Published January 18, 2012 | Version Published + Supplemental Material
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Structural Analysis and Stochastic Modelling Suggest a Mechanism for Calmodulin Trapping by CaMKII

  • 1. ROR icon European Bioinformatics Institute

Abstract

Activation of CaMKII by calmodulin and the subsequent maintenance of constitutive activity through autophosphorylation at threonine residue 286 (Thr286) are thought to play a major role in synaptic plasticity. One of the effects of autophosphorylation at Thr286 is to increase the apparent affinity of CaMKII for calmodulin, a phenomenon known as "calmodulin trapping". It has previously been suggested that two binding sites for calmodulin exist on CaMKII, with high and low affinities, respectively. We built structural models of calmodulin bound to both of these sites. Molecular dynamics simulation showed that while binding of calmodulin to the supposed low-affinity binding site on CaMKII is compatible with closing (and hence, inactivation) of the kinase, and could even favour it, binding to the high-affinity site is not. Stochastic simulations of a biochemical model showed that the existence of two such binding sites, one of them accessible only in the active, open conformation, would be sufficient to explain calmodulin trapping by CaMKII. We can explain the effect of CaMKII autophosphorylation at Thr286 on calmodulin trapping: It stabilises the active state and therefore makes the high-affinity binding site accessible. Crucially, a model with only one binding site where calmodulin binding and CaMKII inactivation are strictly mutually exclusive cannot reproduce calmodulin trapping. One of the predictions of our study is that calmodulin binding in itself is not sufficient for CaMKII activation, although high-affinity binding of calmodulin is.

Additional Information

© 2012 Stefan et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Received July 26, 2011; Accepted November 28, 2011; Published January 18, 2012. Editor: Christina Chan, Michigan State University, United States of America. Funding: These authors have no support or funding to report. Author Contributions: Conceived and designed the experiments: MIS NL. Performed the experiments: MIS DPM. Analyzed the data: MIS. Contributed reagents/ materials/analysis tools: MIS. Wrote the paper: MIS NL.

Attached Files

Published - Stefan2012p17126PLoS_ONE.pdf

Supplemental Material - Dataset_S1.txt

Supplemental Material - Dataset_S2.txt

Supplemental Material - Dataset_S3.txt

Supplemental Material - Table_S1.pdf

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Dataset_S1.txt

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Additional details

Identifiers

PMCID
PMC3261145
Eprint ID
29357
Resolver ID
CaltechAUTHORS:20120217-101100841

Dates

Created
2012-02-22
Created from EPrint's datestamp field
Updated
2021-11-09
Created from EPrint's last_modified field