Hori Osamu, Ichinoda Fusae, Tamatani Takashi, Yamaguchi Atsushi, Sato Naoya, Ozawa Kentaro, Kitao Yasuko, Miyazaki Mayuki, Harding Heather P, Ron David, Tohyama Masaya, M Stern David, Ogawa Satoshi
Department of Neuroanatomy, Kanazawa University, School of Medicine, Kanazawa City, Ishikawa 920-8640, Japan.
J Cell Biol. 2002 Jun 24;157(7):1151-60. doi: 10.1083/jcb.200108103.
The rat homologue of a mitochondrial ATP-dependent protease Lon was cloned from cultured astrocytes exposed to hypoxia. Expression of Lon was enhanced in vitro by hypoxia or ER stress, and in vivo by brain ischemia. These observations suggested that changes in nuclear gene expression (Lon) triggered by ER stress had the potential to impact important mitochondrial processes such as assembly and/or degradation of cytochrome c oxidase (COX). In fact, steady-state levels of nuclear-encoded COX IV and V were reduced, and mitochondrial-encoded subunit II was rapidly degraded under ER stress. Treatment of cells with cycloheximide caused a similar imbalance in the accumulation of COX subunits, and enhanced mRNA for Lon and Yme1, the latter another mitochondrial ATP-dependent protease. Furthermore, induction of Lon or GRP75/mtHSP70 by ER stress was inhibited in PERK (-/-) cells. Transfection studies revealed that overexpression of wild-type or proteolytically inactive Lon promoted assembly of COX II into a COX I-containing complex, and partially prevented mitochondrial dysfunction caused by brefeldin A or hypoxia. These observations demonstrated that suppression of protein synthesis due to ER stress has a complex effect on the synthesis of mitochondrial-associated proteins, both COX subunits and ATP-dependent proteases and/or chaperones contributing to assembly of the COX complex.
从暴露于缺氧环境的培养星形胶质细胞中克隆出线粒体ATP依赖性蛋白酶Lon的大鼠同源物。在体外,缺氧或内质网应激可增强Lon的表达;在体内,脑缺血也可增强其表达。这些观察结果表明,内质网应激引发的核基因表达(Lon)变化可能会影响重要的线粒体过程,如细胞色素c氧化酶(COX)的组装和/或降解。事实上,在应激状态下,核编码的COX IV和V的稳态水平降低,线粒体编码的亚基II迅速降解。用放线菌酮处理细胞会导致COX亚基积累出现类似的失衡,并增加Lon和Yme1(后者是另一种线粒体ATP依赖性蛋白酶)的mRNA水平。此外,内质网应激诱导的Lon或GRP75/mtHSP70在PERK(-/-)细胞中受到抑制。转染研究表明,野生型或蛋白水解无活性的Lon的过表达促进了COX II组装成含COX I的复合物,并部分预防了布雷菲德菌素A或缺氧引起的线粒体功能障碍。这些观察结果表明,内质网应激导致的蛋白质合成抑制对线粒体相关蛋白的合成具有复杂的影响,COX亚基以及参与COX复合物组装的ATP依赖性蛋白酶和/或伴侣蛋白均受影响。