Department of Bioenergetics, Adam Mickiewicz University, Umultowska, Poland.
Biol Chem. 2013 May;394(5):649-58. doi: 10.1515/hsz-2012-0326.
The influence of 4-hydroxy-2-nonenal (HNE), a lipid peroxidation end product, on the activity of the amoeba Acanthamoeba castellanii uncoupling protein (AcUCP) in isolated phosphorylating mitochondria was studied. Under phosphorylating conditions, exogenously added HNE induced GTP-sensitive AcUCP-mediated mitochondrial uncoupling. The HNE-induced proton leak decreased the yield of oxidative phosphorylation in an HNE concentration-dependent manner. The present study describes how the contributions of ATP synthase and HNE-induced AcUCP in phosphorylating respiration vary when the rate of succinate oxidation is decreased by limiting succinate uptake or inhibiting complex III activity within the range of a constant membrane potential. In phosphorylating mitochondria, at a given HNE concentration (100 μM), the efficiency of AcUCP in mitochondrial uncoupling increased as the respiratory rate decreased because the AcUCP contribution remained constant while the ATP synthase contribution decreased with the respiratory rate. HNE-induced uncoupling can be inhibited by GTP only when ubiquinone is sufficiently oxidized, indicating that in phosphorylating A. castellanii mitochondria, the sensitivity of AcUCP activity to GTP depends on the redox state of the membranous ubiquinone.
研究了脂质过氧化终产物 4-羟基-2-壬烯醛(HNE)对分离的磷酸化线粒体中变形虫(Acanthamoeba castellanii)解偶联蛋白(AcUCP)活性的影响。在磷酸化条件下,外源性添加的 HNE 诱导 GTP 敏感的 AcUCP 介导的线粒体解偶联。HNE 诱导的质子泄漏以 HNE 浓度依赖的方式降低氧化磷酸化的产率。本研究描述了当通过限制琥珀酸摄取或抑制范围内的复合物 III 活性来降低琥珀酸氧化速率时,ATP 合酶和 HNE 诱导的 AcUCP 在磷酸化呼吸中的贡献如何变化。在磷酸化线粒体中,在给定的 HNE 浓度(100 μM)下,由于 AcUCP 贡献保持不变而 ATP 合酶贡献随呼吸速率降低而降低,因此当呼吸速率降低时,AcUCP 在线粒体解偶联中的效率增加。只有当泛醌充分氧化时,GTP 才能抑制 HNE 诱导的解偶联,这表明在磷酸化的变形虫线粒体中,AcUCP 活性对 GTP 的敏感性取决于膜结合泛醌的氧化还原状态。