Department of Medical and Biological Sciences, MATI Centre of Excellence University of Udine, p.le Kolbe4, 33100 Udine, Italy.
J Bioenerg Biomembr. 2011 Oct;43(5):493-505. doi: 10.1007/s10863-011-9380-5. Epub 2011 Sep 1.
The classical view of tumour cell bioenergetics has been recently revised. Then, the definition of the mitochondrial profile is considered of fundamental importance for the development of anti-cancer therapies, but it still needs to be clarified. We investigated two human hepatocellular carcinoma cell lines: the partially differentiated HepG2 and the undifferentiated JHH-6. High resolution respirometry revealed a marked impairment/uncoupling of OXPHOS in JHH-6 compared with HepG2, with the phosphorylation system limiting the capacity for electron transport much more in JHH-6. Blocking glycolysis or mitochondrial ATP synthase we demonstrated that in JHH-6 ATP synthase functions in reverse and consumes glycolytic ATP, thereby sustaining ΔΨm. A higher expression level of ATP synthase Inhibitor Factor 1 (IF1), a higher extent of IF1 bound to ATP synthase and a lower ATPase/synthase capacity were documented in JHH-6. Thus, here IF1 appears to down-regulate the reverse mode of ATPsynthase activity, thereby playing a crucial role in controlling energy waste and ΔΨm. These results, while confirming the over-expression of IF1 in cancer cells, are the first to indicate an inverse link between cell differentiation status and IF1 (expression level and regulatory function).
肿瘤细胞生物能量学的经典观点最近得到了修正。因此,线粒体特征的定义对于开发抗癌疗法具有重要意义,但仍需要进一步阐明。我们研究了两种人肝癌细胞系:部分分化的 HepG2 和未分化的 JHH-6。高分辨率呼吸测定法显示,与 HepG2 相比,JHH-6 的氧化磷酸化(OXPHOS)明显受损/解偶联,磷酸化系统在 JHH-6 中更能限制电子传递的能力。阻断糖酵解或线粒体 ATP 合酶,我们证明在 JHH-6 中,ATP 合酶反向作用并消耗糖酵解 ATP,从而维持 ΔΨm。在 JHH-6 中记录到 ATP 合酶抑制剂因子 1 (IF1) 的表达水平更高、IF1 与 ATP 合酶结合的程度更高以及 ATP 酶/合酶的能力更低。因此,IF1 似乎在这里下调了 ATPsynthase 活性的反向模式,从而在控制能量浪费和 ΔΨm 方面发挥了关键作用。这些结果虽然证实了 IF1 在癌细胞中的过度表达,但首次表明细胞分化状态与 IF1(表达水平和调节功能)之间存在反比关系。