bioRxiv · 10.1101/2023.09.22.558615
Mitochondrial complex I deficiency stratifies idiopathic Parkinson's disease
Abstract
Idiopathic Parkinsons disease (iPD) is believed to have a heterogeneous pathophysiology, but molecular disease subtypes have not been identified. Here, we show that iPD can be stratified according to the severity of neuronal respiratory complex I (CI) deficiency, and identify two emerging disease subtypes with distinct molecular and clinical profiles. The CI deficient (CI-PD) subtype accounts for approximately a fourth of all cases, and is characterized by anatomically widespread neuronal CI deficiency, a distinct cell type-specific gene expression profile, increased load of neuronal mtDNA deletions, and a predilection for non-tremor dominant motor phenotypes. In contrast, the non-CI deficient (nCI-PD) subtype exhibits no evidence of mitochondrial impairment outside the dopaminergic substantia nigra and has a predilection for a tremor dominant phenotype. These findings constitute a step towards resolving the biological heterogeneity of iPD with implications for both mechanistic understanding and treatment strategies.
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Flones, I., Toker, L., Sandnes, D. A., Castelli, M., Mostafavi, S., Lura, N., Shadad, O., Fernandez-Vizarra, E., Painous, C., Perez-Soriano, A., Compta, Y., Molina-Porcel, L., Alves, G., Tysnes, O.-B., Dolle, C., Nido, G. S., Tzoulis, C.. 2023-09-22. Mitochondrial complex I deficiency stratifies idiopathic Parkinson's disease. https://doi.org/10.1101/2023.09.22.558615
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