老年PINK1基因缺陷小鼠的帕金森病表型伴随着线粒体功能的渐进性障碍,且无神经退行性变。
Parkinson phenotype in aged PINK1-deficient mice is accompanied by progressive mitochondrial dysfunction in absence of neurodegeneration.
作者信息
Gispert Suzana, Ricciardi Filomena, Kurz Alexander, Azizov Mekhman, Hoepken Hans-Hermann, Becker Dorothea, Voos Wolfgang, Leuner Kristina, Müller Walter E, Kudin Alexei P, Kunz Wolfram S, Zimmermann Annabelle, Roeper Jochen, Wenzel Dirk, Jendrach Marina, García-Arencíbia Moisés, Fernández-Ruiz Javier, Huber Leslie, Rohrer Hermann, Barrera Miguel, Reichert Andreas S, Rüb Udo, Chen Amy, Nussbaum Robert L, Auburger Georg
机构信息
Department of Neurology, University Medical School, Frankfurt am Main, Germany.
出版信息
PLoS One. 2009 Jun 3;4(6):e5777. doi: 10.1371/journal.pone.0005777.
BACKGROUND
Parkinson's disease (PD) is an adult-onset movement disorder of largely unknown etiology. We have previously shown that loss-of-function mutations of the mitochondrial protein kinase PINK1 (PTEN induced putative kinase 1) cause the recessive PARK6 variant of PD.
METHODOLOGY/PRINCIPAL FINDINGS: Now we generated a PINK1 deficient mouse and observed several novel phenotypes: A progressive reduction of weight and of locomotor activity selectively for spontaneous movements occurred at old age. As in PD, abnormal dopamine levels in the aged nigrostriatal projection accompanied the reduced movements. Possibly in line with the PARK6 syndrome but in contrast to sporadic PD, a reduced lifespan, dysfunction of brainstem and sympathetic nerves, visible aggregates of alpha-synuclein within Lewy bodies or nigrostriatal neurodegeneration were not present in aged PINK1-deficient mice. However, we demonstrate PINK1 mutant mice to exhibit a progressive reduction in mitochondrial preprotein import correlating with defects of core mitochondrial functions like ATP-generation and respiration. In contrast to the strong effect of PINK1 on mitochondrial dynamics in Drosophila melanogaster and in spite of reduced expression of fission factor Mtp18, we show reduced fission and increased aggregation of mitochondria only under stress in PINK1-deficient mouse neurons.
CONCLUSION
Thus, aging Pink1(-/-) mice show increasing mitochondrial dysfunction resulting in impaired neural activity similar to PD, in absence of overt neuronal death.
背景
帕金森病(PD)是一种成年起病的运动障碍性疾病,其病因大多不明。我们之前已经表明,线粒体蛋白激酶PINK1(PTEN诱导的假定激酶1)的功能丧失突变会导致PD的隐性PARK6变体。
方法/主要发现:现在我们培育了一种PINK1缺陷小鼠,并观察到了几种新的表型:老年时体重逐渐减轻,自发运动的运动活性选择性降低。与PD一样,老年黑质纹状体投射中多巴胺水平异常伴随着运动减少。可能与PARK6综合征一致,但与散发性PD不同,老年PINK1缺陷小鼠不存在寿命缩短、脑干和交感神经功能障碍、路易小体内α-突触核蛋白可见聚集或黑质纹状体神经变性。然而,我们证明PINK1突变小鼠的线粒体前体蛋白导入逐渐减少,这与ATP生成和呼吸等核心线粒体功能缺陷相关。与PINK1对果蝇线粒体动力学的强烈影响相反,尽管裂变因子Mtp18的表达降低,但我们发现只有在应激条件下,PINK1缺陷小鼠神经元中的线粒体裂变减少且聚集增加。
结论
因此,衰老的Pink1(-/-)小鼠表现出线粒体功能障碍加剧,导致与PD相似的神经活动受损,但无明显的神经元死亡。