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基于稳定同位素的丁酸盐诱导HT29细胞分化的动态代谢谱

The stable isotope-based dynamic metabolic profile of butyrate-induced HT29 cell differentiation.

作者信息

Boren Joan, Lee Wai-Nang Paul, Bassilian Sara, Centelles Josep Joan, Lim Shu, Ahmed Sayed, Boros László G, Cascante Marta

机构信息

Department of Biochemistry and Molecular Biology, Centre Recerca en Química Teòrica-Parc Cientific de Barcelona, Institut d'Investigacions Biomèdiques August Pi i Sunyer, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Catalonia, Spain.

出版信息

J Biol Chem. 2003 Aug 1;278(31):28395-402. doi: 10.1074/jbc.M302932200. Epub 2003 May 15.

Abstract

Stable isotope-based dynamic metabolic profiling is applied in this paper to elucidate the mechanism by which butyrate induces cell differentiation in HT29 cells. We utilized butyrate-sensitive (HT29) cells incubated with [1,2-13C2]glucose or [1,2-13C2]butyrate as single tracers to observe the changes in metabolic fluxes in these cells. In HT29 cells, increasing concentrations of butyrate inhibited glucose uptake, glucose oxidation, and nucleic acid ribose synthesis in a dose-dependent fashion. Glucose carbon utilization for de novo fatty acid synthesis and tricarboxylic acid cycle flux was replaced by butyrate. We also demonstrated that these changes are not present in butyrate-resistant pancreatic adenocarcinoma MIA cells. The results suggest that the mechanism by which colon carcinoma cells acquire a differentiated phenotype is through a replacement of glucose for butyrate as the main carbon source for macromolecule biosynthesis and energy production. This provides a better understanding of cell differentiation through metabolic adaptive changes in response to butyrate in HT29 cells, demonstrating that variations in metabolic pathway substrate flow are powerful regulators of tumor cell proliferation and differentiation.

摘要

本文应用基于稳定同位素的动态代谢谱分析来阐明丁酸盐诱导HT29细胞分化的机制。我们利用对丁酸盐敏感的(HT29)细胞,分别用[1,2-13C2]葡萄糖或[1,2-13C2]丁酸盐作为单一示踪剂进行孵育,以观察这些细胞中代谢通量的变化。在HT29细胞中,丁酸盐浓度的增加以剂量依赖的方式抑制葡萄糖摄取、葡萄糖氧化和核酸核糖合成。从头合成脂肪酸和三羧酸循环通量的葡萄糖碳利用被丁酸盐所取代。我们还证明,这些变化在对丁酸盐耐药的胰腺腺癌MIA细胞中不存在。结果表明,结肠癌细胞获得分化表型的机制是通过用丁酸盐替代葡萄糖作为大分子生物合成和能量产生的主要碳源。这有助于更好地理解HT29细胞通过对丁酸盐的代谢适应性变化实现细胞分化,表明代谢途径底物流量的变化是肿瘤细胞增殖和分化的有力调节因子。

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