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Quantifying the concentration dependence of sedimentation coefficients for globular macromolecules: a continuing age-old problem

Winzor, Donald J.; Dinu, Vlad; Scott, David J.; Harding, Stephen E.

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Authors

Donald J. Winzor

VLAD DINU VLAD.DINU1@NOTTINGHAM.AC.UK
Research Fellow

DAVID SCOTT DAVID.SCOTT@NOTTINGHAM.AC.UK
Associate Professor & Reader in Physical Biochemistry

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STEPHEN HARDING STEVE.HARDING@NOTTINGHAM.AC.UK
Professor of Applied Biochemistry



Abstract

This retrospective investigation has established that the early theoretical attempts to directly incorporate the consequences of radial dilution into expressions for variation of the sedimentation coefficient as a function of the loading concentration in sedimentation velocity experiments require concentration distributions exhibiting far greater precision than that achieved by the optical systems of past and current analytical ultracentrifuges. In terms of current methods of sedimentation coefficient measurement, until such improvement is made, the simplest procedure for quantifying linear s-c dependence (or linear concentration dependence of 1/s) for dilute systems therefore entails consideration of the sedimentation coefficient obtained by standard c(s), g*(s) or G(s) analysis) as an average parameter (s¯) that pertains to the corresponding mean plateau concentration (following radial dilution) (c¯) over the range of sedimentation velocity distributions used for the determination of s¯. The relation of this with current descriptions of the concentration dependence of the sedimentation and translational diffusion coefficients is considered, together with a suggestion for the necessary improvement in the optical system.

Citation

Winzor, D. J., Dinu, V., Scott, D. J., & Harding, S. E. (2021). Quantifying the concentration dependence of sedimentation coefficients for globular macromolecules: a continuing age-old problem. Biophysical Reviews, 13(2), 273-288. https://doi.org/10.1007/s12551-021-00793-x

Journal Article Type Article
Acceptance Date Mar 4, 2021
Online Publication Date Apr 10, 2021
Publication Date Apr 1, 2021
Deposit Date Mar 29, 2021
Publicly Available Date Apr 1, 2021
Journal Biophysical Reviews
Print ISSN 1867-2450
Electronic ISSN 1867-2469
Publisher Springer Verlag
Peer Reviewed Peer Reviewed
Volume 13
Issue 2
Pages 273-288
DOI https://doi.org/10.1007/s12551-021-00793-x
Keywords Biophysics; Molecular Biology; Structural Biology
Public URL https://nottingham-repository.worktribe.com/output/5421880

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