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January 23, 2026The Journal of Physical Chemistry B0 citations

Aβ 42 Adopts a Stronger Binding Affinity to the Gold Surface than Aβ 40

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QTQuynh Mai ThaiSNSon Tung Ngo

Key Points

  • The aim is to compare binding affinities of Aβ peptides on gold surfaces to understand Alzheimer's disease progression.
  • Conducted atomistic simulations including molecular dynamics and steered-MD simulations.
  • Investigated binding processes of Aβ40 and Aβ42 dimers to gold nanosurface.
  • Analyzed rupture force, pulling work, and free energy using Jarzynski's method.
  • Aβ42 dimer shows a stronger binding affinity to gold compared to Aβ40 in terms of rupture force and free energy.
  • Van der Waals interaction energy is larger for Aβ42 than Aβ40 due to additional hydrophobic residues.
  • Aβ42 maintains a rigid β-hairpin during dissociation, while Aβ40 becomes a random coil.

Abstract

Soluble Aβ oligomers are categorized as major agents of Alzheimer's disease progression, instead of insoluble fibrils. The binding affinity of Aβ peptides on the gold surface is associated with the biocorona due to the Vroman effect. This phenomenon can be used to screen and/or remove highly toxic amyloid pieces using gold nanoparticles. In this context, the binding process of Aβ40 and Aβ42 dimers to the gold nanosurface was investigated via atomistic simulations, including molecular dynamics (MD) and steered-MD (SMD) simulations. In particular, the obtained results indicate that the Aβ17-42 dimer exhibits a stronger binding affinity to the gold surface than the Aβ17-40 dimer in terms of the rupture force, pulling work, and Jarzynski's free energy analyses. During this process, the van der Waals (vdW) interaction energy plays an important role, and Aβ17-42 adopts a significantly larger value compared with Aβ17-40. The enlarged interaction is caused by the additional hydrophobic residues at the C-terminus, including Ile41 and Ala42. Furthermore, free energy landscape outcomes demonstrate that Aβ17-42 maintains a rigid β-hairpin during the dissociation process, while Aβ17-40 becomes a random coil.

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Cite This Study

Thai et al. (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f27ahttps://doi.org/10.1021/acs.jpcb.5c07335
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