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Updated: Oct 3, 2025

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Tumor suppressive lncRNA MEG3 binds to EZH2 and enhances CXCL3 methylation in gallbladder cancer
De-Qiang Li1, Yi-Ren Ding1, Jin-Hui Che1
1Department of Hepato-Pancreato-Biliary Surgery, Xuzhou Cancer Hospital, Xuzhou, Jiangsu, China.
Abstract:
Gallbladder cancer is a malignant tumor with a high mortality rate. Accumulating evidence supports that lncRNA MEG3 may halt the progression of gallbladder cancer, while the downstream mechanism is rarely studied. Thus, we aim to investigate the molecular basis of the tumor-suppressing role of lncRNA MEG3 in gallbladder cancer. The expression of lncRNA MEG3 and CXCL3 was measured in patient serum and cell lines of gallbladder cancer. The viability, apoptosis, migration, and invasion of gallbladder cancer cells were assessed following ectopic MEG3 expression, as detected by CCK-8, flow cytometry, and Transwell assays. The interaction among lncRNA MEG3, EZH2, and CXCL3 was explored through ChIP, RNA pull-down, and RIP assays. The effects of lncRNA MEG3 and CXCL3 on tumor growth were evaluated by a mouse xenograft model. lncRNA MEG3 was expressed at a low level in gallbladder cancer patient serum and cell lines, while CXCL3 was highly expressed. MEG3 overexpression repressed the malignant behaviors of gallbladder cancer cells and promoted their apoptosis. MEG3 was mainly localized in the nucleus. MEG3 bound to EZH2, and EZH2 catalyzed the H3K27 trimethylation of the CXCL3 promoter region. MEG3 downregulated CXCL3 by activating EZH2-mediated H3K27 trimethylation of CXCL3; MEG3 overexpression attenuated cancer cell malignant behaviors in vitro and suppressed tumor growth in vivo in gallbladder cancer by inhibiting CXCL3 expression. Altogether, our results indicate that lncRNA MEG3 impedes gallbladder cancer development via the EZH2-CXCL3 axis, offering potential biomarkers for gallbladder cancer management.
Insights
Long non-coding RNA MEG3 suppresses gallbladder cancer by inhibiting CXCL3 expression via the EZH2 pathway. This finding offers potential biomarkers for gallbladder cancer management.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Gallbladder cancer (GBC) is a highly lethal malignancy.
- The tumor-suppressive role of long non-coding RNA (lncRNA) MEG3 in GBC is suggested, but its downstream mechanisms remain unclear.
Purpose of the Study:
- To elucidate the molecular mechanisms underlying the tumor-suppressive function of lncRNA MEG3 in gallbladder cancer.
- To investigate the interaction between lncRNA MEG3, EZH2, and CXCL3 in GBC progression.
Main Methods:
- Quantitative analysis of lncRNA MEG3 and CXCL3 expression in GBC patient serum and cell lines.
- In vitro assays (CCK-8, flow cytometry, Transwell) to assess cell viability, apoptosis, migration, and invasion following MEG3 overexpression.
- Chromatin immunoprecipitation (ChIP), RNA pull-down, and RNA immunoprecipitation (RIP) assays to explore molecular interactions.
- In vivo mouse xenograft models to evaluate the impact of MEG3 and CXCL3 on tumor growth.
Main Results:
- lncRNA MEG3 was downregulated, while CXCL3 was upregulated in GBC tissues and cell lines.
- MEG3 overexpression inhibited GBC cell proliferation, migration, and invasion, while promoting apoptosis.
- MEG3 localized in the nucleus, bound to EZH2, and enhanced EZH2-mediated H3K27 trimethylation of the CXCL3 promoter, leading to CXCL3 downregulation.
- MEG3 suppressed tumor growth in vivo by reducing CXCL3 expression.
Conclusions:
- lncRNA MEG3 acts as a tumor suppressor in gallbladder cancer by inhibiting CXCL3 expression through the EZH2 pathway.
- The lncRNA MEG3/EZH2/CXCL3 axis represents a potential therapeutic target and diagnostic biomarker for gallbladder cancer.
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