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在活体动物中成像超氧化物闪光和代谢偶联的线粒体通透性转换。

Imaging superoxide flash and metabolism-coupled mitochondrial permeability transition in living animals.

机构信息

Institute of Molecular Medicine, College of Life Science, Peking University, Beijing 100871, China.

出版信息

Cell Res. 2011 Sep;21(9):1295-304. doi: 10.1038/cr.2011.81. Epub 2011 May 10.

Abstract

The mitochondrion is essential for energy metabolism and production of reactive oxygen species (ROS). In intact cells, respiratory mitochondria exhibit spontaneous "superoxide flashes", the quantal ROS-producing events consequential to transient mitochondrial permeability transition (tMPT). Here we perform the first in vivo imaging of mitochondrial superoxide flashes and tMPT activity in living mice expressing the superoxide biosensor mt-cpYFP, and demonstrate their coupling to whole-body glucose metabolism. Robust tMPT/superoxide flash activity occurred in skeletal muscle and sciatic nerve of anesthetized transgenic mice. In skeletal muscle, imaging tMPT/superoxide flashes revealed labyrinthine three-dimensional networks of mitochondria that operate synchronously. The tMPT/superoxide flash activity surged in response to systemic glucose challenge or insulin stimulation, in an apparently frequency-modulated manner and involving also a shift in the gating mode of tMPT. Thus, in vivo imaging of tMPT-dependent mitochondrial ROS signals and the discovery of the metabolism-tMPT-superoxide flash coupling mark important technological and conceptual advances for the study of mitochondrial function and ROS signaling in health and disease.

摘要

线粒体对于能量代谢和活性氧(ROS)的产生至关重要。在完整的细胞中,呼吸线粒体表现出自发的“超氧自由基闪光”,这是由短暂的线粒体通透性转变(tMPT)引起的量子 ROS 产生事件。在这里,我们首次在活体表达超氧阴离子荧光探针 mt-cpYFP 的小鼠中对线粒体超氧自由基闪光和 tMPT 活性进行了体内成像,并证明它们与全身葡萄糖代谢相耦联。在麻醉转基因小鼠的骨骼肌和坐骨神经中,观察到了强烈的 tMPT/超氧自由基闪光活性。在骨骼肌中,通过成像 tMPT/超氧自由基闪光揭示了迷宫状的三维线粒体网络,这些线粒体网络同步运作。tMPT/超氧自由基闪光活性会对全身葡萄糖刺激或胰岛素刺激做出反应,以明显的频率调制方式增加,同时还涉及 tMPT 的门控模式转变。因此,tMPT 依赖性线粒体 ROS 信号的活体成像以及代谢-tMPT-超氧自由基闪光耦联的发现,标志着研究线粒体功能和 ROS 信号在健康和疾病中的重要技术和概念进展。

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