Multiple Scale Reorganization of Electrostatic Complexes of PolyStyrene Sulfonate and Lysozyme
Fabrice Cousin (LLB), J\'er\'emie Gummel (LLB), Daniel Clemens,, Isabelle Grillo (ILL), Fran\c{c}ois Bou\'e (LLB)

TL;DR
This study uses SANS to explore how physicochemical changes affect the structure and stability of lysozyme-PSS complexes, revealing that salt and dilution influence size and network formation without altering core structure.
Contribution
It provides detailed insights into the stability, structural organization, and effects of salt and dilution on lysozyme-PSS complexes, highlighting the preservation of protein conformation.
Findings
Dilution destabilizes the network but not the core structure.
Salt promotes growth and coalescence of complexes without changing core structure.
Native protein conformation is preserved within the complexes.
Abstract
We report on a SANS investigation into the potential for these structural reorganization of complexes composed of lysozyme and small PSS chains of opposite charge if the physicochemical conditions of the solutions are changed after their formation. Mixtures of solutions of lysozyme and PSS with high matter content and with an introduced charge ratio [-]/[+]intro close to the electrostatic stoichiometry, lead to suspensions that are macroscopically stable. They are composed at local scale of dense globular primary complexes of radius ~ 100 {\AA}; at a higher scale they are organized fractally with a dimension 2.1. We first show that the dilution of the solution of complexes, all other physicochemical parameters remaining constant, induces a macroscopic destabilization of the solutions but does not modify the structure of the complexes at submicronic scales. This suggests that the…
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