Detmer Scott A, Chan David C
Division of Biology, California Institute of Technology, Pasadena, California 91125, USA.
Nat Rev Mol Cell Biol. 2007 Nov;8(11):870-9. doi: 10.1038/nrm2275.
Recent findings have sparked renewed appreciation for the remarkably dynamic nature of mitochondria. These organelles constantly fuse and divide, and are actively transported to specific subcellular locations. These dynamic processes are essential for mammalian development, and defects lead to neurodegenerative disease. But what are the molecular mechanisms that control mitochondrial dynamics, and why are they important for mitochondrial function? We review these issues and explore how defects in mitochondrial dynamics might cause neuronal disease.
最近的研究结果引发了人们对线粒体显著动态特性的重新认识。这些细胞器不断地融合和分裂,并被主动运输到特定的亚细胞位置。这些动态过程对哺乳动物的发育至关重要,缺陷会导致神经退行性疾病。但是,控制线粒体动态的分子机制是什么,以及它们为何对线粒体功能很重要?我们回顾这些问题,并探讨线粒体动态缺陷可能如何导致神经元疾病。