Wu Wenyue, Chang Shiyang, Wu Qiong, Xu Zhifang, Wang Peina, Li Yaru, Yu Peng, Gao Guofen, Shi Zhenhua, Duan Xianglin, Chang Yan-Zhong
Laboratory of Molecular Iron Metabolism, The Key Laboratory of Animal Physiology, Biochemistry and Molecular Biology of Hebei Province, College of Life Science, Hebei Normal University, Shijiazhuang 050024, China.
The 3rd Hospital of Hebei Medical University, Shijiazhuang 050051, China.
Cell Death Dis. 2016 Nov 17;7(11):e2475. doi: 10.1038/cddis.2016.372.
Mitochondrial ferritin (FtMt) is a mitochondrially localized protein possessing ferroxidase activity and the ability to store iron. FtMt overexpression in cultured cells protects against oxidative damage by sequestering redox-active, intracellular iron. Here, we found that acute exhaustive exercise significantly increases FtMt expression in the murine heart. FtMt gene disruption decreased the exhaustion exercise time and altered heart morphology with severe cardiac mitochondrial injury and fibril disorganization. The number of apoptotic cells as well as the levels of apoptosis-related proteins was increased in the FtMt mice, though the ATP levels did not change significantly. Concomitant to the above was a high 'uncommitted' iron level found in the FtMt group when exposed to acute exhaustion exercise. As a result of the increase in catalytic metal, reactive oxygen species were generated, leading to oxidative damage of cellular components. Taken together, our results show that the absence of FtMt, which is highly expressed in the heart, increases the sensitivity of mitochondria to cardiac injury via oxidative stress.
线粒体铁蛋白(FtMt)是一种定位于线粒体的蛋白质,具有铁氧化酶活性和储存铁的能力。在培养细胞中过表达FtMt可通过螯合具有氧化还原活性的细胞内铁来保护细胞免受氧化损伤。在此,我们发现急性力竭运动可显著增加小鼠心脏中FtMt的表达。FtMt基因敲除缩短了力竭运动时间,并改变了心脏形态,伴有严重的心肌线粒体损伤和肌原纤维紊乱。FtMt基因敲除小鼠的凋亡细胞数量以及凋亡相关蛋白水平均有所增加,不过ATP水平没有显著变化。与上述情况同时出现的是,FtMt基因敲除组小鼠在进行急性力竭运动时,“未结合”铁水平较高。由于催化性金属增加,产生活性氧,导致细胞成分发生氧化损伤。综上所述,我们的结果表明,心脏中高表达的FtMt缺失会通过氧化应激增加线粒体对心脏损伤的敏感性。