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RNA m6A methylation regulates uveal melanoma cell proliferation, migration, and invasion by targeting c‐Met.

Authors :
Luo, Guangying
Xu, Weiwei
Zhao, Yunping
Jin, Shanshan
Wang, Siqi
Liu, Qi
Chen, Xiaoyan
Wang, Jiao
Dong, Feng
Hu, Dan‐Ning
Reinach, Peter S.
Yan, Dongsheng
Source :
Journal of Cellular Physiology. Oct2020, Vol. 235 Issue 10, p7107-7119. 13p.
Publication Year :
2020

Abstract

N6‐methyladenosine (m6A) is a novel epitranscriptomic marker that contributes to regulating diverse biological processes through controlling messenger RNA metabolism. However, it is unknown if m6A RNA methylation affects uveal melanoma (UM) development. To address this question, we probed its function and molecular mechanism in UM. Initially, we demonstrated that global RNA m6A methylation levels were dramatically elevated in both UM cell lines and clinical specimens. Meanwhile, we found that METTL3, a main m6A regulatory enzyme, was significantly increased in UM cells and specimens. Subsequently, cycloleucine (Cyc) or METTL3 targeted small interfering RNA was used to block m6A methylation in UM cells. We found that Cyc or silencing METTL3 significantly suppressed UM cell proliferation and colony formation through cell cycle G1 arrest, as well as migration and invasion by functional analysis. On the other hand, overexpression of METTL3 had the opposite effects. Furthermore, bioinformatics and methylated RNA immunoprecipitation‐quantitative polymerase chain reaction identified c‐Met as a direct target of m6A methylation in UM cells. In addition, western blot analysis showed that Cyc or knockdown of METTL3 downregulated c‐Met, p‐Akt, and cell cycle‐related protein levels in UM cells. Taken together, our results demonstrate that METTL3‐mediated m6A RNA methylation modulates UM cell proliferation, migration, and invasion by targeting c‐Met. Such a modification acts as a critical oncogenic regulator in UM development. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219541
Volume :
235
Issue :
10
Database :
Academic Search Index
Journal :
Journal of Cellular Physiology
Publication Type :
Academic Journal
Accession number :
144949861
Full Text :
https://doi.org/10.1002/jcp.29608