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RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements

Receptor tyrosine kinases exhibit a variety of activation mechanisms despite highly homologous catalytic domains. Such diversity arises through coupling of extracellular ligand-binding portions with highly variable intracellular sequences flanking the tyrosine kinase domain and specific patterns of...

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Autores principales: Plaza-Menacho, Iván, Barnouin, Karin, Barry, Rachael, Borg, Annabel, Orme, Mariam, Chauhan, Rakhee, Mouilleron, Stephane, Martínez-Torres, Rubén J., Meier, Pascal, McDonald, Neil Q.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5199340/
https://www.ncbi.nlm.nih.gov/pubmed/28009299
http://dx.doi.org/10.1016/j.celrep.2016.11.061
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author Plaza-Menacho, Iván
Barnouin, Karin
Barry, Rachael
Borg, Annabel
Orme, Mariam
Chauhan, Rakhee
Mouilleron, Stephane
Martínez-Torres, Rubén J.
Meier, Pascal
McDonald, Neil Q.
author_facet Plaza-Menacho, Iván
Barnouin, Karin
Barry, Rachael
Borg, Annabel
Orme, Mariam
Chauhan, Rakhee
Mouilleron, Stephane
Martínez-Torres, Rubén J.
Meier, Pascal
McDonald, Neil Q.
author_sort Plaza-Menacho, Iván
collection PubMed
description Receptor tyrosine kinases exhibit a variety of activation mechanisms despite highly homologous catalytic domains. Such diversity arises through coupling of extracellular ligand-binding portions with highly variable intracellular sequences flanking the tyrosine kinase domain and specific patterns of autophosphorylation sites. Here, we show that the juxtamembrane (JM) segment enhances RET catalytic domain activity through Y687. This phospho-site is also required by the JM region to rescue an otherwise catalytically deficient RET activation-loop mutant lacking tyrosines. Structure-function analyses identified interactions between the JM hinge, αC helix, and an unconventional activation-loop serine phosphorylation site that engages the HRD motif and promotes phospho-tyrosine conformational accessibility and regulatory spine assembly. We demonstrate that this phospho-S909 arises from an intrinsic RET dual-specificity kinase activity and show that an equivalent serine is required for RET signaling in Drosophila. Our findings reveal dual-specificity and allosteric components for the mechanism of RET activation and signaling with direct implications for drug discovery.
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spelling pubmed-51993402017-01-06 RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements Plaza-Menacho, Iván Barnouin, Karin Barry, Rachael Borg, Annabel Orme, Mariam Chauhan, Rakhee Mouilleron, Stephane Martínez-Torres, Rubén J. Meier, Pascal McDonald, Neil Q. Cell Rep Article Receptor tyrosine kinases exhibit a variety of activation mechanisms despite highly homologous catalytic domains. Such diversity arises through coupling of extracellular ligand-binding portions with highly variable intracellular sequences flanking the tyrosine kinase domain and specific patterns of autophosphorylation sites. Here, we show that the juxtamembrane (JM) segment enhances RET catalytic domain activity through Y687. This phospho-site is also required by the JM region to rescue an otherwise catalytically deficient RET activation-loop mutant lacking tyrosines. Structure-function analyses identified interactions between the JM hinge, αC helix, and an unconventional activation-loop serine phosphorylation site that engages the HRD motif and promotes phospho-tyrosine conformational accessibility and regulatory spine assembly. We demonstrate that this phospho-S909 arises from an intrinsic RET dual-specificity kinase activity and show that an equivalent serine is required for RET signaling in Drosophila. Our findings reveal dual-specificity and allosteric components for the mechanism of RET activation and signaling with direct implications for drug discovery. Cell Press 2016-12-22 /pmc/articles/PMC5199340/ /pubmed/28009299 http://dx.doi.org/10.1016/j.celrep.2016.11.061 Text en © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Plaza-Menacho, Iván
Barnouin, Karin
Barry, Rachael
Borg, Annabel
Orme, Mariam
Chauhan, Rakhee
Mouilleron, Stephane
Martínez-Torres, Rubén J.
Meier, Pascal
McDonald, Neil Q.
RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements
title RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements
title_full RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements
title_fullStr RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements
title_full_unstemmed RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements
title_short RET Functions as a Dual-Specificity Kinase that Requires Allosteric Inputs from Juxtamembrane Elements
title_sort ret functions as a dual-specificity kinase that requires allosteric inputs from juxtamembrane elements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5199340/
https://www.ncbi.nlm.nih.gov/pubmed/28009299
http://dx.doi.org/10.1016/j.celrep.2016.11.061
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