ArticleeLife2025
Synaptic deregulation of cholinergic projection neurons causes olfactory dysfunction across five fly Parkinsonism models.
Article in eLife, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- Parkinson's disease-associatedeLife · 2026Article
- Behavioral screening defines the molecular Parkinsonism-related subgroups in Drosophila.Nature communications · 2026Article
- Soma-localized Rab39 inhibits synaptic autophagy by controlling trafficking of Atg9 vesicles.The EMBO journal · 2025Article
- In vivo and in silico models of Drosophila for Parkinson's disease.The FEBS journal · 2025Review
- Spatial transcriptomics in the adulteLife · 2025Article
- Synaptic sabotage: How Tau and α-Synuclein undermine synaptic health.The Journal of cell biology · 2025Review
- A candidate loss-of-function variant in SGIP1 causes synaptic dysfunction and recessive parkinsonism.Cell reports. Medicine · 2024Article
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Authors and funding
15 authors.
Funding
Abstract
The classical diagnosis of Parkinsonism is based on motor symptoms that are the consequence of nigrostriatal pathway dysfunction and reduced dopaminergic output. However, a decade prior to the emergence of motor issues, patients frequently experience non-motor symptoms, such as a reduced sense of smell (hyposmia). The cellular and molecular bases for these early defects remain enigmatic. To explore this, we developed a new collection of five fruit fly models of familial Parkinsonism and conducted single-cell RNA sequencing on young brains of these models. Interestingly, cholinergic projection neurons are the most vulnerable cells, and genes associated with presynaptic function are the most deregulated. Additional single nucleus sequencing of three specific brain regions of Parkinson's disease patients confirms these findings. Indeed, the disturbances lead to early synaptic dysfunction, notably affecting cholinergic olfactory projection neurons crucial for olfactory function in flies. Correcting these defects specifically in olfactory cholinergic interneurons in flies or inducing cholinergic signaling in Parkinson mutant human induced dopaminergic neurons in vitro using nicotine, both rescue age-dependent dopaminergic neuron decline. Hence, our research uncovers that one of the earliest indicators of disease in five different models of familial Parkinsonism is synaptic dysfunction in higher-order cholinergic projection neurons and this contributes to the development of hyposmia. Furthermore, the shared pathways of synaptic failure in these cholinergic neurons ultimately contribute to dopaminergic dysfunction later in life.
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