Constant-pH Simulations of a Coarse-Grained Model of Polyfunctional Weak Charged Biopolymers

Author:

Naranjo David12ORCID,Blanco Pablo M.13ORCID,Garcés Josep L.4,Madurga Sergio1ORCID,Mas Francesc1ORCID

Affiliation:

1. Department of Material Science and Physical Chemistry, Institute of Theoretical and Computational Chemistry (IQTC), University of Barcelona (UB), 08028 Barcelona, Catalonia, Spain

2. Department of Chemical Engineering, Center for Research in Multiscale Science and Engineering (CCEM), Polytechnic University of Catalonia (UPC), 08019 Barcelona, Catalonia, Spain

3. Department of Physics, Faculty of Natural Sciences, Norwegian University of Science and Technology (NTNU), 7034 Trondheim, Norway

4. Department of Chemistry, Physics and Environmental and Soil Sciences & Agrotecnio, University of Lleida (UdL), 25003 Lleida, Catalonia, Spain

Abstract

A coarse-grained model of linear polyfunctional weak charged biopolymers was implemented, formed of different proportions of acid-base groups resembling the composition of humic substances. These substances are mainly present in dissolved organic matter in natural water. The influence of electrostatic interactions computing methods, factors concerning the structure of the chain, different functional groups, and the ionic strength on polyelectrolytes were studied. Langevin dynamics with constant pH simulations were performed using the ESPResSO package and the Python-based Molecule Builder for ESPResSo (pyMBE) library. The coverage was fitted to a polyfunctional Frumkin isotherm, with a mean-field interaction between charged beads. The composition of the chain affects the charge while ionic strength affects both the charge and the radius of gyration. Additionally, the parameters intrinsic to the polyelectrolyte model were well reproduced by fitting the polyfunctional Frumkin isotherm. In contrast, the non-intrinsic parameters depended on the ionic strength. The method developed and applied to a polyfunctional polypeptide model, that resembles a humic acid, will be very useful for characterizing biopolymers with several acid-base functional groups, where their structure, the composition of the different functional groups, and the determination of the main intrinsic proton binding constants and their proportion are not exactly known.

Funder

Generalitat de Catalunya

Spanish Structures of Excellence María de Maeztu program

Spanish Ministry of Science and Innovation

Spanish Ministry of Universities

European Union’s Horizon Europe research and innovation programme

Publisher

MDPI AG

Reference53 articles.

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