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Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation

Microtubules are the main constituents of mitotic spindles. They are nucleated in large amounts during spindle assembly, from multiprotein complexes containing γ-tubulin and associated γ-tubulin complex proteins (GCPs). With the aim of developing anti-cancer drugs targeting these nucleating complexe...

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Autores principales: Cala, Olivier, Remy, Marie-Hélène, Guillet, Valérie, Merdes, Andreas, Mourey, Lionel, Milon, Alain, Czaplicki, Georges
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3655011/
https://www.ncbi.nlm.nih.gov/pubmed/23691113
http://dx.doi.org/10.1371/journal.pone.0063908
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author Cala, Olivier
Remy, Marie-Hélène
Guillet, Valérie
Merdes, Andreas
Mourey, Lionel
Milon, Alain
Czaplicki, Georges
author_facet Cala, Olivier
Remy, Marie-Hélène
Guillet, Valérie
Merdes, Andreas
Mourey, Lionel
Milon, Alain
Czaplicki, Georges
author_sort Cala, Olivier
collection PubMed
description Microtubules are the main constituents of mitotic spindles. They are nucleated in large amounts during spindle assembly, from multiprotein complexes containing γ-tubulin and associated γ-tubulin complex proteins (GCPs). With the aim of developing anti-cancer drugs targeting these nucleating complexes, we analyzed the interface between GCP4 and γ-tubulin proteins usually located in a multiprotein complex named γ-TuRC (γ-Tubulin Ring Complex). 10 ns molecular dynamics simulations were performed on the heterodimers to obtain a stable complex in silico and to analyze the residues involved in persistent protein-protein contacts, responsible for the stability of the complex. We demonstrated in silico the existence of a binding pocket at the interface between the two proteins upon complex formation. By combining virtual screening using a fragment-based approach and biophysical screening, we found several small molecules that bind specifically to this pocket. Sub-millimolar fragments have been experimentally characterized on recombinant proteins using differential scanning fluorimetry (DSF) for validation of these compounds as inhibitors. These results open a new avenue for drug development against microtubule-nucleating γ-tubulin complexes.
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spelling pubmed-36550112013-05-20 Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation Cala, Olivier Remy, Marie-Hélène Guillet, Valérie Merdes, Andreas Mourey, Lionel Milon, Alain Czaplicki, Georges PLoS One Research Article Microtubules are the main constituents of mitotic spindles. They are nucleated in large amounts during spindle assembly, from multiprotein complexes containing γ-tubulin and associated γ-tubulin complex proteins (GCPs). With the aim of developing anti-cancer drugs targeting these nucleating complexes, we analyzed the interface between GCP4 and γ-tubulin proteins usually located in a multiprotein complex named γ-TuRC (γ-Tubulin Ring Complex). 10 ns molecular dynamics simulations were performed on the heterodimers to obtain a stable complex in silico and to analyze the residues involved in persistent protein-protein contacts, responsible for the stability of the complex. We demonstrated in silico the existence of a binding pocket at the interface between the two proteins upon complex formation. By combining virtual screening using a fragment-based approach and biophysical screening, we found several small molecules that bind specifically to this pocket. Sub-millimolar fragments have been experimentally characterized on recombinant proteins using differential scanning fluorimetry (DSF) for validation of these compounds as inhibitors. These results open a new avenue for drug development against microtubule-nucleating γ-tubulin complexes. Public Library of Science 2013-05-15 /pmc/articles/PMC3655011/ /pubmed/23691113 http://dx.doi.org/10.1371/journal.pone.0063908 Text en © 2013 Cala 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
Cala, Olivier
Remy, Marie-Hélène
Guillet, Valérie
Merdes, Andreas
Mourey, Lionel
Milon, Alain
Czaplicki, Georges
Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation
title Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation
title_full Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation
title_fullStr Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation
title_full_unstemmed Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation
title_short Virtual and Biophysical Screening Targeting the γ-Tubulin Complex – A New Target for the Inhibition of Microtubule Nucleation
title_sort virtual and biophysical screening targeting the γ-tubulin complex – a new target for the inhibition of microtubule nucleation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3655011/
https://www.ncbi.nlm.nih.gov/pubmed/23691113
http://dx.doi.org/10.1371/journal.pone.0063908
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