Dystrophic changes of nigrostriatal axons harboring a SYNJ1 Parkinson’s mutation suggest catastrophic failure of endocytic mechanisms

Synaptojanin 1 is a brain enriched phosphoinositide phosphatase implicated in endocytosis at the synapse. A mutation (R258Q) that selectively impairs its Sac1 phosphatase domain causes early onset familial Parkinsonism. Neurons of mice with this mutation display synaptic vesicle traffic defects across the brain, but selective dystrophic changes in a subset of dopaminergic axons in the dorsolateral striatum. Using correlative light microscopy-FIB-SEM of mutant mouse striata to visualize in 3D these abnormal structures we show that they represent clusters of focal axonal dilations harboring massive, onion-like DAT enriched plasma membrane infoldings, generally localized next to cell bodies of neighboring cells, often engulfing evaginations of such cells. This dysmorphia was associated with a deficit in dopamine release in the same striatal region. Given the involvement of Synj1 in endocytic mechanisms, these structures may reflect an imbalance between exocytosis and endocytosis. Their occurrence only in a subset of axons suggests a vulnerability threshold of these axons beyond which the expansion of the plasma membrane is not counteracted by compensatory mechanisms.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-10-09
DOI
https://doi.org/10.1073/pnas.2622215123
Primary Topic
Parkinson's Disease Mechanisms and Treatments
Type
article
Field-Weighted Citation Impact
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article

Dystrophic changes of nigrostriatal axons harboring a SYNJ1 Parkinson’s mutation suggest catastrophic failure of endocytic mechanisms

Yumei Wu, C. Shan Xu, Mian Cao, Lin Shao et al.
Proceedings of the National Academy of Sciences
Parkinson's Disease Mechanisms and Treatments
article

Dystrophic changes of nigrostriatal axons harboring a SYNJ1 Parkinson’s mutation suggest catastrophic failure of endocytic mechanisms

Yumei Wu, C. Shan Xu, Mian Cao, Lin Shao, Dalton James Surmeier, Pietro V. De Camilli, Peng Xu, Harald F. Hess, Kenneth J. Hayworth, James Moran
article en

Abstract

Synaptojanin 1 is a brain enriched phosphoinositide phosphatase implicated in endocytosis at the synapse. A mutation (R258Q) that selectively impairs its Sac1 phosphatase domain causes early onset familial Parkinsonism. Neurons of mice with this mutation display synaptic vesicle traffic defects across the brain, but selective dystrophic changes in a subset of dopaminergic axons in the dorsolateral striatum. Using correlative light microscopy-FIB-SEM of mutant mouse striata to visualize in 3D these abnormal structures we show that they represent clusters of focal axonal dilations harboring massive, onion-like DAT enriched plasma membrane infoldings, generally localized next to cell bodies of neighboring cells, often engulfing evaginations of such cells. This dysmorphia was associated with a deficit in dopamine release in the same striatal region. Given the involvement of Synj1 in endocytic mechanisms, these structures may reflect an imbalance between exocytosis and endocytosis. Their occurrence only in a subset of axons suggests a vulnerability threshold of these axons beyond which the expansion of the plasma membrane is not counteracted by compensatory mechanisms.

Proceedings of the National Academy of SciencesVol. 123(41)
Northwestern University (US), Howard Hughes Medical Institute (US), Janelia Research Campus (US), NeuroDevelopment Center (US), Aligning Science Across Parkinson's (US)
Openalex Percentile: Top 14%
Parkinson's Disease Mechanisms and Treatments
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