Zhang Hefei, Li Xuhang, Tseyang L Tenzin, Giese Gabrielle E, Wang Hui, Yao Bo, Zhang Jingyan, Neve Rachel L, Shank Elizabeth A, Spinelli Jessica B, Yilmaz L Safak, Walhout Albertha J M
Department of Systems Biology, University of Massachusetts Chan Medical School, Worcester, MA, USA.
Department of Molecular Medicine, University of Massachusetts Chan Medical School, Worcester, MA, USA.
Nature. 2025 Apr;640(8057):194-202. doi: 10.1038/s41586-025-08635-6. Epub 2025 Feb 26.
Metabolic flux, or the rate of metabolic reactions, is one of the most fundamental metrics describing the status of metabolism in living organisms. However, measuring fluxes across the entire metabolic network remains nearly impossible, especially in multicellular organisms. Computational methods based on flux balance analysis have been used with genome-scale metabolic network models to predict network-level flux wiring. However, such approaches have limited power because of the lack of experimental constraints. Here, we introduce a strategy that infers whole-animal metabolic flux wiring from transcriptional phenotypes in the nematode Caenorhabditis elegans. Using a large-scale Worm Perturb-Seq (WPS) dataset for roughly 900 metabolic genes, we show that the transcriptional response to metabolic gene perturbations can be integrated with the metabolic network model to infer a highly constrained, semi-quantitative flux distribution. We discover several features of adult C. elegans metabolism, including cyclic flux through the pentose phosphate pathway, lack of de novo purine synthesis flux and the primary use of amino acids and bacterial RNA as a tricarboxylic acid cycle carbon source, all of which we validate by stable isotope tracing. Our strategy for inferring metabolic wiring based on transcriptional phenotypes should be applicable to a variety of systems, including human cells.
代谢通量,即代谢反应的速率,是描述生物体代谢状态的最基本指标之一。然而,测量整个代谢网络的通量几乎仍然是不可能的,尤其是在多细胞生物中。基于通量平衡分析的计算方法已与基因组规模的代谢网络模型一起用于预测网络水平的通量连接。然而,由于缺乏实验约束,这些方法的能力有限。在这里,我们介绍一种从线虫秀丽隐杆线虫的转录表型推断全动物代谢通量连接的策略。利用一个针对大约900个代谢基因的大规模蠕虫扰动测序(WPS)数据集,我们表明对代谢基因扰动的转录反应可以与代谢网络模型相结合,以推断出高度受限的半定量通量分布。我们发现了成年秀丽隐杆线虫代谢的几个特征,包括通过磷酸戊糖途径的循环通量、缺乏从头嘌呤合成通量以及主要使用氨基酸和细菌RNA作为三羧酸循环碳源,所有这些我们都通过稳定同位素示踪进行了验证。我们基于转录表型推断代谢连接的策略应该适用于各种系统,包括人类细胞。