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Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation

The Src family of tyrosine kinases (SFKs) regulate numerous aspects of cell growth and differentiation and are under the principal control of the C-terminal Src Kinase (Csk). Although Csk and SFKs share conserved kinase, SH2 and SH3 domains, they differ considerably in three-dimensional structure, r...

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Autores principales: Barkho, Sulyman, Pierce, Levi C. T., Li, Sheng, Adams, Joseph A., Jennings, Patricia A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4452171/
https://www.ncbi.nlm.nih.gov/pubmed/26030592
http://dx.doi.org/10.1371/journal.pone.0127724
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author Barkho, Sulyman
Pierce, Levi C. T.
Li, Sheng
Adams, Joseph A.
Jennings, Patricia A.
author_facet Barkho, Sulyman
Pierce, Levi C. T.
Li, Sheng
Adams, Joseph A.
Jennings, Patricia A.
author_sort Barkho, Sulyman
collection PubMed
description The Src family of tyrosine kinases (SFKs) regulate numerous aspects of cell growth and differentiation and are under the principal control of the C-terminal Src Kinase (Csk). Although Csk and SFKs share conserved kinase, SH2 and SH3 domains, they differ considerably in three-dimensional structure, regulatory mechanism, and the intrinsic kinase activities. Although the SH2 and SH3 domains are known to up- or down-regulate tyrosine kinase function, little is known about the global motions in the full-length kinase that govern these catalytic variations. We use a combination of accelerated Molecular Dynamics (aMD) simulations and experimental methods to provide a new view of functional motions in the Csk scaffold. These computational studies suggest that high frequency vibrations in the SH2 domain are coupled through the N-terminal lobe of the kinase domain to motions in the SH3 domain. The effects of these reflexive movements on the kinase domain can be viewed using both Deuterium Exchange Mass Spectrometry (DXMS) and steady-state kinetic methods. Removal of several contacts, including a crystallographically unobserved N-terminal segment, between the SH3 and kinase domains short-circuit these coupled motions leading to reduced catalytic efficiency and stability of N-lobe motifs within the kinase domain. The data expands the model of Csk’s activation whereby separate domains productively interact with two diametrically opposed surfaces of the kinase domain. Such reversible transitions may organize the active structure of the tyrosine kinase domain of Csk.
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spelling pubmed-44521712015-06-09 Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation Barkho, Sulyman Pierce, Levi C. T. Li, Sheng Adams, Joseph A. Jennings, Patricia A. PLoS One Research Article The Src family of tyrosine kinases (SFKs) regulate numerous aspects of cell growth and differentiation and are under the principal control of the C-terminal Src Kinase (Csk). Although Csk and SFKs share conserved kinase, SH2 and SH3 domains, they differ considerably in three-dimensional structure, regulatory mechanism, and the intrinsic kinase activities. Although the SH2 and SH3 domains are known to up- or down-regulate tyrosine kinase function, little is known about the global motions in the full-length kinase that govern these catalytic variations. We use a combination of accelerated Molecular Dynamics (aMD) simulations and experimental methods to provide a new view of functional motions in the Csk scaffold. These computational studies suggest that high frequency vibrations in the SH2 domain are coupled through the N-terminal lobe of the kinase domain to motions in the SH3 domain. The effects of these reflexive movements on the kinase domain can be viewed using both Deuterium Exchange Mass Spectrometry (DXMS) and steady-state kinetic methods. Removal of several contacts, including a crystallographically unobserved N-terminal segment, between the SH3 and kinase domains short-circuit these coupled motions leading to reduced catalytic efficiency and stability of N-lobe motifs within the kinase domain. The data expands the model of Csk’s activation whereby separate domains productively interact with two diametrically opposed surfaces of the kinase domain. Such reversible transitions may organize the active structure of the tyrosine kinase domain of Csk. Public Library of Science 2015-06-01 /pmc/articles/PMC4452171/ /pubmed/26030592 http://dx.doi.org/10.1371/journal.pone.0127724 Text en © 2015 Barkho et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Barkho, Sulyman
Pierce, Levi C. T.
Li, Sheng
Adams, Joseph A.
Jennings, Patricia A.
Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation
title Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation
title_full Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation
title_fullStr Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation
title_full_unstemmed Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation
title_short Theoretical Insights Reveal Novel Motions in Csk’s SH3 Domain That Control Kinase Activation
title_sort theoretical insights reveal novel motions in csk’s sh3 domain that control kinase activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4452171/
https://www.ncbi.nlm.nih.gov/pubmed/26030592
http://dx.doi.org/10.1371/journal.pone.0127724
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