Belyaeva Elena A, Korotkov Sergey M
Sechenov Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Sciences, Thorez pr44, 194223, St. Petersburg, Russia.
Toxicol Appl Pharmacol. 2003 Oct 1;192(1):56-68. doi: 10.1016/s0041-008x(03)00255-2.
We attempted to discern discrete sites of Cd2+ deleterious action on rat liver mitochondrial function. In particular, EGTA, ADP, and cyclosporin A (potent mitochondrial permeability transition antagonists) affected mainly Cd2+-induced changes in resting state respiration, eliminating its stimulation in KCl medium, while dithiothreitol (DTT, a dithiol reductant) produced its effect both on Cd2+ activation of the basal respiration and Cd2+ depression of uncoupler-stimulated respiration, evoking its restoration. Substantial differences in DTT influence on mitochondrial respiration at low and high [Cd2+] were revealed, namely, an enhanced mitochondrial permeabilization in the presence of saturated [DTT] at high [Cd2+] took place. Besides, DTT only partially reversed Cd2+-induced swelling in NH4NO3 medium when glutamate plus malate or succinate without rotenone was used. Contrarily, DTT produced complete reversal of the swelling of succinate-energized mitochondria when rotenone was present in the medium. In addition, in the presence of rotenone both Cd2+-produced activation of the resting state respiration in KCl medium and Cd2+-induced swelling in sucrose medium of succinate-energized mitochondria were more sensitive to cyclosporin A than the same Cd2+ effects obtained on mitochondria oxidizing succinate (without rotenone) or glutamate plus malate. We have concluded that Cd2+, producing primary mitochondrial dysfunction, acts both as a thiol and Me2+ binding site reagent. Suppositions about possible localization of separate sites of direct Cd2+ effects on mitochondrial function were made.
我们试图辨别镉离子对大鼠肝脏线粒体功能产生有害作用的离散位点。具体而言,乙二醇双四乙酸(EGTA)、二磷酸腺苷(ADP)和环孢菌素A(强效线粒体通透性转换拮抗剂)主要影响镉离子诱导的静息态呼吸变化,消除其在氯化钾介质中的刺激作用,而二硫苏糖醇(DTT,一种二硫醇还原剂)对镉离子激活的基础呼吸和镉离子抑制的解偶联剂刺激呼吸均有作用,使其恢复。研究揭示了低镉离子浓度和高镉离子浓度下DTT对线粒体呼吸影响的显著差异,即在高镉离子浓度下,饱和DTT存在时线粒体通透性增强。此外,当使用谷氨酸加苹果酸或琥珀酸且无鱼藤酮的情况下,DTT仅部分逆转了硝酸铵介质中镉离子诱导的肿胀。相反,当介质中存在鱼藤酮时,DTT可使琥珀酸供能的线粒体肿胀完全逆转。另外,在存在鱼藤酮的情况下,镉离子在氯化钾介质中激活静息态呼吸以及在蔗糖介质中诱导琥珀酸供能的线粒体肿胀,相比于镉离子对氧化琥珀酸(无鱼藤酮)或谷氨酸加苹果酸的线粒体产生的相同影响,对环孢菌素A更为敏感。我们得出结论,产生原发性线粒体功能障碍的镉离子既作为硫醇结合位点试剂,又作为二价金属离子结合位点试剂。我们还对镉离子直接影响线粒体功能的各个位点的可能定位进行了推测。