Temperature Dependence of NMR Order Parameters and Protein Dynamics

Francesca Massi and Arthur G. Palmer, III*
Department of Biochemistry and Molecular Biophysics, Columbia University, New York, New York 10032
J. Am. Chem. Soc., 2003, 125 (37), pp 11158–11159
DOI: 10.1021/ja035605k
Publication Date (Web): August 22, 2003
Copyright © 2003 American Chemical Society
*

In papers with more than one author, the asterisk indicates the name of the author to whom inquiries about the paper should be addressed.

, agp6@columbia.edu

Abstract

Abstract Image

The helical subdomain, HP36, of the F-actin-binding headpiece domain of chicken villin, is the smallest naturally occurring polypeptide that folds to a thermostable compact structure. Unconstrained molecular dynamics simulations and constrained molecular dynamics simulations using umbrella sampling are used to study the temperature dependence of internal motions of the backbone amide moieties of HP36. The potential of mean force (PMF) for the N−H bond vector, determined from the constrained simulations, is found to be temperature dependent. A simple analytical expression is derived that describes the temperature dependence of the PMF. The parameters of this model are obtained from the PMF, from the unconstrained molecular dynamics simulations, or from experimental values of the generalized order parameter. The results provide a linkage between experimental and theoretical measures of the temperature dependence of protein motions.

Tools

SciFinder Links

SciFinder subscribers:  Click to sign in | Not a SciFinder subscriber? Learn more at www.cas.org

History

  • Published In Issue September 17, 2003
  • Received April 13, 2003

Recommend & Share

Related Content

Other ACS content by these authors: