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Updated: Jan 31, 2026

Staining of Proteins in Gels with Coomassie G-250 without Organic Solvent and Acetic Acid
Published on: August 14, 2009
Effect of protein-protein interactions and solvent viscosity on the rotational diffusion of proteins in crowded
Grzegorz Nawrocki1, Alp Karaboga, Yuji Sugita
1Department of Biochemistry and Molecular Biology, Michigan State University, 603 Wilson Rd., Room 218 BCH, East Lansing, MI 48824, USA. mfeiglab@gmail.com.
Abstract:
The rotational diffusion of a protein in the presence of protein crowder molecules was analyzed via computer simulations. Cluster formation as a result of transient intermolecular contacts was identified as the dominant effect for reduced rotational diffusion upon crowding. The slow-down in diffusion was primarily correlated with direct protein-protein contacts rather than indirect interactions via shared hydration layers. But increased solvent viscosity due to crowding contributed to a lesser extent. Key protein-protein contacts correlated with a slow-down in diffusion involve largely interactions between charged and polar groups suggesting that the surface composition of a given protein and the resulting propensity for forming interactions with surrounding proteins in a crowded cellular environment may be the major determinant of its diffusive properties.
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