Structural and Computational Biology Unit, European Molecular Biology Laboratory (EMBL), Heidelberg, Germany.
Cell Biology and Biophysics Unit, EMBL, Heidelberg, Germany.
Nat Metab. 2024 Sep;6(9):1695-1711. doi: 10.1038/s42255-024-01118-4. Epub 2024 Sep 9.
While heterogeneity is a key feature of cancer, understanding metabolic heterogeneity at the single-cell level remains a challenge. Here we present C-SpaceM, a method for spatial single-cell isotope tracing that extends the previously published SpaceM method with detection of C-glucose-derived carbons in esterified fatty acids. We validated C-SpaceM on spatially heterogeneous models using liver cancer cells subjected to either normoxia-hypoxia or ATP citrate lyase depletion. This revealed substantial single-cell heterogeneity in labelling of the lipogenic acetyl-CoA pool and in relative fatty acid uptake versus synthesis hidden in bulk analyses. Analysing tumour-bearing brain tissue from mice fed a C-glucose-containing diet, we found higher glucose-dependent synthesis of saturated fatty acids and increased elongation of essential fatty acids in tumours compared with healthy brains. Furthermore, our analysis uncovered spatial heterogeneity in lipogenic acetyl-CoA pool labelling in tumours. Our method enhances spatial probing of metabolic activities in single cells and tissues, providing insights into fatty acid metabolism in homoeostasis and disease.
虽然异质性是癌症的一个关键特征,但在单细胞水平上理解代谢异质性仍然是一个挑战。在这里,我们提出了 C-SpaceM,这是一种用于空间单细胞同位素示踪的方法,它扩展了先前发表的 SpaceM 方法,可以检测酯化脂肪酸中的 C-葡萄糖衍生碳。我们在空间异质模型上验证了 C-SpaceM,这些模型使用的是经历正常氧-缺氧或三磷酸腺苷柠檬酸裂解酶耗竭的肝癌细胞。这揭示了在批量分析中隐藏的生脂乙酰辅酶 A 池标记和相对脂肪酸摄取与合成的大量单细胞异质性。分析来自喂食 C-葡萄糖饮食的小鼠的荷瘤脑组织,我们发现与健康大脑相比,肿瘤中葡萄糖依赖性合成饱和脂肪酸和必需脂肪酸的延长增加。此外,我们的分析揭示了肿瘤中生脂乙酰辅酶 A 池标记的空间异质性。我们的方法增强了对单细胞和组织中代谢活性的空间探测,为稳态和疾病中的脂肪酸代谢提供了深入了解。