SDHB系统
表观遗传学
生物
副神经节瘤
DNA甲基化
重编程
嗜铬细胞瘤
癌症研究
基因
转移
生物信息学
泛素
细胞
遗传学
突变
癌症
电池类型
SDHD公司
肿瘤进展
基因复制
细胞生物学
转录组
甲基化
组蛋白
神经母细胞瘤
点突变
作者
Tamara Cubiella,Juan José Alba‐Linares,Javier de Juan Bagudá,Alvaro Suarez-Priede,Nerea Gomez-Suarez,Maria Tous,Irina Bancos,Carles Villabona,Teresa Serrano,Isabel Alcober Tena,Maribel Montes del Olmo,Lluis Forga,Nuria Valdés,Mario F. Fraga,María-Dolores Chiara
标识
DOI:10.1038/s42003-026-09543-9
摘要
Pheochromocytomas and paragangliomas (PPGLs) with SDHB mutations frequently develop metastases, but the molecular mechanisms driving this progression remain unclear. Here we show that SDHB-mutant metastatic PPGLs display an amplified hypermethylation signature, particularly in genes involved in neuronal differentiation, building on previous findings in SDHx-mutated tumors. This epigenetic shift is already detectable in benign SDHB-mutant tumors, suggesting early priming toward a less differentiated state. In parallel, we identify hypomethylation of genes linked to carbohydrate metabolism, notably the fructose transporter SLC2A5. Functional assays reveal that SDHB loss, hypoxia, exogenous succinate, and fructose availability promote tumor cell growth and induce cell-type-restricted, SDHB-dependent, induction of SLC2A5 expression. These findings highlight the dual role of SDHB mutations in driving epigenetic reprogramming and metabolic adaptation, promoting tumor cell plasticity and survival under metabolic stress. By uncovering a fructose-driven metabolic vulnerability, our study provides insights into the molecular mechanisms underlying metastatic PPGLs and identifies potential therapeutic targets at the intersection of epigenetic and metabolic regulation.
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