Weill Medical College of Cornell University, New York, NY 10021, USA.
FEBS J. 2011 Apr;278(7):1112-25. doi: 10.1111/j.1742-4658.2011.08026.x. Epub 2011 Feb 23.
Cyclophilin D was recently shown to bind to and decrease the activity of F(0)F(1)-ATP synthase in submitochondrial particles and permeabilized mitochondria [Giorgio V et al. (2009) J Biol Chem, 284, 33982-33988]. Cyclophilin D binding decreased both ATP synthesis and hydrolysis rates. In the present study, we reaffirm these findings by demonstrating that, in intact mouse liver mitochondria energized by ATP, the absence of cyclophilin D or the presence of cyclosporin A led to a decrease in the extent of uncoupler-induced depolarization. Accordingly, in substrate-energized mitochondria, an increase in F(0)F(1)-ATP synthase activity mediated by a relief of inhibition by cyclophilin D was evident in the form of slightly increased respiration rates during arsenolysis. However, the modulation of F(0)F(1)-ATP synthase by cyclophilin D did not increase the adenine nucleotide translocase (ANT)-mediated ATP efflux rate in energized mitochondria or the ATP influx rate in de-energized mitochondria. The lack of an effect of cyclophilin D on the ANT-mediated adenine nucleotide exchange rate was attributed to the ∼ 2.2-fold lower flux control coefficient of the F(0)F(1)-ATP synthase than that of ANT, as deduced from measurements of adenine nucleotide flux rates in intact mitochondria. These findings were further supported by a recent kinetic model of the mitochondrial phosphorylation system, suggesting that an ∼ 30% change in F(0)F(1)-ATP synthase activity in fully energized or fully de-energized mitochondria affects the ADP-ATP exchange rate mediated by the ANT in the range 1.38-1.7%. We conclude that, in mitochondria exhibiting intact inner membranes, the absence of cyclophilin D or the inhibition of its binding to F(0)F(1)-ATP synthase by cyclosporin A will affect only matrix adenine nucleotides levels.
亲环素 D 最近被证明可与线粒体基质中的 F(0)F(1)-ATP 合酶结合并降低其活性[Giorgio V 等人,(2009)J Biol Chem,284,33982-33988]。亲环素 D 与 F(0)F(1)-ATP 合酶的结合降低了 ATP 的合成和水解速率。在本研究中,我们通过证明在由 ATP 供能的完整小鼠肝线粒体中,亲环素 D 的缺失或环孢素 A 的存在导致解偶联剂诱导的去极化程度降低,再次证实了这些发现。因此,在底物供能的线粒体中,亲环素 D 介导的抑制作用的解除可使 F(0)F(1)-ATP 合酶活性增加,这表现为在砷酸盐解偶联期间呼吸速率略有增加。然而,亲环素 D 对 F(0)F(1)-ATP 合酶的调节并没有增加供能线粒体中嘌呤核苷酸转运体(ANT)介导的 ATP 外排率或去能线粒体中的 ATP 内流率。亲环素 D 对 ANT 介导的嘌呤核苷酸交换率没有影响,这归因于 F(0)F(1)-ATP 合酶的通量控制系数比 ANT 低约 2.2 倍,这是从完整线粒体中嘌呤核苷酸通量率的测量中推断出来的。这些发现得到了最近的线粒体磷酸化系统动力学模型的进一步支持,该模型表明,在完全供能或完全去能的线粒体中,F(0)F(1)-ATP 合酶活性的约 30%变化会影响 ANT 介导的 ADP-ATP 交换率在 1.38-1.7%的范围内。我们得出结论,在具有完整内膜的线粒体中,亲环素 D 的缺失或其与 F(0)F(1)-ATP 合酶的结合被环孢素 A 抑制,只会影响基质中腺嘌呤核苷酸的水平。