Sorbonne Universités, Faculté des Sciences et Technologie, CNRS UMR 8246, INSERM U1130, Neurosciences Paris Seine, Institut de Biologie Paris Seine, Paris, 75005, France.
Physico-Chimie Curie, Université PSL, CNRS, Institut Pierre-Gilles de Gennes pour la Microfluidique, Paris, France.
Sci Rep. 2020 Mar 17;10(1):4895. doi: 10.1038/s41598-020-61757-x.
Alpha-synuclein (aSyn)-rich aggregates propagate in neuronal networks and compromise cellular homeostasis leading to synucleinopathies such as Parkinson's disease. Aggregated aSyn spread follows a conserved spatio-temporal pattern that is not solely dependent on connectivity. Hence, the differential tropism of aSyn-rich aggregates to distinct brain regions, or their ability to amplify within those regions, must contribute to this process. To better understand what underlies aSyn-rich aggregates distribution within the brain, we generated primary neuronal cultures from various brain regions of wild-type mice and mice expressing a reduced level of aSyn, and exposed them to fibrillar aSyn. We then assessed exogenous fibrillar aSyn uptake, endogenous aSyn seeding, and endogenous aSyn physiological expression levels. Despite a similar uptake of exogenous fibrils by neuronal cells from distinct brain regions, the seeded aggregation of endogenous aSyn differed greatly from one neuronal population to another. The different susceptibility of neuronal populations was linked to their aSyn expression level. Our data establish that endogenous aSyn expression level plays a key role in fibrillar aSyn prion-like seeding, supporting that endogenous aSyn expression level participates in selective regional brain vulnerability.
α-突触核蛋白(aSyn)丰富的聚集体在神经元网络中传播,并破坏细胞内稳态,导致帕金森病等突触核蛋白病。聚集的 aSyn 传播遵循保守的时空模式,不仅仅依赖于连接性。因此,aSyn 丰富的聚集体对不同脑区的不同趋向性,或者它们在这些区域内扩增的能力,必须对此过程做出贡献。为了更好地理解 aSyn 丰富的聚集体在大脑中的分布基础,我们从野生型小鼠和表达低水平 aSyn 的小鼠的不同脑区生成原代神经元培养物,并将其暴露于纤维状 aSyn 下。然后,我们评估了外源性纤维状 aSyn 的摄取、内源性 aSyn 的种子形成和内源性 aSyn 的生理表达水平。尽管来自不同脑区的神经元细胞摄取外源性纤维的情况相似,但内源性 aSyn 的种子聚集在不同神经元群体之间差异很大。神经元群体的不同易感性与它们的 aSyn 表达水平有关。我们的数据表明,内源性 aSyn 表达水平在纤维状 aSyn 朊病毒样种子形成中起着关键作用,支持内源性 aSyn 表达水平参与了选择性的区域性大脑易损性。