The role of conformational entropy in molecular recognition by calmodulin
Open Access
- 11 April 2010
- journal article
- research article
- Published by Springer Nature in Nature Chemical Biology
- Vol. 6 (5) , 352-358
- https://doi.org/10.1038/nchembio.347
Abstract
NMR-measured order parameters of methyl groups can be used to quantitate the entropy of protein conformational change associated with calmodulin-peptide ligand interactions. This conformational entropy is a major contributor to the affinity of calmodulin interactions. The physical basis for high-affinity interactions involving proteins is complex and potentially involves a range of energetic contributions. Among these are changes in protein conformational entropy, which cannot yet be reliably computed from molecular structures. We have recently used changes in conformational dynamics as a proxy for changes in conformational entropy of calmodulin upon association with domains from regulated proteins. The apparent change in conformational entropy was linearly related to the overall binding entropy. This view warrants a more quantitative foundation. Here we calibrate an 'entropy meter' using an experimental dynamical proxy based on NMR relaxation and show that changes in the conformational entropy of calmodulin are a significant component of the energetics of binding. Furthermore, the distribution of motion at the interface between the target domain and calmodulin is surprisingly noncomplementary. These observations promote modification of our understanding of the energetics of protein-ligand interactions.Keywords
This publication has 67 references indexed in Scilit:
- Binding of Small-Molecule Ligands to Proteins: “What You See” Is Not Always “What You Get”Structure, 2009
- Traction stress in focal adhesions correlates biphasically with actin retrograde flow speedThe Journal of cell biology, 2008
- Re-Evaluation of the Model-Free Analysis of Fast Internal Motion in Proteins Using NMR RelaxationThe Journal of Physical Chemistry B, 2008
- Talin depletion reveals independence of initial cell spreading from integrin activation and tractionNature Cell Biology, 2008
- The initial steps of ovarian cancer cell metastasis are mediated by MMP-2 cleavage of vitronectin and fibronectinJournal of Clinical Investigation, 2008
- Loss of E-Cadherin Promotes Ovarian Cancer Metastasis via α5-Integrin, which Is a Therapeutic TargetCancer Research, 2008
- Conformational Dynamics of Calmodulin in Complex with the Calmodulin-Dependent Kinase Kinase α Calmodulin-Binding DomainBiochemistry, 2006
- Characterization of the Fast Dynamics of Protein Amino Acid Side Chains Using NMR Relaxation in SolutionChemical Reviews, 2006
- Interfaces and the driving force of hydrophobic assemblyNature, 2005
- The CCP4 suite: programs for protein crystallographyActa Crystallographica Section D-Biological Crystallography, 1994