Moreno-Sánchez R
J Biol Chem. 1985 Apr 10;260(7):4028-34.
The rate of oxidative phosphorylation was studied in rat liver mitochondria incubated with free Ca2+ concentrations that range from 10(-9) to 5 X 10(-6) M. The highest rate was observed between 0.5-1.0 microM Ca2+. ATP synthesis was measured by polarographic and spectrophotometric techniques and by uptake of radioactive inorganic phosphate. The concentration of Ca2+ at which maximal rates of ATP synthesis take place is modified by Mg2+ and phosphate. The dependence of oxidative phosphorylation on Ca2+ was observed with alpha-ketoglutarate, glutamate + malate, and succinate, but not with beta-hydroxybutyrate. At 10(-9) M Ca2+ there is a continuous exit of endogenous Ca2+, while with 10(-6) M Ca2+, intramitochondrial Ca2+ levels remained constant throughout time. Apparently the control of the level of internal Ca2+ by external Ca2+ modulates the rate of oxidative phosphorylation. Uncoupler-stimulated respiration also depends on Ca2+ concentration, even though at 10(-9) to 10(-6) M Ca2+ the rate of oxidative phosphorylation is lower than the rate of uncoupled respiration. The contribution of the ADP/ATP carrier and the ATP synthase to the kinetic regulation of ATP synthesis at 10(-9) and 10(-6) M Ca2+ was evaluated by titrations with carboxyatractyloside and oligomycin, respectively. The contribution of the carrier and the synthase to the regulation of the final rate of ATP synthesis was different at the two concentrations of Ca2+; therefore, the concentration of extramitochondrial Ca2+ influences the overall kinetics of oxidative phosphorylation.
在游离钙离子浓度范围为10⁻⁹至5×10⁻⁶M的条件下孵育大鼠肝线粒体,研究氧化磷酸化速率。在0.5 - 1.0微摩尔/升钙离子浓度之间观察到最高速率。通过极谱法、分光光度法技术以及放射性无机磷酸盐摄取来测定ATP合成。镁离子和磷酸盐会改变发生ATP合成最大速率时的钙离子浓度。观察到氧化磷酸化对钙离子的依赖性存在于α - 酮戊二酸、谷氨酸 + 苹果酸以及琥珀酸体系中,但在β - 羟基丁酸体系中未观察到。在10⁻⁹M钙离子浓度下,内源性钙离子持续外流,而在10⁻⁶M钙离子浓度下,线粒体内钙离子水平在整个时间段内保持恒定。显然,外部钙离子对线粒体内钙离子水平的控制调节了氧化磷酸化速率。解偶联剂刺激的呼吸作用也取决于钙离子浓度,尽管在10⁻⁹至10⁻⁶M钙离子浓度下,氧化磷酸化速率低于解偶联呼吸速率。分别用羧基苍术苷和寡霉素滴定,评估了ADP/ATP载体和ATP合酶在10⁻⁹M和10⁻⁶M钙离子浓度下对ATP合成动力学调节的贡献。在这两种钙离子浓度下,载体和合酶对ATP合成最终速率调节的贡献不同;因此,线粒体外钙离子浓度影响氧化磷酸化的整体动力学。