Chevrollier Arnaud, Loiseau Dominique, Chabi Béatrice, Renier Gilles, Douay Olivier, Malthièry Yves, Stepien Georges
Inserm, U694, Angers, F-49033, France.
J Bioenerg Biomembr. 2005 Oct;37(5):307-16. doi: 10.1007/s10863-005-8642-5.
The three adenine nucleotide translocator (ANT1 to ANT3) isoforms, differentially expressed in human cells, play a crucial role in cell bioenergetics by catalyzing ADP and ATP exchange across the mitochondrial inner membrane. In contrast to differentiated tissue cells, transformed cells, and their rho(0) derivatives, i.e. cells deprived of mitochondrial DNA, sustain a high rate of glycolysis. We compared the expression pattern of ANT isoforms in several transformed human cell lines at different stages of the cell cycle. The level of ANT2 expression and glycolytic ATP production in these cell lines were in keeping with their metabolic background and their state of differentiation. The sensitivity of the mitochondrial inner membrane potential (Deltapsi) to several inhibitors of glycolysis and oxidative phosphorylation confirmed this relationship. We propose a new model for ATP uptake in cancer cells implicating the ANT2 isoform, in conjunction with hexokinase II and the beta subunit of mitochondrial ATP synthase, in the Deltapsi maintenance and in the aggressiveness of cancer cells.
三种腺嘌呤核苷酸转位酶(ANT1至ANT3)同工型在人类细胞中差异表达,通过催化线粒体内膜上的ADP和ATP交换,在细胞生物能量学中发挥关键作用。与分化的组织细胞、转化细胞及其rho(0)衍生物(即缺乏线粒体DNA的细胞)不同,转化细胞维持着较高的糖酵解速率。我们比较了几种处于细胞周期不同阶段的转化人细胞系中ANT同工型的表达模式。这些细胞系中ANT2的表达水平和糖酵解ATP产量与其代谢背景和分化状态相符。线粒体内膜电位(Δψ)对几种糖酵解和氧化磷酸化抑制剂的敏感性证实了这种关系。我们提出了一种癌细胞中ATP摄取的新模型,该模型表明ANT2同工型与己糖激酶II和线粒体ATP合酶的β亚基一起,参与了Δψ的维持以及癌细胞的侵袭性。