Curvature model for nanoparticle size effects on peptide fibril stability and molecular dynamics simulation data

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Date
2022
Volume
45
Issue
Journal
Data in Brief
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Publisher
Amsterdam [u.a.] : Elsevier
Abstract

Nanostructured surfaces are widespread in nature and are being further developed in materials science. This makes them highly relevant for biomolecules, such as peptides. In this data article, we present a curvature model and molecular dynamics (MD) simulation data on the influence of nanoparticle size on the stability of amyloid peptide fibrils related to our research article entitled “Mechanistic insights into the size-dependent effects of nanoparticles on inhibiting and accelerating amyloid fibril formation” (John et al., 2022) [1]. We provide the code to perform MD simulations in GROMACS 4.5.7 software of arbitrarily chosen biomolecule oligomers adsorbed on a curved surface of chosen nanoparticle size. We also provide the simulation parameters and data for peptide oligomers of Aß40, NNFGAIL, GNNQQNY, and VQIYVK. The data provided allows researchers to further analyze our MD simulations and the curvature model allows for a better understanding of oligomeric structures on surfaces.

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Citation
John, T., Martin, L. L., Risselada, H. J., & Abel, B. (2022). Curvature model for nanoparticle size effects on peptide fibril stability and molecular dynamics simulation data (Amsterdam [u.a.] : Elsevier). Amsterdam [u.a.] : Elsevier. https://doi.org//10.1016/j.dib.2022.108598
License
CC BY 4.0 Unported