Modeling the dimerization of amyloid- <i>β</i> (1–40) and amyloid- <i>β</i> (1–42)
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
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (2)
Christian Sommerfeld
Institut für Physik, Martin–Luther–Universität Halle–Wittenberg , 06099 Halle,
Wolfgang Paul
Institut für Physik, Martin–Luther–Universität Halle–Wittenberg , 06099 Halle,