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The Hidden Cell-to-Cell Trail of α-Synuclein Aggregates

Neupane, Sandesh; De Cecco, Elena; Aguzzi, Adriano (2023). The Hidden Cell-to-Cell Trail of α-Synuclein Aggregates. Journal of Molecular Biology, 435(12):167930.

Abstract

The progressive accumulation of insoluble aggregates of the presynaptic protein alpha-synuclein (α-Syn) is a hallmark of neurodegenerative disorders including Parkinson's disease (PD), Multiple System Atrophy, and Dementia with Lewy Bodies, commonly referred to as synucleinopathies. Despite considerable progress on the structural biology of these aggregates, the molecular mechanisms mediating their cell-to-cell transmission, propagation, and neurotoxicity remain only partially understood. Numerous studies have highlighted the stereotypical spatiotemporal spreading of pathological α-Syn aggregates across different tissues and anatomically connected brain regions over time. Experimental evidence from various cellular and animal models indicate that α-Syn transfer occurs in two defined steps: the release of pathogenic α-Syn species from infected cells, and their uptake via passive or active endocytic pathways. Once α-Syn aggregates have been internalized, little is known about what drives their toxicity or how they interact with the endogenous protein to promote its misfolding and subsequent aggregation. Similarly, unknown genetic factors modulate different cellular responses to the aggregation and accumulation of pathogenic α-Syn species. Here we discuss the current understanding of the molecular phenomena associated with the intercellular spreading of pathogenic α-Syn seeds and summarize the evidence supporting the transmission hypothesis. Understanding the molecular mechanisms involved in α-Syn aggregates transmission is essential to develop novel targeted therapeutics against PD and related synucleinopathies.

Additional indexing

Item Type:Journal Article, refereed, further contribution
Communities & Collections:04 Faculty of Medicine > University Hospital Zurich > Institute of Neuropathology
Dewey Decimal Classification:570 Life sciences; biology
610 Medicine & health
Scopus Subject Areas:Life Sciences > Biophysics
Life Sciences > Structural Biology
Life Sciences > Molecular Biology
Uncontrolled Keywords:Molecular Biology, Structural Biology
Language:English
Date:1 June 2023
Deposited On:13 Feb 2023 15:28
Last Modified:23 Mar 2025 04:32
Publisher:Elsevier
ISSN:0022-2836
OA Status:Hybrid
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1016/j.jmb.2022.167930
PubMed ID:36566800
Project Information:
  • Funder: Fondazione Gelu
  • Grant ID:
  • Project Title:
  • Funder: FP7
  • Grant ID: 250356
  • Project Title: PRIONS - The prion protein in health and disease
  • Funder: SNSF
  • Grant ID: 183563
  • Project Title: PrP and its receptor GPR126: guardians of axomyelinic integrity and druggable targets against demyelinating diseases
  • Funder: SNSF
  • Grant ID: 207872
  • Project Title: Modifiers and cofactors of prion replication, toxicity and tropism
  • Funder: NOMIS Stiftung
  • Grant ID: Distinguished Scientist Grant
  • Project Title:
  • Funder: SystemsX.ch
  • Grant ID:
  • Project Title:
  • Funder: SNSF
  • Grant ID: 179040
  • Project Title: The prion protein in health and disease
  • Funder: Human Frontiers Science Program
  • Grant ID: RGP0001/2022
  • Project Title:
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  • Content: Published Version
  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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