METTL3-mediated m6A RNA methylation promotes the anti-tumour immunity of natural killer cells

METTL3介导的m6A RNA甲基化促进自然杀伤细胞的抗肿瘤免疫

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作者:Hao Song ,Jiaxi Song ,Ming Cheng ,Meijuan Zheng ,Tian Wang ,Sha Tian ,Richard A Flavell ,Shu Zhu ,Hua-Bing Li ,Chen Ding ,Haiming Wei ,Rui Sun ,Hui Peng ,Zhigang Tian

Abstract

Natural killer (NK) cells exert critical roles in anti-tumor immunity but how their functions are regulated by epitranscriptional modification (e.g., N6-methyladenosine (m6A) methylation) is unclear. Here we report decreased expression of the m6A "writer" METTL3 in tumor-infiltrating NK cells, and a positive correlation between protein expression levels of METTL3 and effector molecules in NK cells. Deletion of Mettl3 in NK cells alters the homeostasis of NK cells and inhibits NK cell infiltration and function in the tumor microenvironment, leading to accelerated tumor development and shortened survival in mice. The gene encoding SHP-2 is m6A modified, and its protein expression is decreased in METTL3-deficient NK cells. Reduced SHP-2 activity renders NK cells hyporesponsive to IL-15, which is associated with suppressed activation of the AKT and MAPK signaling pathway in METTL3-deficient NK cells. These findings show that m6A methylation safeguards the homeostasis and tumor immunosurveillance function of NK cells.

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