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review article

Single-molecule studies of amyloid proteins: from biophysical properties to diagnostic perspectives

Wu, Jinming
•
Cao, Chan  
•
Loch, Rolf Antonie
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January 1, 2020
Quarterly Reviews Of Biophysics

In neurodegenerative diseases, a wide range of amyloid proteins or peptides such as amyloid-beta and alpha-synuclein fail to keep native functional conformations, followed by misfolding and self-assembling into a diverse array of aggregates. The aggregates further exert toxicity leading to the dysfunction, degeneration and loss of cells in the affected organs. Due to the disordered structure of the amyloid proteins, endogenous molecules, such as lipids, are prone to interact with amyloid proteins at a low concentration and influence amyloid cytotoxicity. The heterogeneity of amyloid proteinscomplicates the understanding of the amyloid cytotoxicity when relying only on conventional bulk and ensemble techniques. As complementary tools, single-molecule techniques (SMTs) provide novel insights into the different subpopulations of a heterogeneous amyloid mixture as well as the cytotoxicity, in particular as involved in lipid membranes. This review focuses on the recent advances of a series of SMTs, including single-molecule fluorescence imaging, single-molecule force spectroscopy and single-nanopore electrical recording, for the understanding of the amyloid molecular mechanism. The working principles, benefits and limitations of each technique are discussed and compared in amyloid protein related studies.. We also discuss why SMTs show great potential and are worthy of further investigation with feasibility studies as diagnostic tools of neurodegenerative diseases and which limitations are to be addressed.

  • Details
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Type
review article
DOI
10.1017/S0033583520000086
Web of Science ID

WOS:000585181100001

Author(s)
Wu, Jinming
Cao, Chan  
Loch, Rolf Antonie
Tiiman, Ann
Luo, Jinghui
Date Issued

2020-01-01

Publisher

CAMBRIDGE UNIV PRESS

Published in
Quarterly Reviews Of Biophysics
Volume

53

Start page

e12

Subjects

Biophysics

•

amyloid protein

•

single-molecule techniques

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single-molecule fluorescence imaging

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single-molecule force spectroscopy

•

single-nanopore electrical recording

•

neurodegenerative diseases

•

atomic-force microscopy

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a-beta oligomers

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alpha-synuclein binding

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alzheimers-disease

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cerebrospinal-fluid

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neurodegenerative disease

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correlation spectroscopy

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membrane interaction

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peptide interactions

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supported membranes

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPDALPE  
Available on Infoscience
November 24, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/173562
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