Cancer cells exploit altered metabolic pathways to dynamically regulate epigenetic methylation and thus promote tumorigenesis and metastasis. In various human cancers, such as lung adenocarcinoma, the level of a key cellular metabolite, S-adenosylmethionine (SAM), is prominently upregulated for RNA hypermethylation as the methyl donor. However, the specific mechanisms by which cancer cells produce SAM to sustain RNA methylation remain elusive. Here, we demonstrate that PRPS2, a phosphoribosyl pyrophosphate synthetase isoform involved in the first and rate-limiting step of the purine biosynthesis pathway, exhibits distinct oncogenic functionality in regulating RNA methylation, unlike its homolog PRPS1. PRPS2 utilizes four non-conserved key residues to bypass the typical ADP/GDP allosteric feedback inhibition, enabling sustained excess production of newly synthesized ATP. Moreover, PRPS2 stabilizes methionine adenosyltransferase 2âA (MAT2A) through direct interactions to positively stimulate ATP utilization and SAM synthesis for RNA m(6)A specific methylation via the WTAP/METTL3/METTL14 methyltransferase complex, thereby promoting lung tumorigenesis. Our study links nucleotide biosynthesis with RNA epigenetics in cancer progression through the PRPS2-MAT2A-WTAP/METTL3/METTL14 axis, and elucidates both enzyme-dependent and independent functions of PRPS2. These findings have significant implications for developing targeted therapies for cancers associated with PRPS2 abnormalities.
PRPS2 enhances RNA m(6)A methylation by stimulating SAM synthesis through enzyme-dependent and independent mechanisms.
PRPS2 通过酶依赖性和非酶依赖性机制刺激 SAM 合成,从而增强 RNA m(6)A 甲基化
阅读:14
作者:Zhang Lin, Zhao Xian, Hu Jingyan, Li Tingting, Chen Hong-Zhuan, Zhang Ao, Wang Hao, Yu Jianxiu, Zhang Liang
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Apr 28; 16(1):3966 |
| doi: | 10.1038/s41467-025-59119-0 | 研究方向: | 表观遗传 |
| 信号通路: | DNA甲基化 | ||
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