Author:
Hou Jiajie,Zhang He,Liu Jun,Zhao Zhenjun,Wang Jianye,Lu Zhike,Hu Bian,Zhou Jiankui,Zhao Zhicong,Feng Mingxuan,Zhang Haiyan,Shen Bin,Huang Xingxu,Sun Beicheng,He Chuan,Xia Qiang
Abstract
Abstract
Background
Dynamic N6-methyladenosine (m6A) modification was previously identified as a ubiquitous post-transcriptional regulation that affected mRNA homeostasis. However, the m6A-related epitranscriptomic alterations and functions remain elusive in human cancer. Here we aim to identify the profile and outcome of m6A-methylation in hepatocellular carcinoma (HCC).
Results
Using liquid chromatography-tandem mass spectrometry and m6A-immunoprecipitation in combination with high-throughput sequencing, we determined the m6A-mRNA levels in human HCC. Human HCC exhibited a characteristic gain of m6A modification in tandem with an increase of mRNA expression, owing to YTH domain family 2 (YTHDF2) reduction. The latter predicted poor classification and prognosis of HCC patients, and highly correlated with HCC m6A landscape. YTHDF2 silenced in human HCC cells or ablated in mouse hepatocytes provoked inflammation, vascular reconstruction and metastatic progression. Mechanistically, YTHDF2 processed the decay of m6A-containing interleukin 11 (IL11) and serpin family E member 2 (SERPINE2) mRNAs, which were responsible for the inflammation-mediated malignancy and disruption of vascular normalization. Reciprocally, YTHDF2 transcription succumbed to hypoxia-inducible factor-2α (HIF-2α). Administration of a HIF-2α antagonist (PT2385) restored YTHDF2-programed epigenetic machinery and repressed liver cancer.
Conclusion
Our results have characterized the m6A-mRNA landscape in human HCC and revealed YTHDF2 as a molecular ‘rheostat’ in epitranscriptome and cancer progression.
Funder
National Key Research and Development Program of China
National Natural Science Foundation of China
Chen Guang Project in Shanghai Municipal Education Commission and Shanghai Education Development Foundation
The Ludwig Center at the University of Chicago Grant
Joint Program of Biomedical Engineering & Medicine in Shanghai Jiaotong University
Publisher
Springer Science and Business Media LLC
Subject
Cancer Research,Oncology,Molecular Medicine
Cited by
241 articles.
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