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Updated: Jul 2, 2025

Self-Assembly of Gamma-Modified Peptide Nucleic Acids into Complex Nanostructures in Organic Solvent Mixtures
Published on: June 26, 2020
The mechanism of self-association of human γ-D crystallin from molecular dynamics simulations
Sandi Brudar1, Barbara Hribar-Lee1
1University of Ljubljana, Faculty of Chemistry and Chemical Technology, Večna pot 113, Ljubljana, SI-1000, Slovenia.
Abstract:
The aggregation of human γ-D crystallin is associated with the age-onset cataract formation. Here, we extensively investigated the self-association mechanism of human γ-D crystallin through molecular dynamics computer simulations. By mutating the protein surface we found that electrostatic interactions between charged amino acids play a crucial role in its self-association. We have confirmed the two-fold role of arginine molecules. If they are located as residues on the protein surface they can initiate protein contacts and contribute to their stickiness with noteworthy hydrophobic interactions through stacking of their methylene groups. But if they are added as free arginine in the protein solution they can also stabilize it, by associating with the protein surface and also with themselves to form effective inter-protein spacers that obstruct protein aggregation.
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