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通过基因组规模代谢建模鉴定人类癌细胞系的抗生长因子

Identifying anti-growth factors for human cancer cell lines through genome-scale metabolic modeling.

作者信息

Ghaffari Pouyan, Mardinoglu Adil, Asplund Anna, Shoaie Saeed, Kampf Caroline, Uhlen Mathias, Nielsen Jens

机构信息

Department of Biology and Biological Engineering, Chalmers University of Technology, SE-412 96, Gothenburg, Sweden.

Department of Immunology, Genetics and Pathology, Science for Life Laboratory, Uppsala University, SE-751 85, Uppsala, Sweden.

出版信息

Sci Rep. 2015 Feb 2;5:8183. doi: 10.1038/srep08183.

Abstract

Human cancer cell lines are used as important model systems to study molecular mechanisms associated with tumor growth, hereunder how genomic and biological heterogeneity found in primary tumors affect cellular phenotypes. We reconstructed Genome scale metabolic models (GEMs) for eleven cell lines based on RNA-Seq data and validated the functionality of these models with data from metabolite profiling. We used cell line-specific GEMs to analyze the differences in the metabolism of cancer cell lines, and to explore the heterogeneous expression of the metabolic subsystems. Furthermore, we predicted 85 antimetabolites that can inhibit growth of, or even kill, any of the cell lines, while at the same time not being toxic for 83 different healthy human cell types. 60 of these antimetabolites were found to inhibit growth in all cell lines. Finally, we experimentally validated one of the predicted antimetabolites using two cell lines with different phenotypic origins, and found that it is effective in inhibiting the growth of these cell lines. Using immunohistochemistry, we also showed high or moderate expression levels of proteins targeted by the validated antimetabolite. Identified anti-growth factors for inhibition of cell growth may provide leads for the development of efficient cancer treatment strategies.

摘要

人类癌细胞系被用作重要的模型系统,以研究与肿瘤生长相关的分子机制,包括原发性肿瘤中发现的基因组和生物学异质性如何影响细胞表型。我们基于RNA测序数据为11个细胞系重建了基因组规模代谢模型(GEMs),并利用代谢物谱分析数据验证了这些模型的功能。我们使用细胞系特异性GEMs分析癌细胞系代谢的差异,并探索代谢子系统的异质性表达。此外,我们预测了85种抗代谢物,它们可以抑制或杀死任何一种细胞系,同时对83种不同的健康人类细胞类型无毒。其中60种抗代谢物被发现能抑制所有细胞系的生长。最后,我们使用两种具有不同表型起源的细胞系对一种预测的抗代谢物进行了实验验证,发现它能有效抑制这些细胞系的生长。通过免疫组织化学,我们还显示了经验证的抗代谢物靶向的蛋白质的高表达或中等表达水平。鉴定出的抑制细胞生长的抗生长因子可能为开发有效的癌症治疗策略提供线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b18/4313100/30c08e469988/srep08183-f2.jpg

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