中脑
多巴胺
神经科学
疾病
帕金森病
转录组
生物
多巴胺能
医学
中枢神经系统
遗传学
内科学
基因
基因表达
作者
Zachary Gaertner,Cameron Oram,Amanda Schneeweis,Elan Schonfeld,Cyril Bolduc,Chuyu Chen,Daniel A. Dombeck,Loukia Parisiadou,Jean‐François Poulin,Rajeshwar Awatramani
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2025-05-12
卷期号:13
标识
DOI:10.7554/elife.101035.3
摘要
Several studies have revealed that midbrain dopamine (DA) neurons, even within a single neuroanatomical area, display heterogeneous properties. In parallel, studies using singlecell profiling techniques have begun to cluster DA neurons into subtypes based on their molecular signatures. Recent work has shown that molecularly defined DA subtypes within the substantia nigra (SNc) display distinctive anatomic and functional properties, and differential vulnerability in Parkinson’s disease (PD). Based on these provocative results, a granular understanding of these putative subtypes and their alterations in PD models, is imperative. We developed an optimized pipeline for single-nuclear RNA sequencing (snRNA-seq) and generated a high-resolution hierarchically organized map revealing 20 molecularly distinct DA neuron subtypes belonging to three main families. We integrated this data with spatial MERFISH technology to map, with high definition, the location of these subtypes in the mouse midbrain, revealing heterogeneity even within neuroanatomical sub-structures. Finally, we demonstrate that in the preclinical LRRK2 G2019S knock-in mouse model of PD, subtype organization and proportions are preserved. Transcriptional alterations occur in many subtypes including those localized to the ventral tier SNc, where differential expression is observed in synaptic pathways, which might account for previously described DA release deficits in this model. Our work provides an advancement of current taxonomic schemes of the mouse midbrain DA neuron subtypes, a high-resolution view of their spatial locations, and their alterations in a prodromal mouse model of PD.
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