Aurora kinase A promotes trained immunity via regulation of endogenous S-adenosylmethionine metabolism.

Aurora激酶A通过调节内源性S-腺苷甲硫氨酸代谢来促进训练免疫

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作者:Li Mengyun, Jin Huan, Liu Yongxiang, Wang Zining, Li Lin, Wang Tiantian, Wang Xiaojuan, Zhang Hongxia, Huo Bitao, Yu Tiantian, Wang Shoujie, Zhao Wei, Liu Jinyun, Huang Peng, Cui Jun, Xia Xiaojun
Innate immune cells can acquire a memory phenotype, termed trained immunity, but the mechanism underlying the regulation of trained immunity remains largely elusive. Here, we demonstrate that inhibition of Aurora kinase A (AurA) dampens trained immunity induced by β-glucan. ATAC-seq and RNA-seq analysis reveal that AurA inhibition restricts chromatin accessibility of genes associated with inflammatory pathways such as JAK-STAT, TNF, and NF-κB pathways. Specifically, AurA inhibition promotes nuclear localization of FOXO3 and the expression of glycine N-methyltransferase (GNMT), a key enzyme responsible for S-adenosylmethionine (SAM) consumption. Metabolomic analysis confirms a reduction in SAM level upon AurA inhibition. As a result of SAM deficiency, trained mouse macrophages exhibit decreased H3K4me3 and H3K36me3 enrichment on gene regions of Il6 and Tnf. Additionally, the tumor inhibition effect of β-glucan is notably abolished by AurA inhibition. Together, our findings identify an essential role of AurA in regulating trained immunity via a methylation-dependent manner by maintaining endogenous SAM levels through the mTOR-FOXO3-GNMT axis.

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