Partitioning and diffusion of proteins and linear polymers in polyacrylamide gels
- PMID: 8785307
- PMCID: PMC1225077
- DOI: 10.1016/S0006-3495(96)79712-6
Partitioning and diffusion of proteins and linear polymers in polyacrylamide gels
Abstract
The equilibrium partition coefficient (K) and diffusion coefficient (Dgel) of two proteins and two linear polymers were measured as a function of polymer content of a 2.7% cross-linked polyacrylamide (PA) gel. The gel concentration, expressed as a volume percentage of PA in the gel (phi), varied between 0 and 14%. The measurements were made by fluorescence spectroscopy; fluorescent dyes were covalently attached to the macromolecules. The dependence of K on phi for the proteins agrees with a model of the gel network as randomly placed, impenetrable rods. The diffusion data are interpreted in terms of an effective medium theory for the mobility of a sphere in a Brinkman fluid. Using values of the Brinkman parameter in the literature, the effective medium model with no adjustable parameters fits the diffusion data for the proteins very well but underpredicts Dgel for the linear polymers. The gel effect on partitioning is significantly greater than that on diffusion. The permeability (KDgel) of bovine serum albumin decreased by 10(3) over the range phi = 0 --> 8%, and the ratio of permeabilities for ribonuclease compared to BSA increased from 2 to 30.
Comment in
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A hydrodynamic model for hindered diffusion of proteins and micelles in hydrogels.Biophys J. 2000 Dec;79(6):3350-3. doi: 10.1016/S0006-3495(00)76566-0. Biophys J. 2000. PMID: 11203465 Free PMC article. No abstract available.
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