Parkinson's disease (PD) is characterized by the selective loss of dopamine neurons in the substantia nigra; however, the mechanism of neurodegeneration in PD remains unclear. A subset of familial PD is linked to mutations in PARK2 and PINK1, which lead to dysfunctional mitochondria-related proteins Parkin and PINK1, suggesting that pathways implicated in these monogenic forms could play a more general role in PD. We demonstrate that the identification of disease-related phenotypes in PD-patient-specific induced pluripotent stem cell (iPSC)-derived midbrain dopamine (mDA) neurons depends on the type of differentiation protocol utilized. In a floor-plate-based but not a neural-rosette-based directed differentiation strategy, iPSC-derived mDA neurons recapitulate PD phenotypes, including pathogenic protein accumulation, cell-type-specific vulnerability, mitochondrial dysfunction, and abnormal neurotransmitter homeostasis. We propose that these form a pathogenic loop that contributes to disease. Our study illustrates the promise of iPSC technology for examining PD pathogenesis and identifying therapeutic targets.
Parkin and PINK1 Patient iPSC-Derived Midbrain Dopamine Neurons Exhibit Mitochondrial Dysfunction and α-Synuclein Accumulation.
Parkin 和 PINK1 患者的 iPSC 衍生的中脑多巴胺神经元表现出线粒体功能障碍和 α-突触核蛋白积累
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作者:Chung Sun Young, Kishinevsky Sarah, Mazzulli Joseph R, Graziotto John, Mrejeru Ana, Mosharov Eugene V, Puspita Lesly, Valiulahi Parvin, Sulzer David, Milner Teresa A, Taldone Tony, Krainc Dimitri, Studer Lorenz, Shim Jae-Won
| 期刊: | Stem Cell Reports | 影响因子: | 5.100 |
| 时间: | 2016 | 起止号: | 2016 Oct 11; 7(4):664-677 |
| doi: | 10.1016/j.stemcr.2016.08.012 | 研究方向: | 神经科学 |
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