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Tet2 loss suppress α-synuclein pathology by stimulating ciliogenesis

Quansah, E.; Vatsa, N.; Ensink, E.; Brown, J.; Cave, T.; Aguileta, M.; Kuhn, E.; Lindquist, A.; Gilliland, C.; Steiner, J. A.; Escobar Gavis, M. L.; Milciute, M.; Henderson, M.; Brundin, P.; Brundin, L.; Marshall, L. L.; Gordevicius, J.

2024-08-06 neuroscience
10.1101/2024.08.02.606408 bioRxiv
Show abstract

There are no approved treatments that slow Parkinsons disease (PD) progression and therefore it is important to identify novel pathogenic mechanisms that can be targeted. Loss of the epigenetic marker, Tet2 appears to have some beneficial effects in PD models, but the underlying mechanism of action is not well understood. We performed an unbiased transcriptomic analysis of cortical neurons isolated from patients with PD to identify dysregulated pathways and determine their potential contributions to the disease process. We discovered that genes associated with primary cilia, non-synaptic sensory and signaling organelles, are upregulated in both early and late PD patients. Enhancing ciliogenesis in primary cortical neurons via sonic hedgehog signaling suppressed the accumulation of -synuclein pathology in vitro. Interestingly, deletion of Tet2 in mice also enhanced the expression of primary cilia and sonic hedgehog signaling genes and rescued the accumulation of -synuclein pathology and dopamine neuron degeneration in vivo. Our findings demonstrate the crucial role of Tet2 loss in regulating ciliogenesis and potentially affecting the progression of PD pathology.

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