In vivo protein complementation demonstrates presynaptic α-Synuclein oligomerization and age-dependent accumulation of 8–16-mer oligomer species
peer-reviewed
Erstveröffentlichung
2019-11-26Authors
Kiechle, Martin
von Einem, Bjoern
Höfs, Lennart
Vöhringer, Patrizia
Grozdanov, Veselin
Wissenschaftlicher Artikel
Published in
Cell Reports ; 29 (2019), 9. - S. 2862-2874. - ISSN 2211-1247
Link to original publication
https://dx.doi.org/10.1016/j.celrep.2019.10.089Faculties
Fakultät für NaturwissenschaftenMedizinische Fakultät
Institutions
UKU. Klinik für NeurologieInstitut für Proteinbiochemie
Institut für Angewandte Physiologie
Institut für Epidemiologie und Medizinische Biometrie
Institut für Physiologische Chemie
ZE Elektronenmikroskopie
Document version
published version (publisher's PDF)Abstract
Intracellular accumulation of α-synuclein (α-syn) and formation of Lewy bodies are neuropathological characteristics of Parkinson’s disease (PD) and related α-synucleinopathies. Oligomerization and spreading of α-syn from neuron to neuron have been suggested as key events contributing to the progression of PD. To directly visualize and characterize α-syn oligomerization and spreading in vivo, we generated two independent conditional transgenic mouse models based on α-syn protein complementation assays using neuron-specifically expressed split Gaussia luciferase or split Venus yellow fluorescent protein (YFP). These transgenic mice allow direct assessment of the quantity and subcellular distribution of α-syn oligomers in vivo. Using these mouse models, we demonstrate an age-dependent accumulation of a specific subtype of α-syn oligomers. We provide in vivo evidence that, although α-syn is found throughout neurons, α-syn oligomerization takes place at the presynapse. Furthermore, our mouse models provide strong evidence for a transsynaptic cell-to-cell transfer of de novo generated α-syn oligomers in vivo.
DFG Project THU
GRK 1789 / CEMMA / Zelluläre und molekulare Mechanismen der Alterung / DFG / 194266605
Initiation und Propagation von alpha-Synuclein-Oligomeren --Relevanz für die Parkinson-Erkrankung / DFG / Emmy Noether-Nachwuchsgruppen / 282604822 [DA 1657/2-1]
Cell signaling in chronischen ZNS Störungen: TP 12 - Physiologische und Pathophysiologische Rollen von L-Type Ca2+ Kanälen in dopaminergen Mittelhirnneuronen / DFG / 193706960 [LI-1745/1]
Initiation und Propagation von alpha-Synuclein-Oligomeren --Relevanz für die Parkinson-Erkrankung / DFG / Emmy Noether-Nachwuchsgruppen / 282604822 [DA 1657/2-1]
Cell signaling in chronischen ZNS Störungen: TP 12 - Physiologische und Pathophysiologische Rollen von L-Type Ca2+ Kanälen in dopaminergen Mittelhirnneuronen / DFG / 193706960 [LI-1745/1]
Is supplemented by
https://ars.els-cdn.com/content/image/1-s2.0-S2211124719314111-mmc1.pdfhttps://ars.els-cdn.com/content/image/1-s2.0-S2211124719314111-mmc2.pdf
Subject headings
[GND]: Parkinson-Krankheit | Substantia nigra | Phosphorylierung | Synapse[MeSH]: Parkinson disease | Neurodegenerative diseases | Brain | Phosphorylation | Synaptic transmission
[Free subject headings]: PARKINSONS-DISEASE | SYNAPTIC FAILURE | NEURODEGENERATION | DYSFUNCTION | PROPAGATION | EXPRESSION
[DDC subject group]: DDC 570 / Life sciences | DDC 610 / Medicine & health
Metadata
Show full item recordDOI & citation
Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-48929
Kiechle, Martin et al. (2023): In vivo protein complementation demonstrates presynaptic α-Synuclein oligomerization and age-dependent accumulation of 8–16-mer oligomer species. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-48929
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