Bodrova M E, Brailovskaya I V, Efron G I, Starkov A A, Mokhova E N
Belozersky Institute for Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, 119992, Russia.
Biochemistry (Mosc). 2003 Apr;68(4):391-8. doi: 10.1023/a:1023691628110.
At low Ca2+ concentrations the pore of the inner mitochondrial membrane can open in substates with lower permeability (Hunter, D. R., and Haworth, R. A. (1979) Arch. Biochem. Biophys., 195, 468-477). Recently, we showed that Ca2+ loading of mitochondria augments the cyclosporin A-dependent decrease in transmembrane potential (DeltaPsi) across the inner mitochondrial membrane caused by 10 micro M myristic acid but does not affect the stimulation of respiration by this fatty acid. We have proposed that in our experiments the pore opened in a substate with lower permeability rather than in the "classic" state (Bodrova, M. E., et al. (2000) IUBMB Life, 50, 189-194). Here we show that under conditions lowering the probability of "classic pore" opening in Ca2+-loaded mitochondria myristic acid induces the cyclosporin A-sensitive DeltaPsi decrease and mitochondrial swelling more effectively than uncoupler SF6847 does, though their protonophoric activities are equal. In the absence of P(i) and presence of succinate and rotenone (with or without glutamate) cyclosporin A either reversed or only stopped DeltaPsi decrease induced by 5 micro M myristic acid and 5 micro M Ca2+. In the last case nigericin, when added after cyclosporin A, reversed the DeltaPsi decrease, and the following addition of EGTA produced only a weak (if any) DeltaPsi increase. In P(i)-containing medium (in the presence of glutamate and malate) cyclosporin A reversed the DeltaPsi decrease. These data show that the cyclosporin A-sensitive decrease in DeltaPsi by low concentrations of fatty acids and Ca2+ cannot be explained by specific uncoupling effect of fatty acid. We propose that: 1) low concentrations of Ca2+ and fatty acid induce the pore opening in a substate with a selective cation permeability, and the cyclosporin A-sensitive DeltaPsi decrease results from a conversion of DeltaPsi to pH gradient due to the electrogenic cation transport in mitochondria; 2) the ADP/ATP-antiporter is involved in this process; 3) higher efficiency of fatty acid compared to SF6847 in the Ca2+-dependent pore opening seems to be due to its interaction with the nucleotide-binding site of the ADP/ATP-antiporter and higher affinity of fatty acids to cations.
在低钙离子浓度下,线粒体内膜孔可在通透性较低的亚状态下开放(Hunter, D. R., and Haworth, R. A. (1979) Arch. Biochem. Biophys., 195, 468 - 477)。最近,我们发现线粒体钙离子加载增强了环孢素A依赖的线粒体内膜跨膜电位(ΔΨ)的降低,该降低由10 μM肉豆蔻酸引起,但不影响该脂肪酸对呼吸的刺激作用。我们提出,在我们的实验中,孔是在通透性较低的亚状态下开放,而非在“经典”状态下开放(Bodrova, M. E., et al. (2000) IUBMB Life, 50, 189 - 194)。在此我们表明,在降低钙离子加载的线粒体中“经典孔”开放概率的条件下,肉豆蔻酸比解偶联剂SF6847更有效地诱导环孢素A敏感的ΔΨ降低和线粒体肿胀,尽管它们的质子载体活性相同。在无无机磷酸(P(i))、存在琥珀酸和鱼藤酮(有或无谷氨酸)时,环孢素A要么逆转要么仅阻止由5 μM肉豆蔻酸和5 μM钙离子诱导的ΔΨ降低。在最后一种情况下,尼日利亚菌素在环孢素A之后添加时,可逆转ΔΨ降低,随后添加乙二醇双乙醚四乙酸(EGTA)仅产生微弱(若有的话)的ΔΨ升高。在含P(i)的培养基中(存在谷氨酸和苹果酸),环孢素A可逆转ΔΨ降低。这些数据表明,低浓度脂肪酸和钙离子引起的环孢素A敏感的ΔΨ降低不能用脂肪酸的特异性解偶联作用来解释。我们提出:1)低浓度的钙离子和脂肪酸诱导具有选择性阳离子通透性的亚状态下孔的开放,环孢素A敏感的ΔΨ降低是由于线粒体内阳离子的电转运导致ΔΨ转化为pH梯度所致;2)二磷酸腺苷/三磷酸腺苷反向转运体参与此过程;3)在钙离子依赖的孔开放中,脂肪酸比SF6847效率更高似乎是由于其与二磷酸腺苷/三磷酸腺苷反向转运体的核苷酸结合位点相互作用以及脂肪酸对阳离子的更高亲和力。