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The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study

BACKGROUND: Calmodulin (CaM) plays an important role in Ca(2+)-dependent signal transduction. Ca(2+) binding to CaM triggers a conformational change, forming a hydrophobic patch that is important for target protein recognition. CaM regulates a Ca(2+)-dependent inactivation process in store-operated...

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Autores principales: Jensen, Drake, Reynolds, Nicole, Yang, Ya-Ping, Shakya, Shubha, Wang, Zhi-Qiang, Stuehr, Dennis J, Wei, Chin-Chuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349623/
https://www.ncbi.nlm.nih.gov/pubmed/25888318
http://dx.doi.org/10.1186/s12858-015-0036-7
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author Jensen, Drake
Reynolds, Nicole
Yang, Ya-Ping
Shakya, Shubha
Wang, Zhi-Qiang
Stuehr, Dennis J
Wei, Chin-Chuan
author_facet Jensen, Drake
Reynolds, Nicole
Yang, Ya-Ping
Shakya, Shubha
Wang, Zhi-Qiang
Stuehr, Dennis J
Wei, Chin-Chuan
author_sort Jensen, Drake
collection PubMed
description BACKGROUND: Calmodulin (CaM) plays an important role in Ca(2+)-dependent signal transduction. Ca(2+) binding to CaM triggers a conformational change, forming a hydrophobic patch that is important for target protein recognition. CaM regulates a Ca(2+)-dependent inactivation process in store-operated Ca(2+) entry, by interacting Orai1. To understand the relationship between Ca(2+)-induced hydrophobicity and CaM/Orai interaction, chimera proteins constructed by exchanging EF-hands of CaM with those of Troponin C (TnC) are used as an informative probe to better understand the functionality of each EF-hand. RESULTS: ANS was used to assess the context of the induced hydrophobic surface on CaM and chimeras upon Ca(2+) binding. The exchanged EF-hands from TnC to CaM resulted in reduced hydrophobicity compared with wild-type CaM. ANS lifetime measurements indicated that there are two types of ANS molecules with rather distinct fluorescence lifetimes, each specifically corresponding to one lobe of CaM or chimeras. Thermodynamic studies indicated the interaction between CaM and a 24-residue peptide corresponding to the CaM-binding domain of Orail1 (Orai-CMBD) is a 1:2 CaM/Orai-CMBD binding, in which each peptide binding yields a similar enthalpy change (ΔH = −5.02 ± 0.13 kcal/mol) and binding affinity (K(a) = 8.92 ± 1.03 × 10(5) M(−1)). With the exchanged EF1 and EF2, the resulting chimeras noted as CaM(1TnC) and CaM(2TnC), displayed a two sequential binding mode with a one-order weaker binding affinity and lower ΔH than that of CaM, while CaM(3TnC) and CaM(4TnC) had similar binding thermodynamics as CaM. The dissociation rate constant for CaM/Orai-CMBD was determined to be 1.41 ± 0.08 s(−1) by rapid kinetics. Stern-Volmer plots of Orai-CMBD Trp76 indicated that the residue is located in a very hydrophobic environment but becomes more solvent accessible when EF1 and EF2 were exchanged. CONCLUSIONS: Using ANS dye to assess induced hydrophobicity showed that exchanging EFs for all Ca(2+)-bound chimeras impaired ANS fluorescence and/or binding affinity, consistent with general concepts about the inadequacy of hydrophobic exposure for chimeras. However, such ANS responses exhibited no correlation with the ability to interact with Orai-CMBD. Here, the model of 1:2 binding stoichiometry of CaM/Orai-CMBD established in solution supports the already published crystal structure.
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spelling pubmed-43496232015-03-05 The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study Jensen, Drake Reynolds, Nicole Yang, Ya-Ping Shakya, Shubha Wang, Zhi-Qiang Stuehr, Dennis J Wei, Chin-Chuan BMC Biochem Research Article BACKGROUND: Calmodulin (CaM) plays an important role in Ca(2+)-dependent signal transduction. Ca(2+) binding to CaM triggers a conformational change, forming a hydrophobic patch that is important for target protein recognition. CaM regulates a Ca(2+)-dependent inactivation process in store-operated Ca(2+) entry, by interacting Orai1. To understand the relationship between Ca(2+)-induced hydrophobicity and CaM/Orai interaction, chimera proteins constructed by exchanging EF-hands of CaM with those of Troponin C (TnC) are used as an informative probe to better understand the functionality of each EF-hand. RESULTS: ANS was used to assess the context of the induced hydrophobic surface on CaM and chimeras upon Ca(2+) binding. The exchanged EF-hands from TnC to CaM resulted in reduced hydrophobicity compared with wild-type CaM. ANS lifetime measurements indicated that there are two types of ANS molecules with rather distinct fluorescence lifetimes, each specifically corresponding to one lobe of CaM or chimeras. Thermodynamic studies indicated the interaction between CaM and a 24-residue peptide corresponding to the CaM-binding domain of Orail1 (Orai-CMBD) is a 1:2 CaM/Orai-CMBD binding, in which each peptide binding yields a similar enthalpy change (ΔH = −5.02 ± 0.13 kcal/mol) and binding affinity (K(a) = 8.92 ± 1.03 × 10(5) M(−1)). With the exchanged EF1 and EF2, the resulting chimeras noted as CaM(1TnC) and CaM(2TnC), displayed a two sequential binding mode with a one-order weaker binding affinity and lower ΔH than that of CaM, while CaM(3TnC) and CaM(4TnC) had similar binding thermodynamics as CaM. The dissociation rate constant for CaM/Orai-CMBD was determined to be 1.41 ± 0.08 s(−1) by rapid kinetics. Stern-Volmer plots of Orai-CMBD Trp76 indicated that the residue is located in a very hydrophobic environment but becomes more solvent accessible when EF1 and EF2 were exchanged. CONCLUSIONS: Using ANS dye to assess induced hydrophobicity showed that exchanging EFs for all Ca(2+)-bound chimeras impaired ANS fluorescence and/or binding affinity, consistent with general concepts about the inadequacy of hydrophobic exposure for chimeras. However, such ANS responses exhibited no correlation with the ability to interact with Orai-CMBD. Here, the model of 1:2 binding stoichiometry of CaM/Orai-CMBD established in solution supports the already published crystal structure. BioMed Central 2015-02-15 /pmc/articles/PMC4349623/ /pubmed/25888318 http://dx.doi.org/10.1186/s12858-015-0036-7 Text en © Jensen et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Jensen, Drake
Reynolds, Nicole
Yang, Ya-Ping
Shakya, Shubha
Wang, Zhi-Qiang
Stuehr, Dennis J
Wei, Chin-Chuan
The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study
title The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study
title_full The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study
title_fullStr The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study
title_full_unstemmed The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study
title_short The exchanged EF-hands in calmodulin and troponin C chimeras impair the Ca(2+)-induced hydrophobicity and alter the interaction with Orai1: a spectroscopic, thermodynamic and kinetic study
title_sort exchanged ef-hands in calmodulin and troponin c chimeras impair the ca(2+)-induced hydrophobicity and alter the interaction with orai1: a spectroscopic, thermodynamic and kinetic study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4349623/
https://www.ncbi.nlm.nih.gov/pubmed/25888318
http://dx.doi.org/10.1186/s12858-015-0036-7
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