Perturbation in Cardiac Energy Metabolism is Linked to Radiation-induced Heart Disease

O. Azimzadeh, W. Sievert, J. Merl-Pham, G. Multhoff, M. Atkinson, S. Tapio
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Abstract

Radiation exposure to the thorax is associated with a markedly increased risk of cardiac morbidity and mortality with a latency period of [1-4]. Although many studies have confirmed the damaging effect of ionizing radiation on the myocardium and cardiac endothelial structure and function, the molecular mechanism behind this damage is not yet elucidated. As cardiac function greatly depends on mitochondrial metabolic activity we investigated radiation-induced cardiac metabolism disordering in general and the role of Peroxisome proliferator-activated receptor alpha (PPAR alpha) in this process in particular. C57BL/6N mice were locally irradiated to the heart at the age of 8 weeks using X-ray doses of 8 and 16 Gy. The mice were sacrificed 16 weeks after irradiation and the changes in the cardiac proteome were quantified using Isotope Coded Protein Label (ICPL). The proteomics data were further analysed using transcriptomics, immunoblotting, bioinformatics, immunohistochemistry, electron microscopy and serum lipid profiling. Significant alterations were observed in proteins involved in cardiac lipid metabolism and mitochondrial oxidative phosphorylation. Ionizing radiation markedly changed the mitochondrial structure and size, characterized by the loss of the mitochondrial matrix. Irradiation increased phosphorylation and ubiquitination status of PPAR alpha resulting in decreased expression of its target proteins involved in energy metabolism and mitochondrial respiratory chain. This study suggests that persistent alteration of cardiac metabolism due to impaired PPAR alpha activity contributes to the heart pathology after radiation activity activity [5].
心脏能量代谢紊乱与辐射引起的心脏病有关
胸部辐射暴露与心脏发病和死亡风险显著增加相关,潜伏期为[1-4]。虽然许多研究已经证实了电离辐射对心肌和心脏内皮结构和功能的损害作用,但这种损害背后的分子机制尚未阐明。由于心脏功能在很大程度上取决于线粒体代谢活动,我们研究了辐射引起的心脏代谢紊乱,特别是过氧化物酶体增殖体激活受体α (PPAR α)在这一过程中的作用。C57BL/6N小鼠在8周龄时以8和16 Gy的x射线剂量局部照射心脏。照射16周后处死小鼠,用同位素编码蛋白标签(ICPL)定量检测心脏蛋白质组的变化。利用转录组学、免疫印迹、生物信息学、免疫组织化学、电子显微镜和血脂分析进一步分析蛋白质组学数据。在参与心脏脂质代谢和线粒体氧化磷酸化的蛋白质中观察到显著的改变。电离辐射显著改变了线粒体的结构和大小,其特征是线粒体基质的丢失。辐照增加PPAR α的磷酸化和泛素化状态,导致其参与能量代谢和线粒体呼吸链的靶蛋白表达减少。这项研究表明,PPAR α活性受损导致心脏代谢的持续改变有助于辐射活动后的心脏病理[5]。
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