Title
High-definition CpG methylation of novel genes in gastric carcinogenesis identified by next-generation sequencing
Date Issued
01 February 2016
Access level
open access
Resource Type
journal article
Author(s)
Sepulveda J.
Luna A.
Yao Y.
Tobias J.
Thomas S.
Woo Y.
Giorgi F.
Komissarova E.
Califano A.
Wang T.
Sepulveda A.
Columbia University
Publisher(s)
Nature Publishing Group
Abstract
Gastric cancers are the most frequent gastric malignancy and usually arise in the sequence of Helicobacter pylori-associated chronic gastritis. CpG methylation is a central mechanism of epigenetic gene regulation affecting cancer-related genes, and occurs early in gastric carcinogenesis. DNA samples from non-metaplastic gastric mucosa with variable levels of gastritis (non-metaplastic mucosa), intestinal metaplasia, or gastric cancer were screened with methylation arrays for CpG methylation of cancer-related genes and 30 gene targets were further characterized by high-definition bisulfite next-generation sequencing. In addition, data from The Cancer Genome Atlas were analyzed for correlation of methylation with gene expression. Overall, 13 genes had significantly increased CpG methylation in gastric cancer vs non-metaplastic mucosa (BRINP1, CDH11, CHFR, EPHA5, EPHA7, FGF2, FLI1, GALR1, HS3ST2, PDGFRA, SEZ6L, SGCE, and SNRPN). Further, most of these genes had corresponding reduced expression levels in gastric cancer compared with intestinal metaplasia, including novel hypermethylated genes in gastric cancer (FLI1, GALR1, SGCE, and SNRPN), suggesting that they may regulate neoplastic transformation from non-malignant intestinal metaplasia to cancer. Our data suggest a tumor-suppressor role for FLI1 in gastric cancer, consistent with recently reported data in breast cancer. For the genes with strongest methylation/expression correlation, namely FLI1, the expression was lowest in microsatellite-unstable tumors compared with other gastric cancer molecular subtypes. Importantly, reduced expression of hypermethylated BRINP1 and SGCE was significantly associated with favorable survival in gastric cancer. In summary, we report novel methylation gene targets that may have functional roles in discrete stages of gastric carcinogenesis and may serve as biomarkers for diagnosis and prognosis of gastric cancer.
Start page
182
End page
193
Volume
29
Issue
2
Language
English
Scopus EID
2-s2.0-84956656805
PubMed ID
Source
Modern Pathology
ISSN of the container
08933952
Sponsor(s)
Next-generation bisulfite sequencing was performed by the Molecular Cytogenetics & Epigenetics Shared Resource of the Herbert Irving Comprehensive Cancer Center. This study was funded by the Department of Pathology and Cell Biology, Columbia University and by a pilot award from the Herbert Irving Comprehensive Cancer Center.
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