Dodson Mark W, Guo Ming
Department of Neurology and Brain Research Institute, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.
Curr Opin Neurobiol. 2007 Jun;17(3):331-7. doi: 10.1016/j.conb.2007.04.010. Epub 2007 May 11.
Mutations in PARKIN, PTEN-induced kinase 1 (PINK1) and DJ-1 are found in autosomal recessive forms and some sporadic cases of Parkinson's disease. Recent work on these genes underscores the central importance of mitochondrial dysfunction and oxidative stress in Parkinson's disease. In particular, pink1 and parkin loss-of-function mutants in Drosophila show similar phenotypes, and pink1 acts upstream of parkin in a common genetic pathway to regulate mitochondrial function. DJ-1 has a role in oxidative stress protection, but a direct role of DJ-1 in mitochondrial function has not been fully established. Importantly, defects in mitochondrial function have also been identified in patients who carry both PINK1 and PARKIN mutations, and in those who have sporadic Parkinson's disease. Future studies of the biochemical interactions between Pink1 and Parkin, and identification of other components in this pathway, are likely to provide insight into Parkinson's disease pathogenesis, and might identify new therapeutic targets.
在帕金森病的常染色体隐性遗传形式及一些散发病例中发现了帕金森蛋白(PARKIN)、PTEN诱导激酶1(PINK1)和DJ-1的突变。近期对这些基因的研究强调了线粒体功能障碍和氧化应激在帕金森病中的核心重要性。特别是,果蝇中的pink1和parkin功能丧失突变体表现出相似的表型,并且pink1在一条共同的遗传途径中位于parkin上游,以调节线粒体功能。DJ-1在氧化应激保护中发挥作用,但DJ-1在线粒体功能中的直接作用尚未完全明确。重要的是,在携带PINK1和PARKIN突变的患者以及散发性帕金森病患者中也发现了线粒体功能缺陷。未来对Pink1和Parkin之间生化相互作用的研究以及该途径中其他成分的鉴定,可能会为帕金森病的发病机制提供深入了解,并可能确定新的治疗靶点。