Free Radical and Radiation Biology Program, Department of Radiation Oncology, University of Iowa, Iowa City, IA 52242, USA.
Mitochondrion. 2010 Jun;10(4):342-9. doi: 10.1016/j.mito.2010.02.004. Epub 2010 Mar 2.
Previously, we have shown manganese superoxide dismutase (MnSOD) activity protects quiescent human normal skin fibroblasts (NHFs) from age associated loss in proliferative capacity. The loss in proliferative capacity of aged vs. young quiescent cells is often characterized as the chronological life span, which is clearly distinct from replicative senescence. We investigate the hypothesis that MnSOD activity protects the mitochondrial morphology from age associated damage and preserves the chronological life span of quiescent fibroblasts. Aged quiescent NHFs exhibited abnormalities in mitochondrial morphology including abnormal cristae formation and increased number of vacuoles. These results correlate with the levels of cellular reactive oxygen species (ROS) and mitochondrial morphology in MnSOD homozygous and heterozygous knockout mouse embryonic fibroblasts. The abnormalities in mitochondrial morphology in aged quiescent NHFs cultured in presence of 21% oxygen concentration were more severe than NHFs cultured in 4% oxygen environment. The alteration in mitochondrial morphology was associated with a significant increase in cell population doubling: 54h in 21% compared to 44h in 4% oxygen environment. Overexpression of MnSOD decreased ROS levels, and preserved mitochondrial morphology in aged quiescent NHFs. These results demonstrate that MnSOD activity protects mitochondrial morphology and preserves the proliferative capacities of quiescent NHFs from age associated loss.
先前,我们已经证实锰超氧化物歧化酶(MnSOD)的活性可保护静息的人类正常皮肤成纤维细胞(NHFs)免受与年龄相关的增殖能力丧失。与年轻静息细胞相比,衰老静息细胞增殖能力的丧失通常被描述为细胞的“生物钟寿命”,这与复制性衰老明显不同。我们提出假设,MnSOD 的活性可保护线粒体形态免受与年龄相关的损伤,并维持静息成纤维细胞的生物钟寿命。衰老的静息 NHFs 表现出线粒体形态的异常,包括嵴结构异常和空泡数量增加。这些结果与 MnSOD 纯合和杂合敲除的小鼠胚胎成纤维细胞中的细胞活性氧(ROS)水平和线粒体形态相关。在 21%氧气浓度下培养的衰老静息 NHFs 中的线粒体形态异常比在 4%氧气环境中培养的 NHFs 更为严重。线粒体形态的改变与细胞群体倍增的显著增加相关:在 21%氧气中的倍增时间为 54 小时,而在 4%氧气中的倍增时间为 44 小时。MnSOD 的过表达降低了 ROS 水平,并维持了衰老静息 NHFs 中线粒体形态。这些结果表明,MnSOD 的活性可保护线粒体形态并防止与年龄相关的静息 NHFs 增殖能力丧失。