Department of Pathology and Laboratory Medicine, University of Vermont Cancer Center, Larner College of Medicine, Burlington, VT 05405, USA.
J Biochem. 2020 Feb 1;167(2):109-117. doi: 10.1093/jb/mvz058.
Mitochondria are not passive bystanders aimlessly floating throughout our cell's cytoplasm. Instead, mitochondria actively move, anchor, divide, fuse, self-destruct and transfer between cells in a coordinated fashion, all to ensure proper structure and position supporting cell function. The existence of the mitochondria in our cells has long been appreciated, but their dynamic nature and interaction with other subcellular compartments has only recently been fully realized with the advancement of high-resolution live-cell microscopy and improved fractionization techniques. The how and why that dictates positioning of mitochondria to specific subcellular sites is an ever-expanding research area. Furthermore, the advent of new and improved functional probes, sensitive to changes in subcellular metabolite levels has increased our understanding of local mitochondrial populations. In this review, we will address the evidence for intentional mitochondrial positioning in supporting subcellular mitochondrial metabolite levels, including calcium, adenosine triphosphate and reactive oxygen species and the role mitochondrial metabolites play in dictating cell outcomes.
线粒体并不是在细胞质中漫无目的地被动漂浮的旁观者。相反,线粒体以协调的方式主动移动、锚定、分裂、融合、自毁并在细胞之间转移,所有这些都是为了确保适当的结构和位置以支持细胞功能。我们细胞中的线粒体的存在早已被人们所认识,但随着高分辨率活细胞显微镜和改进的分级分离技术的进步,线粒体的动态性质及其与其他亚细胞区室的相互作用才刚刚被全面认识。是什么决定了线粒体在特定亚细胞部位的定位,以及为什么会这样,这是一个不断扩展的研究领域。此外,新的和改进的功能探针的出现,对亚细胞代谢物水平变化敏感,增加了我们对局部线粒体群体的理解。在这篇综述中,我们将讨论有意定位线粒体以支持亚细胞线粒体代谢物水平(包括钙、三磷酸腺苷和活性氧)的证据,以及线粒体代谢物在决定细胞结果方面所起的作用。