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Pockets as structural descriptors of EGFR kinase conformations

Epidermal Growth Factor Receptor (EGFR), a tyrosine kinase receptor, is one of the main tumor markers in different types of cancers. The kinase native state is mainly composed of two populations of conformers: active and inactive. Several sequence variations in EGFR kinase region promote the differe...

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Autores principales: Hasenahuer, Marcia Anahi, Barletta, German Patricio, Fernandez-Alberti, Sebastián, Parisi, Gustavo, Fornasari, María Silvina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5724837/
https://www.ncbi.nlm.nih.gov/pubmed/29228029
http://dx.doi.org/10.1371/journal.pone.0189147
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author Hasenahuer, Marcia Anahi
Barletta, German Patricio
Fernandez-Alberti, Sebastián
Parisi, Gustavo
Fornasari, María Silvina
author_facet Hasenahuer, Marcia Anahi
Barletta, German Patricio
Fernandez-Alberti, Sebastián
Parisi, Gustavo
Fornasari, María Silvina
author_sort Hasenahuer, Marcia Anahi
collection PubMed
description Epidermal Growth Factor Receptor (EGFR), a tyrosine kinase receptor, is one of the main tumor markers in different types of cancers. The kinase native state is mainly composed of two populations of conformers: active and inactive. Several sequence variations in EGFR kinase region promote the differential enrichment of conformers with higher activity. Some structural characteristics have been proposed to differentiate kinase conformations, but these considerations could lead to ambiguous classifications. We present a structural characterisation of EGFR kinase conformers, focused on active site pocket comparisons, and the mapping of known pathological sequence variations. A structural based clustering of this pocket accurately discriminates active from inactive, well-characterised conformations. Furthermore, this main pocket contains, or is in close contact with, ≈65% of cancer-related variation positions. Although the relevance of protein dynamics to explain biological function has been extensively recognised, the usage of the ensemble of conformations in dynamic equilibrium to represent the functional state of proteins and the importance of pockets, cavities and/or tunnels was often neglected in previous studies. These functional structures and the equilibrium between them could be structurally analysed in wild type as well as in sequence variants. Our results indicate that biologically important pockets, as well as their shape and dynamics, are central to understanding protein function in wild-type, polymorphic or disease-related variations.
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spelling pubmed-57248372017-12-15 Pockets as structural descriptors of EGFR kinase conformations Hasenahuer, Marcia Anahi Barletta, German Patricio Fernandez-Alberti, Sebastián Parisi, Gustavo Fornasari, María Silvina PLoS One Research Article Epidermal Growth Factor Receptor (EGFR), a tyrosine kinase receptor, is one of the main tumor markers in different types of cancers. The kinase native state is mainly composed of two populations of conformers: active and inactive. Several sequence variations in EGFR kinase region promote the differential enrichment of conformers with higher activity. Some structural characteristics have been proposed to differentiate kinase conformations, but these considerations could lead to ambiguous classifications. We present a structural characterisation of EGFR kinase conformers, focused on active site pocket comparisons, and the mapping of known pathological sequence variations. A structural based clustering of this pocket accurately discriminates active from inactive, well-characterised conformations. Furthermore, this main pocket contains, or is in close contact with, ≈65% of cancer-related variation positions. Although the relevance of protein dynamics to explain biological function has been extensively recognised, the usage of the ensemble of conformations in dynamic equilibrium to represent the functional state of proteins and the importance of pockets, cavities and/or tunnels was often neglected in previous studies. These functional structures and the equilibrium between them could be structurally analysed in wild type as well as in sequence variants. Our results indicate that biologically important pockets, as well as their shape and dynamics, are central to understanding protein function in wild-type, polymorphic or disease-related variations. Public Library of Science 2017-12-11 /pmc/articles/PMC5724837/ /pubmed/29228029 http://dx.doi.org/10.1371/journal.pone.0189147 Text en © 2017 Hasenahuer 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hasenahuer, Marcia Anahi
Barletta, German Patricio
Fernandez-Alberti, Sebastián
Parisi, Gustavo
Fornasari, María Silvina
Pockets as structural descriptors of EGFR kinase conformations
title Pockets as structural descriptors of EGFR kinase conformations
title_full Pockets as structural descriptors of EGFR kinase conformations
title_fullStr Pockets as structural descriptors of EGFR kinase conformations
title_full_unstemmed Pockets as structural descriptors of EGFR kinase conformations
title_short Pockets as structural descriptors of EGFR kinase conformations
title_sort pockets as structural descriptors of egfr kinase conformations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5724837/
https://www.ncbi.nlm.nih.gov/pubmed/29228029
http://dx.doi.org/10.1371/journal.pone.0189147
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