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Aβ Oligomer Dissociation Is Catalyzed by Fibril Surfaces
Biochemistry and Structural Biology, Lund University, Lund 221 00, Sweden; Centre for Misfolding Diseases Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, U.K.ORCID iD: 0000-0003-3055-607X
Biochemistry and Structural Biology, Lund University, Lund 221 00, Sweden.ORCID iD: 0000-0001-6171-9703
KTH, Centres, Science for Life Laboratory, SciLifeLab. KTH, School of Engineering Sciences (SCI), Applied Physics, Biophysics.ORCID iD: 0000-0002-1850-5440
Biochemistry and Structural Biology, Lund University, Lund 221 00, Sweden.ORCID iD: 0000-0003-0656-9225
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2024 (English)In: ACS Chemical Neuroscience, E-ISSN 1948-7193, Vol. 15, no 11, p. 2296-2307Article in journal (Refereed) Published
Abstract [en]

Oligomeric assemblies consisting of only a few protein subunits are key species in the cytotoxicity of neurodegenerative disorders, such as Alzheimer’s and Parkinson’s diseases. Their lifetime in solution and abundance, governed by the balance of their sources and sinks, are thus important determinants of disease. While significant advances have been made in elucidating the processes that govern oligomer production, the mechanisms behind their dissociation are still poorly understood. Here, we use chemical kinetic modeling to determine the fate of oligomers formed in vitro and discuss the implications for their abundance in vivo. We discover that oligomeric species formed predominantly on fibril surfaces, a broad class which includes the bulk of oligomers formed by the key Alzheimer’s disease-associated Aβ peptides, also dissociate overwhelmingly on fibril surfaces, not in solution as had previously been assumed. We monitor this “secondary nucleation in reverse” by measuring the dissociation of Aβ42 oligomers in the presence and absence of fibrils via two distinct experimental methods. Our findings imply that drugs that bind fibril surfaces to inhibit oligomer formation may also inhibit their dissociation, with important implications for rational design of therapeutic strategies for Alzheimer’s and other amyloid diseases.

Place, publisher, year, edition, pages
American Chemical Society (ACS) , 2024. Vol. 15, no 11, p. 2296-2307
Keywords [en]
Alzheimer’s, dissociation, fibrils, inhibitor, kinetics, oligomer, therapeutic
National Category
Molecular Biology Physical Chemistry Neurosciences
Identifiers
URN: urn:nbn:se:kth:diva-366793DOI: 10.1021/acschemneuro.4c00127ISI: 001231817300001PubMedID: 38785363Scopus ID: 2-s2.0-85194238974OAI: oai:DiVA.org:kth-366793DiVA, id: diva2:1983419
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QC 20250710

Available from: 2025-07-10 Created: 2025-07-10 Last updated: 2025-07-10Bibliographically approved

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Wennmalm, Stefan

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