Stäubert Claudia, Krakowsky Rosanna, Bhuiyan Hasanuzzaman, Witek Barbara, Lindahl Anna, Broom Oliver, Nordström Anders
Department of Molecular Biology, Umeå University, 90187, Umeå, Sweden.
Department of Forest Genetics and Plant Physiology, Swedish Metabolomics Centre, Swedish University of Agricultural Sciences, Umeå, Sweden.
Med Oncol. 2016 Jan;33(1):6. doi: 10.1007/s12032-015-0717-5. Epub 2015 Dec 23.
The cholesterol metabolism is essential for cancer cell proliferation. We found the expression of genes involved in the cholesterol biosynthesis pathway up-regulated in the daunorubicin-resistant leukemia cell line CEM/R2, which is a daughter cell line to the leukemia cell line CCRF-CEM (CEM). Cellular (2)H2O labelling, mass spectrometry, and isotopomer analysis revealed an increase in lanosterol synthesis which was not accompanied by an increase in cholesterol flux or pool size in CEM/R2 cells. Exogenous addition of lanosterol had a negative effect on CEM/R2 and a positive effect on sensitive CEM cell viability. Treatment of CEM and CEM/R2 cells with cholesterol biosynthesis inhibitors acting on the enzymes squalene epoxidase and lanosterol synthase, both also involved in the 24,25-epoxycholesterol shunt pathway, revealed a connection of this pathway to lanosterol turnover. Our data highlight that an increased lanosterol flux poses a metabolic weakness of resistant cells that potentially could be therapeutically exploited.
胆固醇代谢对癌细胞增殖至关重要。我们发现,在柔红霉素耐药白血病细胞系CEM/R2中,参与胆固醇生物合成途径的基因表达上调,该细胞系是白血病细胞系CCRF-CEM(CEM)的子代细胞系。细胞(2)H2O标记、质谱分析和同位素异构体分析显示,羊毛甾醇合成增加,但CEM/R2细胞中的胆固醇通量或池大小并未增加。外源性添加羊毛甾醇对CEM/R2细胞有负面影响,对敏感的CEM细胞活力有正面影响。用作用于角鲨烯环氧酶和羊毛甾醇合酶的胆固醇生物合成抑制剂处理CEM和CEM/R2细胞,这两种酶也参与24,25-环氧胆固醇分流途径,结果揭示了该途径与羊毛甾醇周转的联系。我们的数据突出表明,增加的羊毛甾醇通量构成了耐药细胞的代谢弱点,这可能在治疗上得到利用。