Tang Sha, Le Phung Khanh, Tse Stephanie, Wallace Douglas C, Huang Taosheng
Division of Human Genetics, Department of Pediatrics, University of California Irvine, Irvine, California, United States of America.
PLoS One. 2009;4(2):e4492. doi: 10.1371/journal.pone.0004492. Epub 2009 Feb 16.
Optic atrophy 1 (OPA1) is a dynamin-like GTPase located in the inner mitochondrial membrane and mutations in OPA1 are associated with autosomal dominant optic atrophy (DOA). OPA1 plays important roles in mitochondrial fusion, cristae remodeling and apoptosis. Our previous study showed that dOpa1 mutation caused elevated reactive oxygen species (ROS) production and resulted in damage and death of the cone and pigment cells in Drosophila eyes. Since ROS-induced oxidative damage to the cells is one of the primary causes of aging, in this study, we examined the effects of heterozygous dOpa1 mutation on the lifespan. We found that heterozygous dOpa1 mutation caused shortened lifespan, increased susceptibility to oxidative stress and elevated production of ROS in the whole Drosophila. Antioxidant treatment partially restored lifespan in the male dOpa1 mutants, but had no effects in the females. Heterozygous dOpa1 mutation caused an impairment of respiratory chain complex activities, especially complexes II and III, and reversible decreased aconitase activity. Heterozygous dOpa1 mutation is also associated with irregular and dysmorphic mitochondria in the muscle. Our results, for the first time, demonstrate the important role of OPA1 in aging and lifespan, which is most likely mediated through augmented ROS production.
视神经萎缩1(OPA1)是一种位于线粒体内膜的动力蛋白样GTP酶,OPA1突变与常染色体显性视神经萎缩(DOA)相关。OPA1在线粒体融合、嵴重塑和细胞凋亡中发挥重要作用。我们之前的研究表明,果蝇dOpa1突变导致活性氧(ROS)生成增加,进而导致果蝇眼睛中的视锥细胞和色素细胞受损及死亡。由于ROS诱导的细胞氧化损伤是衰老的主要原因之一,在本研究中,我们检测了杂合dOpa1突变对寿命的影响。我们发现,杂合dOpa1突变导致果蝇寿命缩短、对氧化应激的易感性增加以及整个果蝇体内ROS生成增加。抗氧化剂处理部分恢复了雄性dOpa1突变体的寿命,但对雌性果蝇没有影响。杂合dOpa1突变导致呼吸链复合物活性受损,尤其是复合物II和III,并且乌头酸酶活性可逆性降低。杂合dOpa1突变还与肌肉中不规则和畸形的线粒体有关。我们的结果首次证明了OPA1在衰老和寿命中的重要作用,这很可能是通过增加ROS生成来介导的。