Dipartimento di Scienze e Tecnologie, Università Degli Studi Di Napoli Parthenope, via Acton n. 38, -I-80133, Napoli, Italy.
Dipartimento di Biologia, Università di Napoli "Federico II," Complesso Universitario Monte Sant'Angelo, Via Cinthia, 80126, Napoli, Italy.
J Physiol Biochem. 2022 May;78(2):415-425. doi: 10.1007/s13105-022-00882-9. Epub 2022 Mar 3.
The antioxidant role of mitochondrial uncoupling protein 3 (UCP3) is controversial. This work aimed to investigate the effects of UCP3 on the heart of mice housed at thermoneutral temperature, an experimental condition that avoids the effects of thermoregulation on mitochondrial activity and redox homeostasis, preventing the alterations related to these processes from confusing the results caused by the lack of UCP3. WT and KO UCP3 mice were acclimatized at 30 °C for 4 weeks and hearts were used to evaluate metabolic capacity and redox state. Tissue and mitochondrial respiration, the activities of the mitochondrial complexes, and the protein expression of mitochondrial complexes markers furnished information on mitochondrial functionality. The levels of lipid and protein oxidative damage markers, the activity of antioxidant enzymes, the reactive oxygen species levels, and the susceptibility to in vitro Fe-ascorbate-induced oxidative stress furnished information on redox state. UCP3 ablation reduced tissue and mitochondrial respiratory capacities, not affecting the mitochondrial content. In KO UCP3 mice, the mitochondrial complexes activities were lower than in WT without changes in their content. These effects were accompanied by an increase in the level of oxidative stress markers, ROS content, and in vitro susceptibility to oxidative stress, notwithstanding that the activities of antioxidant enzymes were not affected by UCP3 ablation. Such modifications are also associated with enhanced activation/phosphorylation of EIF2α, a marker of integrated stress response and endoplasmic reticulum stress (GRP778 BIP). The lack of UCP3 makes the heart more prone to oxidative insult by reducing oxygen consumption and increasing ROS. Our results demonstrate that UCP3 helps the cell to preserve mitochondrial function by mitigating oxidative stress.
线粒体解偶联蛋白 3(UCP3)的抗氧化作用存在争议。本研究旨在探讨 UCP3 对处于热中性温度(thermoneutral temperature)下的小鼠心脏的影响,这种实验条件可避免体温调节对线粒体活性和氧化还原平衡的影响,防止与这些过程相关的改变混淆因缺乏 UCP3 而导致的结果。WT 和 KO UCP3 小鼠在 30°C 下适应 4 周,然后使用心脏评估代谢能力和氧化还原状态。组织和线粒体呼吸、线粒体复合物的活性、以及线粒体复合物标志物的蛋白表达提供了有关线粒体功能的信息。脂质和蛋白质氧化损伤标志物的水平、抗氧化酶的活性、活性氧(ROS)水平以及对体外 Fe-抗坏血酸诱导的氧化应激的敏感性提供了氧化还原状态的信息。UCP3 缺失降低了组织和线粒体呼吸能力,但不影响线粒体含量。在 KO UCP3 小鼠中,线粒体复合物的活性低于 WT,但其含量没有变化。这些影响伴随着氧化应激标志物水平、ROS 含量和体外对氧化应激的易感性增加的增加,尽管抗氧化酶的活性不受 UCP3 缺失的影响。这些变化还与整合应激反应和内质网应激(GRP778 BIP)的标志物 EIF2α的激活/磷酸化增加有关。缺乏 UCP3 会通过降低耗氧量和增加 ROS 使心脏更容易受到氧化损伤。我们的结果表明,UCP3 通过减轻氧化应激有助于细胞维持线粒体功能。