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IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain

The IQGAP [IQ-motif-containing GAP (GTPase-activating protein)] family members are eukaryotic proteins that act at the interface between cellular signalling and the cytoskeleton. As such they collect numerous inputs from a variety of signalling pathways. A key binding partner is the calcium-sensing...

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Autores principales: Atcheson, Erwan, Hamilton, Elaine, Pathmanathan, Sevvel, Greer, Brett, Harriott, Pat, Timson, David J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3263943/
https://www.ncbi.nlm.nih.gov/pubmed/21299499
http://dx.doi.org/10.1042/BSR20100123
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author Atcheson, Erwan
Hamilton, Elaine
Pathmanathan, Sevvel
Greer, Brett
Harriott, Pat
Timson, David J.
author_facet Atcheson, Erwan
Hamilton, Elaine
Pathmanathan, Sevvel
Greer, Brett
Harriott, Pat
Timson, David J.
author_sort Atcheson, Erwan
collection PubMed
description The IQGAP [IQ-motif-containing GAP (GTPase-activating protein)] family members are eukaryotic proteins that act at the interface between cellular signalling and the cytoskeleton. As such they collect numerous inputs from a variety of signalling pathways. A key binding partner is the calcium-sensing protein CaM (calmodulin). This protein binds mainly through a series of IQ-motifs which are located towards the middle of the primary sequence of the IQGAPs. In some IQGAPs, these motifs also provide binding sites for CaM-like proteins such as myosin essential light chain and S100B. Using synthetic peptides and native gel electrophoresis, the binding properties of the IQ-motifs from human IQGAP2 and IQGAP3 have been mapped. The second and third IQ-motifs in IQGAP2 and all four of the IQ-motifs of IQGAP3 interacted with CaM in the presence of calcium ions. However, there were differences in the type of interaction: while some IQ-motifs were able to form complexes with CaM which were stable under the conditions of the experiment, others formed more transient interactions. The first IQ-motifs from IQGAP2 and IQGAP3 formed transient interactions with CaM in the absence of calcium and the first motif from IQGAP3 formed a transient interaction with the myosin essential light chain Mlc1sa. None of these IQ-motifs interacted with S100B. Molecular modelling suggested that all of the IQ-motifs, except the first one from IQGAP2 formed α-helices in solution. These results extend our knowledge of the selectivity of IQ-motifs for CaM and related proteins.
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spelling pubmed-32639432012-01-23 IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain Atcheson, Erwan Hamilton, Elaine Pathmanathan, Sevvel Greer, Brett Harriott, Pat Timson, David J. Biosci Rep Original Paper The IQGAP [IQ-motif-containing GAP (GTPase-activating protein)] family members are eukaryotic proteins that act at the interface between cellular signalling and the cytoskeleton. As such they collect numerous inputs from a variety of signalling pathways. A key binding partner is the calcium-sensing protein CaM (calmodulin). This protein binds mainly through a series of IQ-motifs which are located towards the middle of the primary sequence of the IQGAPs. In some IQGAPs, these motifs also provide binding sites for CaM-like proteins such as myosin essential light chain and S100B. Using synthetic peptides and native gel electrophoresis, the binding properties of the IQ-motifs from human IQGAP2 and IQGAP3 have been mapped. The second and third IQ-motifs in IQGAP2 and all four of the IQ-motifs of IQGAP3 interacted with CaM in the presence of calcium ions. However, there were differences in the type of interaction: while some IQ-motifs were able to form complexes with CaM which were stable under the conditions of the experiment, others formed more transient interactions. The first IQ-motifs from IQGAP2 and IQGAP3 formed transient interactions with CaM in the absence of calcium and the first motif from IQGAP3 formed a transient interaction with the myosin essential light chain Mlc1sa. None of these IQ-motifs interacted with S100B. Molecular modelling suggested that all of the IQ-motifs, except the first one from IQGAP2 formed α-helices in solution. These results extend our knowledge of the selectivity of IQ-motifs for CaM and related proteins. Portland Press Ltd. 2011-08-05 2011-10-01 /pmc/articles/PMC3263943/ /pubmed/21299499 http://dx.doi.org/10.1042/BSR20100123 Text en © 2011 The Author(s) The author(s) has paid for this article to be freely available under the terms of the Creative Commons Attribution Non-Commercial Licence (http://creativecommons.org/licenses/by-nc/2.5/) which permits unrestricted non-commercial use, distribution and reproduction in any medium, provided the original work is properly cited. http://creativecommons.org/licenses/by-nc/2.5/ 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 work is properly cited.
spellingShingle Original Paper
Atcheson, Erwan
Hamilton, Elaine
Pathmanathan, Sevvel
Greer, Brett
Harriott, Pat
Timson, David J.
IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain
title IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain
title_full IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain
title_fullStr IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain
title_full_unstemmed IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain
title_short IQ-motif selectivity in human IQGAP2 and IQGAP3: binding of calmodulin and myosin essential light chain
title_sort iq-motif selectivity in human iqgap2 and iqgap3: binding of calmodulin and myosin essential light chain
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3263943/
https://www.ncbi.nlm.nih.gov/pubmed/21299499
http://dx.doi.org/10.1042/BSR20100123
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