene expression and DNA methylation alterations are common in lung squamous cell carcinoma (LUSC).
- Understanding the complex interplay between these molecular changes is crucial for LUSC research.
Purpose of the Study:
- To elucidate the intricate relationships between gene expression and DNA methylation in LUSC.
- To identify key regulatory networks and potential therapeutic targets within LUSC.
Main Methods:
- Reconstruction of differentially expressed gene and differentially methylated cytosine (DMC) networks.
- Integration of networks using graph union, followed by community detection and enrichment analysis.
- Identification of hub genes through centrality measurements.
Main Results:
- Integrated network analysis revealed interactions between cell cycle, keratinization, immune system, and xenobiotic metabolism in LUSC.
- Hypomethylation affected cell cycle, keratinization, and NRF2 pathways, while hypermethylation impacted immune system and extracellular matrix organization.
- NCAPG2, PSMG3, and FADD were identified as crucial hub genes, with high betweenness centrality linked to patient survival.
Conclusions:
- Integrated network analysis provides a comprehensive view of LUSC molecular interactions and regulations.
- Specific methylation patterns and identified hub genes offer potential insights for LUSC diagnosis and treatment.

