National Institutes of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892, USA.
Dis Model Mech. 2012 Mar;5(2):210-9. doi: 10.1242/dmm.008847. Epub 2011 Dec 21.
Altered function of Cdk5 kinase is associated with many forms of neurodegenerative disease in humans. We show here that inactivating the Drosophila Cdk5 ortholog, by mutation of its activating subunit, p35, causes adult-onset neurodegeneration in the fly. In the mutants, a vacuolar neuropathology is observed in a specific structure of the central brain, the 'mushroom body', which is the seat of olfactory learning and memory. Analysis of cellular phenotypes in the mutant brains reveals some phenotypes that resemble natural aging in control flies, including an increase in apoptotic and necrotic cell death, axonal fragmentation, and accumulation of autophagosomes packed with crystalline-like depositions. Other phenotypes are unique to the mutants, notably age-dependent swellings of the proximal axon of mushroom body neurons. Many of these phenotypes are also characteristic of mammalian neurodegenerative disease, suggesting a close relationship between the mechanisms of Cdk5-associated neurodegeneration in fly and human. Together, these results identify the cellular processes that are unleashed in the absence of Cdk5 to initiate the neurodegenerative program, and they provide a model that can be used to determine what part each process plays in the progression to ultimate degeneration.
Cdk5 激酶功能改变与人类多种神经退行性疾病有关。我们在这里展示,通过突变其激活亚基 p35,使果蝇的 Cdk5 同源物失活,会导致果蝇成年后发生神经退行性变。在突变体中,在中央脑的特定结构“蘑菇体”中观察到空泡性神经病理学,蘑菇体是嗅觉学习和记忆的所在地。对突变体大脑中细胞表型的分析揭示了一些与对照果蝇自然衰老相似的表型,包括凋亡和坏死性细胞死亡、轴突断裂以及含有结晶样沉积物的自噬体的积累增加。其他表型则是突变体所特有的,特别是蘑菇体神经元近端轴突的年龄依赖性肿胀。这些表型中有许多也是哺乳动物神经退行性疾病的特征,这表明果蝇和人类中与 Cdk5 相关的神经退行性变的机制之间存在密切关系。总之,这些结果确定了在缺乏 Cdk5 的情况下引发神经退行性变程序的细胞过程,并提供了一个可以用来确定每个过程在最终退化进展中所起作用的模型。