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Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival

Type 2 transglutaminase (TG2) is an important cancer stem cell survival protein that exists in open and closed conformations. The major intracellular form is the closed conformation that functions as a GTP-binding GTPase and is required for cancer stem cell survival. However, at a finite rate, TG2 t...

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Autores principales: Kerr, Candace, Szmacinski, Henryk, Fisher, Matthew L., Nance, Bailey, Lakowicz, Joseph R., Akbar, Abdullah, Keillor, Jeffrey W., Wong, Tin Lok, Godoy-Ruiz, Raquel, Toth, Eric A., Weber, David J., Eckert, Richard L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5444990/
https://www.ncbi.nlm.nih.gov/pubmed/27941875
http://dx.doi.org/10.1038/onc.2016.452
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author Kerr, Candace
Szmacinski, Henryk
Fisher, Matthew L.
Nance, Bailey
Lakowicz, Joseph R.
Akbar, Abdullah
Keillor, Jeffrey W.
Wong, Tin Lok
Godoy-Ruiz, Raquel
Toth, Eric A.
Weber, David J.
Eckert, Richard L.
author_facet Kerr, Candace
Szmacinski, Henryk
Fisher, Matthew L.
Nance, Bailey
Lakowicz, Joseph R.
Akbar, Abdullah
Keillor, Jeffrey W.
Wong, Tin Lok
Godoy-Ruiz, Raquel
Toth, Eric A.
Weber, David J.
Eckert, Richard L.
author_sort Kerr, Candace
collection PubMed
description Type 2 transglutaminase (TG2) is an important cancer stem cell survival protein that exists in open and closed conformations. The major intracellular form is the closed conformation that functions as a GTP-binding GTPase and is required for cancer stem cell survival. However, at a finite rate, TG2 transitions to an open conformation that exposes the transamidase catalytic site involved in protein-protein crosslinking. The activities are mutually exclusive, as the closed conformation has GTP binding/GTPase activity, and the open conformation transamidase activity. We recently showed that GTP binding, but not transamidase activity, is required for TG2-dependent cancer stem cell invasion, migration and tumor formation. However, we were surprised that transamidase site-specific inhibitors reduce cancer stem cell survival. We now show that compounds NC9, VA4 and VA5, which react exclusively at the TG2 transamidase site, inhibit both transamidase and GTP-binding activities. Transamidase activity is inhibited by direct inhibitor binding at the transamidase site, and GTP binding is blocked because inhibitor interaction at the transamidase site locks the protein in the extended/open conformation to disorganize/inactivate the GTP binding/GTPase site. These findings suggest that transamidase site-specific inhibitors can inhibit GTP binding/signaling by driving a conformation change that disorganizes the TG2 GTP binding to reduce TG2-dependent signaling, and that drugs designed to target this site may be potent anti-cancer agents.
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spelling pubmed-54449902017-06-12 Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival Kerr, Candace Szmacinski, Henryk Fisher, Matthew L. Nance, Bailey Lakowicz, Joseph R. Akbar, Abdullah Keillor, Jeffrey W. Wong, Tin Lok Godoy-Ruiz, Raquel Toth, Eric A. Weber, David J. Eckert, Richard L. Oncogene Article Type 2 transglutaminase (TG2) is an important cancer stem cell survival protein that exists in open and closed conformations. The major intracellular form is the closed conformation that functions as a GTP-binding GTPase and is required for cancer stem cell survival. However, at a finite rate, TG2 transitions to an open conformation that exposes the transamidase catalytic site involved in protein-protein crosslinking. The activities are mutually exclusive, as the closed conformation has GTP binding/GTPase activity, and the open conformation transamidase activity. We recently showed that GTP binding, but not transamidase activity, is required for TG2-dependent cancer stem cell invasion, migration and tumor formation. However, we were surprised that transamidase site-specific inhibitors reduce cancer stem cell survival. We now show that compounds NC9, VA4 and VA5, which react exclusively at the TG2 transamidase site, inhibit both transamidase and GTP-binding activities. Transamidase activity is inhibited by direct inhibitor binding at the transamidase site, and GTP binding is blocked because inhibitor interaction at the transamidase site locks the protein in the extended/open conformation to disorganize/inactivate the GTP binding/GTPase site. These findings suggest that transamidase site-specific inhibitors can inhibit GTP binding/signaling by driving a conformation change that disorganizes the TG2 GTP binding to reduce TG2-dependent signaling, and that drugs designed to target this site may be potent anti-cancer agents. 2016-12-12 2017-05-25 /pmc/articles/PMC5444990/ /pubmed/27941875 http://dx.doi.org/10.1038/onc.2016.452 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kerr, Candace
Szmacinski, Henryk
Fisher, Matthew L.
Nance, Bailey
Lakowicz, Joseph R.
Akbar, Abdullah
Keillor, Jeffrey W.
Wong, Tin Lok
Godoy-Ruiz, Raquel
Toth, Eric A.
Weber, David J.
Eckert, Richard L.
Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival
title Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival
title_full Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival
title_fullStr Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival
title_full_unstemmed Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival
title_short Transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce GTP binding activity and cancer stem cell survival
title_sort transamidase site-targeted agents alter the conformation of the transglutaminase cancer stem cell survival protein to reduce gtp binding activity and cancer stem cell survival
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5444990/
https://www.ncbi.nlm.nih.gov/pubmed/27941875
http://dx.doi.org/10.1038/onc.2016.452
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