Laboratory of Structural Neuropathology, Doshisha University Graduate School of Brain Science, Kyoto, Japan.
Laboratory of Structural Neuropathology, Doshisha University Graduate School of Brain Science, Kyoto, Japan.
Neurosci Res. 2021 Sep;170:341-349. doi: 10.1016/j.neures.2020.11.009. Epub 2020 Dec 11.
The pathological form of a-synuclein (a-syn) is transmitted through neural circuits in the brains of Parkinson disease (PD) patients and amplifies misfolded a-syn, further forming intracellular deposits. However, the details of a-syn pre-formed fibrils (PFFs) transmission in vivo have not been fully elucidated. By inoculating Quantum dots (QD)-labeled a-syn PFFs (QD-a-syn PFFs) into the unilateral striatum, we detected QD-a-syn PFFs in brain homogenates obtained from the ipsilateral and contralateral sides of the inoculated site and further obtained QD-a-syn PFFs enriched-particles with fluorescence-activated organelle sorting. Proteomic analysis suggested that QD-a-syn PFFs-enriched particles in the contralateral side were associated with component proteins of synapse. In contrast, QD-a-syn PFFs-enriched particles in the ipsilateral side were associated with proteins belonging to ER components. Immunostaining of brain sections confirmed that QD-a-syn PFFs in the contralateral side were co-localized with synaptic vesicle marker proteins in the cortex and striatum. Additionally, QD-a-syn PFFs in the ipsilateral side were more co-localized with ER marker proteins compared to the contralateral side. These results correspond to proteomic analysis. This study provides potential candidates for the subcellular localization of a-syn PFFs in vivo during the dissemination phase of seeds. These subcellular compartments could be involved in the transmission of seeds.
α-突触核蛋白(α-syn)的病理形式通过帕金森病(PD)患者的神经回路在大脑中传播,并放大错误折叠的α-syn,进一步形成细胞内沉积物。然而,α-syn 预形成纤维(PFF)在体内的传播细节尚未完全阐明。通过将量子点(QD)标记的α-syn PFF(QD-α-syn PFF)接种到单侧纹状体中,我们在接种部位对侧的脑匀浆中检测到 QD-α-syn PFF,并进一步通过荧光激活细胞器分选获得 QD-α-syn PFF 富集颗粒。蛋白质组学分析表明,接种部位对侧的 QD-α-syn PFF 富集颗粒与突触的成分蛋白有关。相比之下,接种部位同侧的 QD-α-syn PFF 富集颗粒与属于内质网成分的蛋白质有关。脑切片免疫染色证实,对侧 QD-α-syn PFF 与皮质和纹状体中的突触小泡标记蛋白共定位。此外,与对侧相比,同侧的 QD-α-syn PFF 与 ER 标记蛋白的共定位更多。这些结果与蛋白质组学分析相对应。这项研究为种子传播阶段体内α-syn PFF 亚细胞定位提供了潜在的候选物。这些亚细胞隔室可能参与了种子的传递。