Thai Truc Quynh, Nguyen Huy Bang, Sui Yang, Ikenaka Kazuhiro, Oda Toshiyuki, Ohno Nobuhiko
Division of Neurobiology and Bioinformatics, National Institute for Physiological Sciences, Okazaki, Japan.
Departments of Anatomy and Structural Biology, Interdisciplinary Graduate School of Medicine and Engineering, University of Yamanashi, Chuo, Japan.
Med Mol Morphol. 2019 Sep;52(3):135-146. doi: 10.1007/s00795-018-0212-0. Epub 2018 Nov 17.
Demyelination leads to axonal changes that involve the functions and dynamics of axonal mitochondria supporting metabolism and survival of axons. However, the changes in the physical interactions between mitochondria and endoplasmic reticulum, called mitochondria-associated membranes, are poorly understood in demyelinated axons. In this study, we investigated the three-dimensional ultrastructural changes in membrane juxtapositions between mitochondria and endoplasmic reticulum in axons of a chronic progressive demyelination mouse model caused by extra copies of proteolipid protein (PLP4e). In the optic nerve of PLP4e mice, most axons were ensheathed by myelin by age 1 month, but were demyelinated by age 5 months. At age 1 month, mitochondria in PLP4e mice were slightly larger than those in wild-type mice, while the size and frequency of juxtaposition were similar. At age 5 months, the sizes of mitochondria and size of juxtaposition in PLP4e mice were prominently larger than those in wild-type mice. In degenerating axons under demyelination, the enlargement of mitochondria was diminished, while the density and frequency of juxtaposition were similar to those of non-degenerating axons. These results suggest that interactions between mitochondria and ER are enhanced in chronically demyelinated axons and maintained during axonal degeneration in hereditary myelin diseases.
脱髓鞘会导致轴突变化,这些变化涉及支持轴突代谢和存活的轴突线粒体的功能和动力学。然而,在脱髓鞘轴突中,线粒体与内质网之间的物理相互作用变化,即所谓的线粒体相关膜,目前了解甚少。在本研究中,我们调查了由额外拷贝的蛋白脂蛋白(PLP4e)引起的慢性进行性脱髓鞘小鼠模型轴突中线粒体与内质网之间膜并列的三维超微结构变化。在PLP4e小鼠的视神经中,大多数轴突在1月龄时被髓鞘包裹,但在5月龄时发生脱髓鞘。在1月龄时,PLP4e小鼠的线粒体比野生型小鼠的线粒体略大,而并列的大小和频率相似。在5月龄时,PLP4e小鼠线粒体的大小和并列的大小明显大于野生型小鼠。在脱髓鞘情况下的退化轴突中,线粒体的增大减弱,而并列的密度和频率与未退化轴突相似。这些结果表明,在慢性脱髓鞘轴突中线粒体与内质网之间的相互作用增强,并在遗传性髓鞘疾病的轴突退化过程中得以维持。