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Mitochondriopathy in Parkinson disease and amyotrophic lateral sclerosis.

机译:帕金森病的线粒体病和肌萎缩性侧索硬化症。

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The causes of the selective neurodegeneration in Parkinson disease (PD) and amyotrophic lateral sclerosis (ALS) are unknown and commonalities among these and other age-related neurodegenerative diseases continue to be sought. Morphologic, biochemical, molecular genetic, and cell/animal model studies suggest that mitochondria might be a convergence point for neurodegeneration. The functions and properties of mitochondria might render subsets of selectively vulnerable neurons intrinsically susceptible to cellular aging and stress. In PD, mutations in putative mitochondrial proteins have been identified recently and mitochondrial DNA mutations have been found in nigral neurons. In ALS, changes occur in mitochondrial respiratory chain enzymes and in mitochondrial cell death proteins, indicative of an activation of programmed cell death pathways. Mouse models are beginning to reveal possible principles governing the biology of selective neuronal vulnerability that implicate mitochondria in neuronal death processes ranging from apoptosis to necrosis. This review presents how malfunctioning mitochondria might contribute to neuronal death in PD and ALS.
机译:帕金森氏病(PD)和肌萎缩性侧索硬化症(ALS)选择性神经退行性疾病的原因尚不清楚,这些疾病和其他与年龄相关的神经退行性疾病之间的共通性一直在寻求中。形态学,生化,分子遗传学和细胞/动物模型研究表明,线粒体可能是神经退行性变的收敛点。线粒体的功能和特性可能会使选择性易受攻击的神经元的子集固有地易受细胞衰老和压力的影响。在PD中,最近已经鉴定出假定的线粒体蛋白中的突变,并且在黑质神经元中发现了线粒体DNA突变。在ALS中,线粒体呼吸链酶和线粒体细胞死亡蛋白发生变化,表明激活了程序性细胞死亡途径。小鼠模型开始揭示控制选择性神经元易损性生物学的可能原理,该原理牵涉线粒体参与从凋亡到坏死的神经元死亡过程。这篇综述介绍了线粒体功能异常如何导致PD和ALS神经元死亡。

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