4.6 Article

Methylation Patterns and Chromatin Accessibility in Neuroendocrine Lung Cancer

期刊

CANCERS
卷 12, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/cancers12082003

关键词

ATAC-seq; open chromatin; lung cancer; DNA methylation; neuroendocrine lung cancer

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资金

  1. Swedish Cancer Society
  2. Foundation for Strategic Research through the Lund Centre for Translational Cancer Research (CREATE Health)
  3. Sjoberg Foundation
  4. Mrs Berta Kamprad Foundation
  5. Gunnar Nilsson Cancer Foundation
  6. Crafoord Foundation
  7. BioCARE a Strategic Research Program at Lund University
  8. Gustav V: s Jubilee Foundation
  9. governmental funding (ALF)
  10. Swedish Childhood Cancer Foundation [TJ2016-0057]
  11. Gunnar Nilsson Foundation [GN-2018-5]

向作者/读者索取更多资源

Lung cancer is the worldwide leading cause of death from cancer. Epigenetic modifications such as methylation and changes in chromatin accessibility are major gene regulatory mechanisms involved in tumorigenesis and cellular lineage commitment. We aimed to characterize these processes in the context of neuroendocrine (NE) lung cancer. Illumina 450K DNA methylation data were collected for 1407 lung cancers including 27 NE tumors. NE differentially methylated regions (NE-DMRs) were identified and correlated with gene expression data for 151 lung cancers and 31 human tissue entities from the Genotype-Tissue Expression (GTEx) consortium. Assay for transposase-accessible chromatin sequencing (ATAC-seq) and RNA sequencing (RNA-seq) were performed on eight lung cancer cell lines, including three NE cell lines, to identify neuroendocrine specific gene regulatory elements. We identified DMRs with methylation patterns associated with differential gene expression and an NE tumor phenotype. DMR-associated genes could further be split into six functional modules, including one highly specific gene module for NE lung cancer showing high expression in both normal and malignant brain tissue. The regulatory potential of NE-DMRs was further validated in vitro using paired ATAC- and RNA-seq and revealed both proximal and distal regulatory elements of canonical NE-marker genes such as CHGA, NCAM1, INSM1, as well as a number of novel candidate markers of NE lung cancer. Using multilevel genomic analyses of both tumor bulk tissue and lung cancer cell lines, we identified a large catalogue of gene regulatory elements related to the NE phenotype of lung cancer.

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