Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.

NCS-1 is a member of the neuronal calcium sensor (NCS) family of EF-hand Ca(2+) binding proteins which has been implicated in several physiological functions including regulation of neurotransmitter release, membrane traffic, voltage gated Ca(2+) channels, neuronal development, synaptic plasticity,...

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Main Authors: Lu-Yun Lian, Sravan R Pandalaneni, Pryank Patel, Hannah V McCue, Lee P Haynes, Robert D Burgoyne
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3218054?pdf=render
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spelling doaj-7663008eff6b46ef85e295f245f701a22020-11-24T21:56:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01611e2777910.1371/journal.pone.0027779Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.Lu-Yun LianSravan R PandalaneniPryank PatelHannah V McCueLee P HaynesRobert D BurgoyneNCS-1 is a member of the neuronal calcium sensor (NCS) family of EF-hand Ca(2+) binding proteins which has been implicated in several physiological functions including regulation of neurotransmitter release, membrane traffic, voltage gated Ca(2+) channels, neuronal development, synaptic plasticity, and learning. NCS-1 binds to the dopamine D2 receptor, potentially affecting its internalisation and controlling dopamine D2 receptor surface expression. The D2 receptor binds NCS-1 via a short 16-residue cytoplasmic C-terminal tail. We have used NMR and fluorescence spectroscopy to characterise the interactions between the NCS-1/Ca(2+) and D2 peptide. The data show that NCS-1 binds D2 peptide with a K(d) of ∼14.3 µM and stoichiometry of peptide binding to NCS-1 of 2:1. NMR chemical shift mapping confirms that D2 peptide binds to the large, solvent-exposed hydrophobic groove, on one face of the NCS-1 molecule, with residues affected by the presence of the peptide spanning both the N and C-terminal portions of the protein. The NMR and mutagenesis data further show that movement of the C-terminal helix 11 of NCS-1 to fully expose the hydrophobic groove is important for D2 peptide binding. Molecular docking using restraints derived from the NMR chemical shift data, together with the experimentally-derived stoichiometry, produced a model of the complex between NCS-1 and the dopamine receptor, in which two molecules of the receptor are able to simultaneously bind to the NCS-1 monomer.http://europepmc.org/articles/PMC3218054?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lu-Yun Lian
Sravan R Pandalaneni
Pryank Patel
Hannah V McCue
Lee P Haynes
Robert D Burgoyne
spellingShingle Lu-Yun Lian
Sravan R Pandalaneni
Pryank Patel
Hannah V McCue
Lee P Haynes
Robert D Burgoyne
Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.
PLoS ONE
author_facet Lu-Yun Lian
Sravan R Pandalaneni
Pryank Patel
Hannah V McCue
Lee P Haynes
Robert D Burgoyne
author_sort Lu-Yun Lian
title Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.
title_short Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.
title_full Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.
title_fullStr Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.
title_full_unstemmed Characterisation of the interaction of the C-terminus of the dopamine D2 receptor with neuronal calcium sensor-1.
title_sort characterisation of the interaction of the c-terminus of the dopamine d2 receptor with neuronal calcium sensor-1.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description NCS-1 is a member of the neuronal calcium sensor (NCS) family of EF-hand Ca(2+) binding proteins which has been implicated in several physiological functions including regulation of neurotransmitter release, membrane traffic, voltage gated Ca(2+) channels, neuronal development, synaptic plasticity, and learning. NCS-1 binds to the dopamine D2 receptor, potentially affecting its internalisation and controlling dopamine D2 receptor surface expression. The D2 receptor binds NCS-1 via a short 16-residue cytoplasmic C-terminal tail. We have used NMR and fluorescence spectroscopy to characterise the interactions between the NCS-1/Ca(2+) and D2 peptide. The data show that NCS-1 binds D2 peptide with a K(d) of ∼14.3 µM and stoichiometry of peptide binding to NCS-1 of 2:1. NMR chemical shift mapping confirms that D2 peptide binds to the large, solvent-exposed hydrophobic groove, on one face of the NCS-1 molecule, with residues affected by the presence of the peptide spanning both the N and C-terminal portions of the protein. The NMR and mutagenesis data further show that movement of the C-terminal helix 11 of NCS-1 to fully expose the hydrophobic groove is important for D2 peptide binding. Molecular docking using restraints derived from the NMR chemical shift data, together with the experimentally-derived stoichiometry, produced a model of the complex between NCS-1 and the dopamine receptor, in which two molecules of the receptor are able to simultaneously bind to the NCS-1 monomer.
url http://europepmc.org/articles/PMC3218054?pdf=render
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