Modeling the dimerization of amyloid- <i>β</i> (1–40) and amyloid- <i>β</i> (1–42)

C Christian Sommerfeld (Institut für Physik, Martin–Luther–Universität Halle–Wittenberg , 06099 Halle,) W Wolfgang Paul (Institut für Physik, Martin–Luther–Universität Halle–Wittenberg , 06099 Halle,)

Abstract

The early stages of aggregation of amyloidogenic proteins, such as amyloid-β (Aβ), are of great interest due to the possible pathogenic nature of small oligomeric aggregates. To shed light on the thermodynamics of this aggregation process, we perform a comparative study of the dimerization of Aβ(1–40) and Aβ(1–42) using an intermediate resolution protein model (PRIME20) and a flat-histogram Monte Carlo technique, stochastic approximation Monte Carlo. We show that aggregation drives secondary structure formation in both variants of Aβ. The dimers show a prevalence of β-sheet formation near the N-terminus of the chains and the beginning of β-sheet formation in the center of the chains, where the cross-beta structure will form for the mature amyloid fibril. Aβ(1–42) exhibits a stronger contribution of intermolecular hydrogen bonding compared to Aβ(1–40). It also shows a better defined intermolecular hydrogen-bonding pattern and less structural polymorphism of the dimer. Both findings constitute a molecular picture for the observed phenomenology of faster aggregation and growth of Aβ(1–42) amyloid fibrils compared to the Aβ(1–40) ones.

Article Details

Volume / Issue Vol. 163, Issue 19
Published November 21, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (2)

C

Christian Sommerfeld

Institut für Physik, Martin–Luther–Universität Halle–Wittenberg , 06099 Halle,

W

Wolfgang Paul

Institut für Physik, Martin–Luther–Universität Halle–Wittenberg , 06099 Halle,