Biophysical and structural characterisation of a quasi-stable toxic dimer of amyloid Aβ42 peptide tethered at position 34

Abstract Non-fibrillar oligomeric forms of amyloid β (Aβ) mediate toxicity in Alzheimer’s disease (AD) with Aβ accumulation preceding tau aggregation and synaptic damage. Aβ oligomerization is thought to initiate from the smallest stable unit, the dimer, yet structural details of this species remain unclear due to its transient nature. Here, we synthesized a quasi-stable E22P,L34DAZ-Aβ 42 dimer incorporating a “toxic” turn at residues 22–23 and a flexible DAZ ( l,l -2,8-diaminoazelaic acid) linker at L34, a residue critical in Aβ 42 dimer and tetramer interfaces based on our crystallographic data. Thioflavin-T (ThT) assays, transmission electron microscopy (TEM), circular dichroism (CD) and electrospray ionization mass spectrometry (ESI-MS) showed that this dimer formed non-fibrillar aggregates predominantly tetramers (~16%) and dodecamers (~77%), as confirmed by small-angle X-ray scattering (SAXS). SAXS modelling based on crystallographic Aβ structures suggests compact, folded β-hairpin oligomers that retain the “toxic” turn at residues 22–23 and assemble into globular non-fibrillar aggregates. The dimer oligomers exhibited cytotoxicity toward THP-1 cells at low nanomolar levels.

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Journal
npj Dementia
Published
2026-09-28
DOI
https://doi.org/10.1038/s44400-026-00118-3
Primary Topic
Alzheimer's disease research and treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

Biophysical and structural characterisation of a quasi-stable toxic dimer of amyloid Aβ42 peptide tethered at position 34

Mizuho Hanaki, Kazuhiro Irie, Yumi Irie, Yusuke Hanaki et al.
npj Dementia
Alzheimer's disease research and treatments
article

Biophysical and structural characterisation of a quasi-stable toxic dimer of amyloid Aβ42 peptide tethered at position 34

Mizuho Hanaki, Kazuhiro Irie, Yumi Irie, Yusuke Hanaki, Victor A. Streltsov, Colin L. Masters, Yusuke Kageyama
article en

Abstract

Abstract Non-fibrillar oligomeric forms of amyloid β (Aβ) mediate toxicity in Alzheimer’s disease (AD) with Aβ accumulation preceding tau aggregation and synaptic damage. Aβ oligomerization is thought to initiate from the smallest stable unit, the dimer, yet structural details of this species remain unclear due to its transient nature. Here, we synthesized a quasi-stable E22P,L34DAZ-Aβ 42 dimer incorporating a “toxic” turn at residues 22–23 and a flexible DAZ ( l,l -2,8-diaminoazelaic acid) linker at L34, a residue critical in Aβ 42 dimer and tetramer interfaces based on our crystallographic data. Thioflavin-T (ThT) assays, transmission electron microscopy (TEM), circular dichroism (CD) and electrospray ionization mass spectrometry (ESI-MS) showed that this dimer formed non-fibrillar aggregates predominantly tetramers (~16%) and dodecamers (~77%), as confirmed by small-angle X-ray scattering (SAXS). SAXS modelling based on crystallographic Aβ structures suggests compact, folded β-hairpin oligomers that retain the “toxic” turn at residues 22–23 and assemble into globular non-fibrillar aggregates. The dimer oligomers exhibited cytotoxicity toward THP-1 cells at low nanomolar levels.

npj DementiaVol. 2(1)
Doshisha University (JP), Shiga University of Medical Science (JP), The University of Melbourne (AU), Kagawa University (JP), Kyoto University (JP), Florey Institute of Neuroscience and Mental Health (AU)
National Science Foundation, Australian Nuclear Science and Technology Organisation, European Commission, Australian Synchrotron, Japan Society for the Promotion of Science, Institute for Chemical Research, Kyoto University, Division of Materials Research
Openalex Percentile: Top 12%
Alzheimer's disease research and treatments
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