转基因小鼠
转录组
生物
海马体
神经科学
细胞生物学
转基因
基因表达
磷酸化
帕金森病
路易氏体型失智症
皮质(解剖学)
路易体
人脑
共核细胞病
基因
大脑皮层
免疫荧光
神经退行性变
下游(制造业)
陶氏病
基因表达调控
分子神经科学
基因表达谱
疾病
内嗅皮质
海马结构
线粒体
作者
Liam Horan-Portelance,Michiyo Iba,Dominic J. Acri,J. Raphael Gibbs,Mark R. Cookson
标识
DOI:10.1038/s41531-025-01246-y
摘要
Abstract In Parkinson’s disease and dementia with Lewy bodies, aggregated and phosphorylated α-synuclein appears in select neurons throughout cortical and subcortical regions, but little is currently known about why certain populations are selectively vulnerable. Here, using imaging spatial transcriptomics (IST) coupled with downstream immunofluorescence for α-synuclein phosphorylated at Ser129 (pSyn) in the same tissue sections, we identified neuronal subtypes in the cortex and hippocampus of transgenic human α-synuclein-overexpressing mice that preferentially developed pSyn accumulation. Additionally, we investigated the transcriptional underpinnings of this vulnerability, pointing to expression of Plk2 , which phosphorylates α-synuclein at Ser129, and human SNCA ( hSNCA ), as key to pSyn development. Finally, we performed differential expression analysis, revealing gene expression changes broadly downstream of hSNCA overexpression, as well as pSyn-dependent alterations in mitochondrial and endolysosomal genes. Overall, this study yields new insights into the formation of phospho-α-synuclein and its downstream effects in a synucleinopathy mouse model.
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