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模型驱动发现异质性前列腺癌细胞中长链脂肪酸代谢重编程

Model-driven discovery of long-chain fatty acid metabolic reprogramming in heterogeneous prostate cancer cells.

作者信息

Marín de Mas Igor, Aguilar Esther, Zodda Erika, Balcells Cristina, Marin Silvia, Dallmann Guido, Thomson Timothy M, Papp Balázs, Cascante Marta

机构信息

Department of Biochemistry and Molecular Biomedicine, Faculty of Biology, Universitat de Barcelona, Barcelona, Spain.

Institute of Biomedicine of University of Barcelona (IBUB) and Associated Unit with CSIC, Barcelona, Spain.

出版信息

PLoS Comput Biol. 2018 Jan 2;14(1):e1005914. doi: 10.1371/journal.pcbi.1005914. eCollection 2018 Jan.

Abstract

Epithelial-mesenchymal-transition promotes intra-tumoral heterogeneity, by enhancing tumor cell invasiveness and promoting drug resistance. We integrated transcriptomic data for two clonal subpopulations from a prostate cancer cell line (PC-3) into a genome-scale metabolic network model to explore their metabolic differences and potential vulnerabilities. In this dual cell model, PC-3/S cells express Epithelial-mesenchymal-transition markers and display high invasiveness and low metastatic potential, while PC-3/M cells present the opposite phenotype and higher proliferative rate. Model-driven analysis and experimental validations unveiled a marked metabolic reprogramming in long-chain fatty acids metabolism. While PC-3/M cells showed an enhanced entry of long-chain fatty acids into the mitochondria, PC-3/S cells used long-chain fatty acids as precursors of eicosanoid metabolism. We suggest that this metabolic reprogramming endows PC-3/M cells with augmented energy metabolism for fast proliferation and PC-3/S cells with increased eicosanoid production impacting angiogenesis, cell adhesion and invasion. PC-3/S metabolism also promotes the accumulation of docosahexaenoic acid, a long-chain fatty acid with antiproliferative effects. The potential therapeutic significance of our model was supported by a differential sensitivity of PC-3/M cells to etomoxir, an inhibitor of long-chain fatty acid transport to the mitochondria.

摘要

上皮-间质转化通过增强肿瘤细胞的侵袭性和促进耐药性来促进肿瘤内异质性。我们将来自前列腺癌细胞系(PC-3)的两个克隆亚群的转录组数据整合到一个基因组规模的代谢网络模型中,以探索它们的代谢差异和潜在的脆弱性。在这个双细胞模型中,PC-3/S细胞表达上皮-间质转化标志物,表现出高侵袭性和低转移潜能,而PC-3/M细胞呈现相反的表型和更高的增殖率。模型驱动的分析和实验验证揭示了长链脂肪酸代谢中显著的代谢重编程。虽然PC-3/M细胞显示长链脂肪酸进入线粒体的能力增强,但PC-3/S细胞将长链脂肪酸用作类花生酸代谢的前体。我们认为,这种代谢重编程赋予PC-3/M细胞增强的能量代谢以实现快速增殖,并赋予PC-3/S细胞增加类花生酸的产生,从而影响血管生成、细胞粘附和侵袭。PC-3/S的代谢还促进了二十二碳六烯酸的积累,二十二碳六烯酸是一种具有抗增殖作用的长链脂肪酸。PC-3/M细胞对长链脂肪酸向线粒体转运的抑制剂依托莫昔芬的敏感性差异支持了我们模型的潜在治疗意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d59/5766231/3c5de145d856/pcbi.1005914.g001.jpg

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