METTL3-Regulated lncRNA SNHG7 Drives MNNG-Induced Epithelial–Mesenchymal Transition in Gastric Precancerous Lesions

Author:

Jian Jiabei1,Feng Yanlu2,Wang Ruiying3,Li Chengyun4,Zhang Lin1,Ruan Ye1,Luo Bin1ORCID,Liang Geyu5,Liu Tong1ORCID

Affiliation:

1. Institute of Occupational Health and Environmental Health, School of Public Health, Lanzhou University, Lanzhou 730000, China

2. Qinghai Provincial Center for Disease Control and Prevention, Institute of Immunization Planning, Xining 810000, China

3. Gansu Provincial Center for Disease Prevention and Control, Lanzhou 730000, China

4. Department of Toxicology, School of Public Health, Lanzhou University, Lanzhou 730000, China

5. Key Laboratory of Environmental Medicine Engineering, Ministry of Education, School of Public Health, Southeast University, Nanjing 210096, China

Abstract

As a representative item of chemical carcinogen, MNNG is closely associated with the onset of gastric cancer (GC), where N6-methyladonosine (m6A) RNA methylation is recognized as a critical epigenetic event. In our previous study, we found that the m6A modification by methyltransferase METTL3 was up-regulated in MNNG-exposed malignant GES-1 cells (MC cells) compared to control cells in vitro, and long non-coding RNA SNHG7 as a downstream target of the METTL3. However, the functional role of METTL3 in mediating the SNHG7 axis in MNNG-induced GC remains unclear. In the present study, we continuously investigate the functional role of METTL3 in mediating the SNHG7 axis in MNNG-induced GC. RIP-PCR and m6A-IP-qPCR were used to examine the molecular mechanism underlying the METTL3/m6A/SNHG7 axis in MNNG-induced GC. A METTL3 knockout mice model was constructed and exposed by MNNG. Western blot analysis, IHC analysis, and RT-qPCR were used to measure the expression of METTL3, SNHG7, and EMT markers. In this study, we demonstrated that in MNNG-induced GC tumorigenesis, the m6A modification regulator METTL3 facilitates cellular EMT and biological functions through the m6A/SNHG7 axis using in vitro and in vivo models. In conclusion, our study provides novel insights into critical epigenetic molecular events vital to MNNG-induced gastric carcinogenesis. These findings suggest the potential therapeutic targets of METTL3 for GC treatment.

Funder

Fundamental Research Funds

Medical Innovation and Development Project of Lanzhou University

Key Research and Development Plan (Social Development) Project of Jiangsu Province

National Natural Science Foundation of China

Publisher

MDPI AG

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