Neurodegeneration in Parkinson's disease: genetics enlightens physiopathology.

Olga Corti, Margot Fournier, Alexis Brice
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引用次数: 8

Abstract

Parkinson's disease (PD) is a severe neurodegenerative disorder of complex etiology and enigmatic physiopathology. In the past decade, the identification of genes involved in rare familial Parkinsonian syndromes has brought hope that understanding the functions of their products will provide insight into the molecular mechanisms responsible for neurodegeneration. The knowledge accumulated thus far has delineated two putative, potentially interconnected, disease-causing pathways: alpha-synuclein accumulation may be central to Parkinsonism due to alpha-synuclein gene defects, but possibly also to sporadic PD and other genetic forms presenting with Lewy bodies; altered mitochondrial physiology may be pivotal to Parkinsonian syndromes caused by parkin, PINK1, and possibly DJ-1 gene mutations. Adding new pieces to this fragmentary picture to determine to what extent sporadic PD and Parkinsonism due to distinct genetic causes share common pathogenic mechanisms remains a major challenge toward the development of future therapeutic strategies for these disabling disorders.

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帕金森病的神经退行性变:遗传学启发生理病理学。
帕金森病(PD)是一种病因复杂、生理病理神秘的严重神经退行性疾病。在过去的十年中,对罕见家族性帕金森综合征相关基因的识别带来了希望,了解其产物的功能将为了解神经变性的分子机制提供洞见。迄今为止积累的知识已经描述了两种假定的、潜在相互关联的致病途径:α -突触核蛋白积累可能是由于α -突触核蛋白基因缺陷导致帕金森病的核心,但也可能是散发性PD和其他以路易体表现的遗传形式;线粒体生理改变可能是由parkin、PINK1和可能的DJ-1基因突变引起的帕金森综合征的关键。为了确定散发性帕金森病和帕金森病在多大程度上由于不同的遗传原因而具有共同的致病机制,为这一不完整的图景添加新的片段,仍然是未来发展这些致残疾病的治疗策略的主要挑战。
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