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PMID: 17609128 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Rigid body refinement of protein complexes with long-range distance restraints from pulsed dipolar ESR.

Methods in enzymology ·Vol. 423 ·2007-00-00 ·Pages 117-33

Bhatnagar J, Freed JH, Crane BR

Abstract

The modeling of protein-protein complexes greatly benefits from the incorporation of experimental distance restraints. Pulsed dipolar electron spin resonance spectroscopy is one such powerful technique for obtaining long-range distance restraints in protein complexes. Measurements of the dipolar interaction between two spins placed specifically within a protein complex give information about the spin-spin separation distance. We have developed a convenient method to incorporate such long-range distance information in the modeling of protein-protein complexes that is based on rigid body refinement of the protein components with the software Crystallography and NMR System (CNS). Factors affecting convergence such as number of restraints, error allocation scheme, and number and position of spin labeling sites were investigated with real and simulated data. The use of 4 to 5 different labeling sites on each protein component was found to provide sufficient coverage for producing accuracies limited by the uncertainty in the spin-label conformation within the complex. With an asymmetric scheme of allocating this uncertainty, addition of simulated restraints revealed the importance of longer distances within a limited set of total restraints. We present two case studies: (1) refinement of the complex formed between the histidine kinase CheA and its coupling protein CheW, and (2) refinement of intra-helical separations in the protein a-synuclein bound to micelles.

MeSH Terms
Bacterial Proteins/metabolism Binding Sites Computational Biology/methods Crystallography, X-Ray/methods Electron Spin Resonance Spectroscopy/methods Escherichia coli Proteins/metabolism Histidine Kinase Magnetic Resonance Spectroscopy Membrane Proteins/metabolism Methyl-Accepting Chemotaxis Proteins Micelles Models, Chemical Molecular Conformation Protein Conformation Protein Kinases/chemistry Protein Structure, Secondary Proteins/chemistry Software Spectrophotometry/methods alpha-Synuclein/chemistry
Chemicals
Bacterial Proteins CheW protein, E coli Escherichia coli Proteins Membrane Proteins Methyl-Accepting Chemotaxis Proteins Micelles Proteins alpha-Synuclein Protein Kinases Histidine Kinase cheA protein, E coli
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Bhatnagar Jaya
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY, USA.
Freed Jack H
Crane Brian R
Article Info
Journal
Methods in enzymology
Abbr.
Methods Enzymol
ISSN
0076-6879
Published
2007-00-00
Pages
117-33
Language
English
Region
United States
NLM ID
0212271
Subset
IM
Grants
NCRR NIH HHS · P41 RR016292 · United States
NCRR NIH HHS · P41 RR016292-07 · United States
NIGMS NIH HHS · R01 GM066775 · United States
NIBIB NIH HHS · R01 EB03150 · United States
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