Objectives: Currently, the exact reasons why different ?-synucleinopathies exhibit variable pathologies and phenotypes are still unknown. A potential explanation may be the existence of distinctive ?-synuclein conformers or strains. Here, we intend to analyze the seeding activity of dementia with Lewy bodies (DLB) and Parkinson's disease (PD) brain-derived ?-synuclein seeds by real-time quaking-induced conversion (RT-QuIC) and to investigate the structure and morphology of the ?-synuclein aggregates generated by RT-QuIC. Methods: A misfolded ?-synuclein-enriched brain fraction from frontal cortex and substantia nigra pars compacta tissue, isolated by several filtration and centrifugation steps, was subjected to ?-synuclein/RT-QuIC analysis. Our study included neuropathologically well-characterized cases with DLB, PD, and controls (Ctrl). Biochemical and morphological analyses of RT-QuIC products were conducted by western blot, dot blot analysis, Raman spectroscopy, atomic force microscopy, and transmission electron microscopy. Results: Independently from the brain region, we observed different seeding kinetics of ?-synuclein in the RT-QuIC in patients with DLB compared to PD and Ctrl. Biochemical characterization of the RT-QuIC product indicated the generation of a proteinase K-resistant and fibrillary ?-synuclein species in DLB-seeded reactions, whereas PD and control seeds failed in the conversion of wild-type ?-synuclein substrate. Interpretation: Structural variances of ?-synuclein seeding kinetics and products in DLB and PD indicated, for the first time, the existence of different ?-synuclein strains in these groups. Therefore, our study contributes to a better understanding of the clinical heterogeneity among ?-synucleinopathies, offers an opportunity for a specific diagnosis, and opens new avenues for the future development of strain-specific therapies. Ann Neurol 2019;85:691-703.

Seeding variability of different alpha synuclein strains in synucleinopathies

Banchelli M;D'Andrea C;de Angelis M;Matteini P;
2019

Abstract

Objectives: Currently, the exact reasons why different ?-synucleinopathies exhibit variable pathologies and phenotypes are still unknown. A potential explanation may be the existence of distinctive ?-synuclein conformers or strains. Here, we intend to analyze the seeding activity of dementia with Lewy bodies (DLB) and Parkinson's disease (PD) brain-derived ?-synuclein seeds by real-time quaking-induced conversion (RT-QuIC) and to investigate the structure and morphology of the ?-synuclein aggregates generated by RT-QuIC. Methods: A misfolded ?-synuclein-enriched brain fraction from frontal cortex and substantia nigra pars compacta tissue, isolated by several filtration and centrifugation steps, was subjected to ?-synuclein/RT-QuIC analysis. Our study included neuropathologically well-characterized cases with DLB, PD, and controls (Ctrl). Biochemical and morphological analyses of RT-QuIC products were conducted by western blot, dot blot analysis, Raman spectroscopy, atomic force microscopy, and transmission electron microscopy. Results: Independently from the brain region, we observed different seeding kinetics of ?-synuclein in the RT-QuIC in patients with DLB compared to PD and Ctrl. Biochemical characterization of the RT-QuIC product indicated the generation of a proteinase K-resistant and fibrillary ?-synuclein species in DLB-seeded reactions, whereas PD and control seeds failed in the conversion of wild-type ?-synuclein substrate. Interpretation: Structural variances of ?-synuclein seeding kinetics and products in DLB and PD indicated, for the first time, the existence of different ?-synuclein strains in these groups. Therefore, our study contributes to a better understanding of the clinical heterogeneity among ?-synucleinopathies, offers an opportunity for a specific diagnosis, and opens new avenues for the future development of strain-specific therapies. Ann Neurol 2019;85:691-703.
2019
Istituto di Fisica Applicata - IFAC
Inglese
85
691
703
http://www.scopus.com/record/display.url?eid=2-s2.0-85063529329&origin=inward
Sì, ma tipo non specificato
Parkinson
synuclein
RT-QuIC
Raman spectroscopy
atomic force microscopy
1
4
info:eu-repo/semantics/article
262
Candelise N.; Schmitz M.; Llorens F.; VillarPique A.; Cramm M.; Thom T.; da Silva Correia S.M.; da Cunha J.E.G.; Mobius W.; Outeiro T.F.; Alvarez V.G....espandi
01 Contributo su Rivista::01.01 Articolo in rivista
none
   ERA-NET ON NANOMEDICINE
   EuroNanoMed III
   H2020
   723770
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/366702
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