Narayanan Ashwin, Saurty-Seerunghen Mirca S, Michieletto Jessica, Delaunay Virgile, Bruneel Arnaud, Dupré Thierry, Ottolenghi Chris, Pontoizeau Clément, Ciccone Lucrezia, De La Vara Andreas, Idbaih Ahmed, Turchi Laurent, Virolle Thierry, Chneiweiss Hervé, Junier Marie-Pierre, El-Habr Elias A
Sorbonne Université, CNRS, INSERM, Institut de Biologie Paris Seine, Center for Neuroscience at Sorbonne Université, 7 Quai Saint-Bernard, 75005, Paris, France.
QV Bioelectronics Ltd., 21LGA, Alderley Park, Nether Alderley, Cheshire, SK10 4TG, UK.
Cell Mol Life Sci. 2025 Mar 21;82(1):126. doi: 10.1007/s00018-025-05641-9.
Recent studies show that metabolites, beyond their metabolic roles, can induce significant changes in cell behavior. Herein, we investigate the non-canonical role of nicotinamide (vitamin B3) on glioblastoma (GB) cell behavior. Nicotinamide induced senescence in GB cells, characterized by reduced proliferation, chromatin reorganization, increased DNA damage, enhanced beta-galactosidase activity, and decreased Lamin B1 expression. Nicotinamide-induced senescence was accompanied by an unexpected reprogramming of its metabolism, marked by simultaneous downregulated transcription of NNMT (nicotinamide N-methyltransferase) and NAMPT (nicotinamide phosphoribosyl-transferase). Nicotinamide effects on GB cells were mediated by decreased levels of SOX2. Consistently, analyses of patients' single cell transcriptome datasets showed that GB cells with low NNMT and NAMPT expression levels were enriched in gene modules related to senescence. Remarkably, senescent GB cells retained tumor-forming ability in vivo, albeit to a lesser extent compared to control cells. Further experiments at the single-cell level and transcriptomic analyses demonstrated that nicotinamide-induced senescence in GB cells is fully reversible. Overall, our findings identify a novel reversible senescent state in GB tumors and highlight the non-canonical role of nicotinamide as a key driver of cancer cell plasticity.
最近的研究表明,代谢物除了具有代谢作用外,还能诱导细胞行为发生显著变化。在此,我们研究了烟酰胺(维生素B3)对胶质母细胞瘤(GB)细胞行为的非经典作用。烟酰胺诱导GB细胞衰老,其特征为增殖减少、染色质重组、DNA损伤增加、β-半乳糖苷酶活性增强以及核纤层蛋白B1表达降低。烟酰胺诱导的衰老伴随着其代谢的意外重编程,其标志是NNMT(烟酰胺N-甲基转移酶)和NAMPT(烟酰胺磷酸核糖基转移酶)的转录同时下调。烟酰胺对GB细胞的作用是由SOX2水平降低介导的。一致地,对患者单细胞转录组数据集的分析表明,NNMT和NAMPT表达水平低的GB细胞在与衰老相关的基因模块中富集。值得注意的是,衰老的GB细胞在体内保留了肿瘤形成能力,尽管与对照细胞相比程度较小。在单细胞水平上的进一步实验和转录组分析表明,烟酰胺诱导的GB细胞衰老完全可逆。总体而言,我们的研究结果确定了GB肿瘤中一种新的可逆衰老状态,并突出了烟酰胺作为癌细胞可塑性关键驱动因素的非经典作用。