Integrative analyses of N6‐methyladenosine‐associated single‐nucleotide polymorphisms (m6A‐SNPs) identify tumor suppressor gene AK9 in lung cancer

Author:

Hua Tingting1,Zhang Chang12,Fu Yating1,Qin Na13,Liu Su1,Chen Congcong1,Gong Linnan1,Ma Huimin1,Ding Yue1,Wei Xiaoxia1,Jin Chenying1,Jin Chen1,Zhu Meng13,Zhang Erbao13,Dai Juncheng13ORCID,Ma Hongxia134ORCID

Affiliation:

1. Department of Epidemiology, Center for Global Health, School of Public Health Nanjing Medical University Nanjing China

2. The Affiliated Changzhou Second People's Hospital of Nanjing Medical University, Changzhou Second People's Hospital, Changzhou Medical Center Nanjing Medical University Nanjing China

3. Jiangsu Key Lab of Cancer Biomarkers, Prevention and Treatment, Collaborative Innovation Center for Cancer Personalized Medicine Nanjing Medical University Nanjing China

4. Research Units of Cohort Study on Cardiovascular Diseases and Cancers Chinese Academy of Medical Sciences Beijing China

Abstract

AbstractN6‐methyladenosine (m6A) modification has been identified as one of the most important epigenetic regulation mechanisms in the development of human cancers. However, the association between m6A‐associated single‐nucleotide polymorphisms (m6A‐SNPs) and lung cancer risk remains largely unknown. Here, we identified m6A‐SNPs and examined the association of these m6A‐SNPs with lung cancer risk in 13,793 lung cancer cases and 14,027 controls. In silico functional annotation was used to identify causal m6A‐SNPs and target genes. Furthermore, methylated RNA immunoprecipitation and quantitative real‐time polymerase chain reaction (MeRIP‐qPCR) assay was performed to assess the m6A modification level of different genotypes of the causal SNP. In vitro assays were performed to validate the potential role of the target gene in lung cancer. A total of 8794 m6A‐SNPs were detected, among which 397 SNPs in nine susceptibility loci were associated with lung cancer risk, including six novel loci. Bioinformatics analyses indicated that rs1321328 in 6q21 was located around the m6A modification site of AK9 and significantly reduced AK9 expression (β = −0.15, p = 2.78 × 10−8). Moreover, AK9 was significantly downregulated in lung cancer tissues than that in adjacent normal tissues of samples from the Cancer Genome Atlas and Nanjing Lung Cancer Cohort. MeRIP‐qPCR assay suggested that C allele of rs1321328 could significantly decrease the m6A modification level of AK9 compared with G allele. In vitro assays verified the tumor‐suppressing role of AK9 in lung cancer. These findings shed light on the pathogenic mechanism of lung cancer susceptibility loci linked with m6A modification.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cancer Research,Molecular Biology

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