Doi Koji, Nakano Toshiya, Kitayama Michio, Watanabe Yasuhiro, Yasui Kenichi, Fukada Yasuyo, Morino Shinichi, Kaidoh Toshiyuki, Nakashima Kenji, Inoué Takao
Department of Neurology, Institute of Neurological Sciences, Tottori University, Yonago, Japan.
Neuropathology. 2008 Jun;28(3):269-76. doi: 10.1111/j.1440-1789.2007.00876.x. Epub 2008 Jan 3.
We investigated the time course of ultrastructural changes of mitochondria in the spinal cord of homozygotes of Leu126TTdel SOD1 (superoxide dismutase 1) with FLAG (signal sequence at the C-terminal protein) transgenic mice (DF-homo). Non-Tg mice and wild-type human SOD1 with FLAG epitope transgenic mice (WF) were investigated as controls for non-onset Tg mice. Expansion and vacuolation of the mitochondrial matrix was exhibited in motor neurons in the anterior horns of DF-homo Tg mice at the presymptomatic stage. Such mitochondrial degeneration became severe at the postsymptomatic stage. In contrast, expansion of the mitochondrial inner-membrane space was not evident even at the terminal stage. Microvacuoles of cytoplasm and fibrillar inclusions were rarely shown from the early symptomatic stage. WF mice showed expansion and vacuolation of the mitochondrial inner membrane space at old age. Non-Tgs showed no obvious change in mitochondria. Gold-labeled human SOD1 immunoreactivity showed small amount of gold deposits in the vacuolated mitochondria. These results suggest that the expansion and vacuolation of mitochondrial matrix in the spinal cord of DF-homo transgenic mice is the first pathological change, but that it is not directly caused by the aggregation of an abnormal human SOD1 protein in intermembrane space of mitochondria.
我们研究了携带FLAG(C末端蛋白信号序列)的Leu126TTdel SOD1(超氧化物歧化酶1)纯合转基因小鼠(DF-纯合子)脊髓中线粒体超微结构变化的时间进程。将非转基因小鼠和携带FLAG表位的野生型人SOD1转基因小鼠(WF)作为未发病转基因小鼠的对照进行研究。在症状前期,DF-纯合子转基因小鼠前角运动神经元中线粒体基质出现扩张和空泡化。在症状后期,这种线粒体变性变得严重。相比之下,即使在终末期,线粒体内膜间隙的扩张也不明显。从症状早期开始,细胞质微空泡和纤维状内含物很少出现。WF小鼠在老年时表现出线粒体内膜间隙的扩张和空泡化。非转基因小鼠的线粒体未显示明显变化。金标记的人SOD1免疫反应性显示,空泡化的线粒体中有少量金沉积。这些结果表明,DF-纯合子转基因小鼠脊髓中线粒体基质的扩张和空泡化是首个病理变化,但并非由线粒体内膜间隙异常人SOD1蛋白的聚集直接引起。