Santiappillai Nancy T, Cao Yue, Hakeem-Sanni Mariam F, Yang Jean, Quek Lake-Ee, Hoy Andrew J
School of Medical Sciences, Charles Perkins Centre, Faculty of Medicine and Health, The University of Sydney, Sydney, New South Wales, 2006, Australia.
Radiology, and Molecular Pharmacology Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Mol Syst Biol. 2025 Jun 5. doi: 10.1038/s44320-025-00099-0.
Large-scale metabolomic analyses of pan-cancer cell line panels have provided significant insights into the relationships between metabolism and cancer cell biology. Here, we took a pathway-centric approach by transforming targeted metabolomic data into ratios to study associations between reactant and product metabolites in a panel of cancer and non-cancer cell lines. We identified five clusters of cells from various tissue origins. Of these, cells in Cluster 4 had high ratios of TCA cycle metabolites relative to pyruvate, produced more lactate yet consumed less glucose and glutamine, and greater OXPHOS activity compared to Cluster 3 cells with low TCA cycle metabolite ratios. This was due to more glutamine cataplerotic efflux and not glycolysis in cells of Cluster 4. In silico analyses of loss-of-function and drug sensitivity screens showed that Cluster 4 cells were more susceptible to gene deletion and drug targeting of glutamine metabolism and OXPHOS than cells in Cluster 3. Our results highlight the potential of pathway-centric approaches to reveal new aspects of cellular metabolism from metabolomic data.
对泛癌细胞系面板进行的大规模代谢组学分析,为代谢与癌细胞生物学之间的关系提供了重要见解。在此,我们采用了一种以通路为中心的方法,将靶向代谢组学数据转化为比率,以研究一组癌细胞系和非癌细胞系中反应物和产物代谢物之间的关联。我们从不同组织来源中识别出了五组细胞。其中,第4组细胞的三羧酸循环(TCA)代谢物与丙酮酸的比率较高,产生的乳酸更多,但消耗的葡萄糖和谷氨酰胺更少,与三羧酸循环代谢物比率较低的第3组细胞相比,其氧化磷酸化(OXPHOS)活性更高。这是由于第4组细胞中谷氨酰胺的分解代谢流出更多,而非糖酵解。对功能丧失和药物敏感性筛选的计算机模拟分析表明,与第3组细胞相比,第4组细胞对谷氨酰胺代谢和氧化磷酸化的基因缺失和药物靶向更敏感。我们的结果突出了以通路为中心的方法从代谢组学数据中揭示细胞代谢新方面的潜力。