a Departments of Biology , The University of Texas Rio Grande Valley , Edinburg , TX , USA.
b Biomedical Sciences , The University of Texas Rio Grande Valley , Edinburg , TX , USA.
Redox Rep. 2018 Dec;23(1):160-167. doi: 10.1080/13510002.2018.1492766.
To explore the impact of oxidative insults on mitochondrial dynamics. In mammalian cells, oxidative insults activate stress response pathways including inflammation, cytokine secretion, and apoptosis. Intriguingly, mitochondria are emerging as a sensitive network that may function as an early indicator of subsequent cellular stress responses. Mitochondria form a dynamic network, balancing fusion, mediated by optic atrophy-1 (OPA1), and fission events, mediated by dynamin-related protein-1 (DRP1), to maintain homeostasis.
Here, we examine the impact of oxidative insults on mitochondrial dynamics in 143B osteosarcoma and H9c2 cardiomyoblast cell lines via confocal microscopy, flow cytometry, and protein-based analyses.
When challenged with hydrogen peroxide (HO), a ROS donor, both cell lines display fragmentation of the mitochondrial network and loss of fusion-active OPA1 isoforms, indicating that OPA1-mediated mitochondrial fusion is disrupted by oxidative damage in mammalian cells. Consistent with this, cells lacking OMA1, a key protease responsible for cleavage of OPA1, are protected against OPA1 cleavage and mitochondrial fragmentation in response to HO challenge.
Taken together, these findings indicate that oxidative insults damage OPA1-mediated mitochondrial dynamics in mammalian cells via activation of OMA1, consistent with an emerging role for mitochondrial dynamics as an early indicator of cellular stress signaling.
探讨氧化应激对线粒体动力学的影响。在哺乳动物细胞中,氧化应激会激活炎症、细胞因子分泌和细胞凋亡等应激反应途径。有趣的是,线粒体作为一个敏感的网络,可能成为后续细胞应激反应的早期指标。线粒体形成一个动态网络,通过光敏感萎缩蛋白 1(OPA1)介导的融合和动力相关蛋白 1(DRP1)介导的分裂事件来平衡融合,以维持细胞内稳态。
通过共聚焦显微镜、流式细胞术和基于蛋白质的分析,我们在 143B 骨肉瘤和 H9c2 心肌细胞系中研究了氧化应激对线粒体动力学的影响。
当用活性氧(ROS)供体过氧化氢(HO)处理时,两种细胞系的线粒体网络都发生了碎片化,融合活性的 OPA1 异构体丢失,表明 OPA1 介导的线粒体融合在哺乳动物细胞中受到氧化损伤的破坏。与这一结果一致的是,缺乏 OMA1 的细胞(一种负责 OPA1 切割的关键蛋白酶)在 HO 挑战中对 OPA1 切割和线粒体碎片化有保护作用。
总之,这些发现表明,氧化应激通过激活 OMA1 破坏哺乳动物细胞中 OPA1 介导的线粒体动力学,这与线粒体动力学作为细胞应激信号的早期指标的新兴作用一致。