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Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2

The essential mitotic kinase Aurora A (AURKA) is controlled during cell cycle progression via two distinct mechanisms. Following activation loop autophosphorylation early in mitosis when it localizes to centrosomes, AURKA is allosterically activated on the mitotic spindle via binding to the microtub...

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Autores principales: Janeček, Matej, Rossmann, Maxim, Sharma, Pooja, Emery, Amy, Huggins, David J., Stockwell, Simon R., Stokes, Jamie E., Tan, Yaw S., Almeida, Estrella Guarino, Hardwick, Bryn, Narvaez, Ana J., Hyvönen, Marko, Spring, David R., McKenzie, Grahame J., Venkitaraman, Ashok R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4919790/
https://www.ncbi.nlm.nih.gov/pubmed/27339427
http://dx.doi.org/10.1038/srep28528
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author Janeček, Matej
Rossmann, Maxim
Sharma, Pooja
Emery, Amy
Huggins, David J.
Stockwell, Simon R.
Stokes, Jamie E.
Tan, Yaw S.
Almeida, Estrella Guarino
Hardwick, Bryn
Narvaez, Ana J.
Hyvönen, Marko
Spring, David R.
McKenzie, Grahame J.
Venkitaraman, Ashok R.
author_facet Janeček, Matej
Rossmann, Maxim
Sharma, Pooja
Emery, Amy
Huggins, David J.
Stockwell, Simon R.
Stokes, Jamie E.
Tan, Yaw S.
Almeida, Estrella Guarino
Hardwick, Bryn
Narvaez, Ana J.
Hyvönen, Marko
Spring, David R.
McKenzie, Grahame J.
Venkitaraman, Ashok R.
author_sort Janeček, Matej
collection PubMed
description The essential mitotic kinase Aurora A (AURKA) is controlled during cell cycle progression via two distinct mechanisms. Following activation loop autophosphorylation early in mitosis when it localizes to centrosomes, AURKA is allosterically activated on the mitotic spindle via binding to the microtubule-associated protein, TPX2. Here, we report the discovery of AurkinA, a novel chemical inhibitor of the AURKA-TPX2 interaction, which acts via an unexpected structural mechanism to inhibit AURKA activity and mitotic localization. In crystal structures, AurkinA binds to a hydrophobic pocket (the ‘Y pocket’) that normally accommodates a conserved Tyr-Ser-Tyr motif from TPX2, blocking the AURKA-TPX2 interaction. AurkinA binding to the Y- pocket induces structural changes in AURKA that inhibit catalytic activity in vitro and in cells, without affecting ATP binding to the active site, defining a novel mechanism of allosteric inhibition. Consistent with this mechanism, cells exposed to AurkinA mislocalise AURKA from mitotic spindle microtubules. Thus, our findings provide fresh insight into the catalytic mechanism of AURKA, and identify a key structural feature as the target for a new class of dual-mode AURKA inhibitors, with implications for the chemical biology and selective therapeutic targeting of structurally related kinases.
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spelling pubmed-49197902016-06-28 Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2 Janeček, Matej Rossmann, Maxim Sharma, Pooja Emery, Amy Huggins, David J. Stockwell, Simon R. Stokes, Jamie E. Tan, Yaw S. Almeida, Estrella Guarino Hardwick, Bryn Narvaez, Ana J. Hyvönen, Marko Spring, David R. McKenzie, Grahame J. Venkitaraman, Ashok R. Sci Rep Article The essential mitotic kinase Aurora A (AURKA) is controlled during cell cycle progression via two distinct mechanisms. Following activation loop autophosphorylation early in mitosis when it localizes to centrosomes, AURKA is allosterically activated on the mitotic spindle via binding to the microtubule-associated protein, TPX2. Here, we report the discovery of AurkinA, a novel chemical inhibitor of the AURKA-TPX2 interaction, which acts via an unexpected structural mechanism to inhibit AURKA activity and mitotic localization. In crystal structures, AurkinA binds to a hydrophobic pocket (the ‘Y pocket’) that normally accommodates a conserved Tyr-Ser-Tyr motif from TPX2, blocking the AURKA-TPX2 interaction. AurkinA binding to the Y- pocket induces structural changes in AURKA that inhibit catalytic activity in vitro and in cells, without affecting ATP binding to the active site, defining a novel mechanism of allosteric inhibition. Consistent with this mechanism, cells exposed to AurkinA mislocalise AURKA from mitotic spindle microtubules. Thus, our findings provide fresh insight into the catalytic mechanism of AURKA, and identify a key structural feature as the target for a new class of dual-mode AURKA inhibitors, with implications for the chemical biology and selective therapeutic targeting of structurally related kinases. Nature Publishing Group 2016-06-24 /pmc/articles/PMC4919790/ /pubmed/27339427 http://dx.doi.org/10.1038/srep28528 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Janeček, Matej
Rossmann, Maxim
Sharma, Pooja
Emery, Amy
Huggins, David J.
Stockwell, Simon R.
Stokes, Jamie E.
Tan, Yaw S.
Almeida, Estrella Guarino
Hardwick, Bryn
Narvaez, Ana J.
Hyvönen, Marko
Spring, David R.
McKenzie, Grahame J.
Venkitaraman, Ashok R.
Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2
title Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2
title_full Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2
title_fullStr Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2
title_full_unstemmed Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2
title_short Allosteric modulation of AURKA kinase activity by a small-molecule inhibitor of its protein-protein interaction with TPX2
title_sort allosteric modulation of aurka kinase activity by a small-molecule inhibitor of its protein-protein interaction with tpx2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4919790/
https://www.ncbi.nlm.nih.gov/pubmed/27339427
http://dx.doi.org/10.1038/srep28528
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