A Model of Interdomain Mobility in a Multidomain Protein
- 24 February 2007
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 129 (11) , 3315-3327
- https://doi.org/10.1021/ja067667r
Abstract
Domain mobility plays an essential role in the biological function of multidomain systems. The characteristic times of domain motions fall into the interval from nano- to milliseconds, amenable to NMR studies. Proper analysis of NMR relaxation data for these systems in solution has to account for interdomain motions, in addition to the overall tumbling and local intradomain dynamics. Here we propose a model of interdomain mobility in a multidomain protein, which considers domain reorientations as exchange/interconversion between two distinct conformational states of the molecule, combined with fully anisotropic overall tumbling. Analysis of 15N-relaxation data for Lys48-linked diubiquitin at pH 4.5 and 6.8 showed that this model adequately fits the experimental data and allows characterization of both structural and motional properties of diubiquitin, thus providing information about the relative orientation of ubiquitin domains in both interconverting states. The analysis revealed that the two domains reorient on a time scale of 9−30 ns, with the amplitudes sufficient for allowing a protein ligand access to the binding sites sequestered at the interface in the closed conformation. The analysis of a possible mechanism controlling the equilibrium between the interconverting states in diubiquitin points toward protonation of His68, which results in three different charged states of the molecule, with zero, +e, and +2e net charge. Only two of the three states are noticeably populated at pH 4.5 or 6.8, which assures applicability of the two-state model to diubiquitin at these conditions. We also compare our model with the “extended model-free” approach and discuss possible future developments of the model.Keywords
This publication has 38 references indexed in Scilit:
- Analysis of interdomain dynamics in a two-domain protein using residual dipolar couplings together with15N relaxation dataMagnetic Resonance in Chemistry, 2006
- Protein Dynamics from NMR: The Slowly Relaxing Local Structure Analysis Compared with Model-Free AnalysisThe Journal of Physical Chemistry A, 2006
- Orienting domains in proteins using dipolar couplings measured by liquid-state NMR: differences in solution and crystal forms of maltodextrin binding protein loaded with β-cyclodextrinJournal of Molecular Biology, 2000
- An Approach to Direct Determination of Protein Dynamics from 15N NMR Relaxation at Multiple Fields, Independent of Variable 15N Chemical Shift Anisotropy and Chemical Exchange ContributionsJournal of the American Chemical Society, 1999
- Domain Orientation and Dynamics in Multidomain Proteins from Residual Dipolar CouplingsBiochemistry, 1999
- Smoluchowski dynamics of the vnd/NK-2 homeodomain fromDrosophila melanogaster: First-order mode-coupling approximationBiopolymers, 1999
- MOLMOL: A program for display and analysis of macromolecular structuresJournal of Molecular Graphics, 1996
- Long-Range Motional Restrictions in a Multidomain Zinc-Finger Protein from Anisotropic TumblingScience, 1995
- Deviations from the simple two-parameter model-free approach to the interpretation of nitrogen-15 nuclear magnetic relaxation of proteinsJournal of the American Chemical Society, 1990
- Stochastic-molecular theory of spin–relaxation for liquid crystalsThe Journal of Chemical Physics, 1977