CDKN2A
癌症研究
胶质瘤
胶质母细胞瘤
生物
核糖核酸
基因敲除
代谢物
信号转导
抑制器
转录组
内科学
癌症
抑制性突触后电位
蛋氨酸
内分泌学
医学
间歇性禁食
药理学
基因
内生
代谢组学
中枢神经系统
脑瘤
生物信息学
抄写(语言学)
转录因子
作者
Yao Lin,ShihJung Li,Xinyue Xu,Xiaopeng Hu,Qiqi Mao,Shuaiyi Liang,Jun Meng,Honglei Li,Zheng Li,Бин Ли,Hubin Chen,Jingzhen Lai,Yi Bao,Ziyi Liu,Jiemei Chu,Xuena Chen,X B Zhang,Xinli Liu,Shiou Yih Lee,An Sanqi
标识
DOI:10.1038/s41467-026-68512-2
摘要
Intermittent fasting (IF) has emerged as a potential cancer treatment modality, although its tumor-suppressive effects are limited. Glioblastoma (GBM) can be classified into CDKN2A subtype and TP53 subtype. Here, we discover that the efficacy of IF is correlated with tumor subtypes of GBM. IF significantly inhibite GBM progression in mice with the Tp53 GBM model, whereas its inhibitory effect is not significant in the Cdkn2a GBM model. Multi-omics sequencing is performed in the IF-responsive Tp53 GBM mouse model, delineating a comprehensive molecular profiling of IF that including the spatial transcriptome, spatial metabolome, single-cell transcriptome, single-cell RNA methylation, metabolome, and microbiome. Through systematic biological analysis and rescue experiments conducted in IF-responsive Tp53 GBM mice model, we demonstrate that the efficacy of IF is primarily mediated by alterations in the gut microbiota, which subsequently modulate the production of the microbial metabolite methionine sulfoxide. Methionine sulfoxide, by regulating m6A modification, inhibits the TGF-β signaling pathway, resulting in suppressing GBM progression. This study proposes a genotype-based hypothesis for the therapeutic effects of IF on tumors, and elucidates the potential RNA modification-related molecular mechanisms underlying the effective suppression of GBM by IF.
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