Issue 10, 2024

Elucidating the influence of electrostatic force on the re-arrangement of H-bonds of protein polymers in the presence of salts

Abstract

Polyampholytes/proteins have an intriguing network of hydrogen bonds (H-bonds), especially their secondary structure, which plays a crucial role in determining the conformational stability of the polymer. The changes in protein secondary structure in the protein–salt system have been extensively deciphered by researchers, yet their pathways for breakage and recreation are unknown. Understanding the mechanism of protein conformational changes towards their biological activities, like protein folding, remains one of the main challenges and requires multiscale analysis of this strongly correlated system. Herein, salts have been used to reveal the re-arrangement behavior in the H-bond network of proteins under the influence of electrostatic interactions, as the strength of electrostatic forces is much stronger than that of H-bonds. At lower salt concentrations, there are negligible changes in the secondary structures as the electrostatic forces induced by the salt ions are less. Later, the existing H-bonds break and reconstruct new H-bonds at higher salt concentrations due to the influence of the stronger electrostatic interaction induced by the large number of salt ions. Molecular dynamics (MD) simulations and FTIR studies have been used rigorously to decipher the reason behind the re-arrangement of the H-bonds within gelatin (protein). The re-arrangement in the H-bond has also been observed with time from simulations and experiments. Thus, this study could provide a fresh perspective on the conformational changes of polyampholytes/proteins and will also influence the studies of protein folding–unfolding interaction in the presence of salt ions.

Graphical abstract: Elucidating the influence of electrostatic force on the re-arrangement of H-bonds of protein polymers in the presence of salts

Supplementary files

Article information

Article type
Paper
Submitted
26 Oct 2023
Accepted
06 Feb 2024
First published
07 Feb 2024

Soft Matter, 2024,20, 2361-2373

Elucidating the influence of electrostatic force on the re-arrangement of H-bonds of protein polymers in the presence of salts

T. Basu, S. Das and S. Majumdar, Soft Matter, 2024, 20, 2361 DOI: 10.1039/D3SM01440A

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