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首页> 外文期刊>Journal of Cell Science >A cell biological perspective on mitochondrial dysfunction in Parkinson disease and other neurodegenerative diseases.
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A cell biological perspective on mitochondrial dysfunction in Parkinson disease and other neurodegenerative diseases.

机译:帕金森病和其他神经退行性疾病中线粒体功能障碍的细胞生物学观点。

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Dysfunction of mitochondria is frequently proposed to be involved in neurodegenerative disease. Deficiencies in energy supply, free radical generation, Ca(2+) buffering or control of apoptosis, could all theoretically contribute to progressive decline of the central nervous system. Parkinson disease illustrates how mutations in very different genes finally impinge directly or indirectly on mitochondrial function, causing subtle but finally fatal dysfunction of dopaminergic neurons. Neurons in general appear more sensitive than other cells to mutations in genes encoding mitochondrial proteins. Particularly interesting are mutations in genes such as Opa1, Mfn1 and Dnm1l, whose products are involved in the dynamic morphological alterations and subcellular trafficking of mitochondria. These indicate that mitochondrial dynamics are especially important for the long-term maintenance of the nervous system. The emerging evidence clearly demonstrates the crucial role of specific mitochondrial functions in maintaining neuronal circuit integrity.
机译:经常提出线粒体功能障碍与神经退行性疾病有关。能量供应,自由基生成,Ca(2+)缓冲或凋亡控制的缺陷,理论上都可能导致中枢神经系统的逐渐衰退。帕金森氏病说明了非常不同的基因突变最终如何直接或间接影响线粒体功能,从而引起多巴胺能神经元的细微但致命的功能障碍。通常,神经元似乎比其他细胞对编码线粒体蛋白的基因突变更敏感。特别有趣的是基因(例如Opa1,Mfn1和Dnm11l)中的突变,其产物参与线粒体的动态形态变化和亚细胞贩运。这些表明线粒体动力学对于神经系统的长期维持特别重要。新兴证据清楚地表明特定线粒体功能在维持神经元回路完整性中的关键作用。

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