Cargando…

AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation

The AurkA kinase is a well-known mitotic regulator, frequently overexpressed in tumors. The microtubule-binding protein TPX2 controls AurkA activity, localization, and stability in mitosis. Non-mitotic roles of AurkA are emerging, and increased nuclear localization in interphase has been correlated...

Descripción completa

Detalles Bibliográficos
Autores principales: Asteriti, Italia Anna, Polverino, Federica, Stagni, Venturina, Sterbini, Valentina, Ascanelli, Camilla, Naso, Francesco Davide, Mastrangelo, Anna, Rosa, Alessandro, Paiardini, Alessandro, Lindon, Catherine, Guarguaglini, Giulia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9936162/
https://www.ncbi.nlm.nih.gov/pubmed/36797043
http://dx.doi.org/10.26508/lsa.202201726
_version_ 1784890179335487488
author Asteriti, Italia Anna
Polverino, Federica
Stagni, Venturina
Sterbini, Valentina
Ascanelli, Camilla
Naso, Francesco Davide
Mastrangelo, Anna
Rosa, Alessandro
Paiardini, Alessandro
Lindon, Catherine
Guarguaglini, Giulia
author_facet Asteriti, Italia Anna
Polverino, Federica
Stagni, Venturina
Sterbini, Valentina
Ascanelli, Camilla
Naso, Francesco Davide
Mastrangelo, Anna
Rosa, Alessandro
Paiardini, Alessandro
Lindon, Catherine
Guarguaglini, Giulia
author_sort Asteriti, Italia Anna
collection PubMed
description The AurkA kinase is a well-known mitotic regulator, frequently overexpressed in tumors. The microtubule-binding protein TPX2 controls AurkA activity, localization, and stability in mitosis. Non-mitotic roles of AurkA are emerging, and increased nuclear localization in interphase has been correlated with AurkA oncogenic potential. Still, the mechanisms leading to AurkA nuclear accumulation are poorly explored. Here, we investigated these mechanisms under physiological or overexpression conditions. We observed that AurkA nuclear localization is influenced by the cell cycle phase and nuclear export, but not by its kinase activity. Importantly, AURKA overexpression is not sufficient to determine its accumulation in interphase nuclei, which is instead obtained when AURKA and TPX2 are co-overexpressed or, to a higher extent, when proteasome activity is impaired. Expression analyses show that AURKA, TPX2, and the import regulator CSE1L are co-overexpressed in tumors. Finally, using MCF10A mammospheres we show that TPX2 co-overexpression drives protumorigenic processes downstream of nuclear AurkA. We propose that AURKA/TPX2 co-overexpression in cancer represents a key determinant of AurkA nuclear oncogenic functions.
format Online
Article
Text
id pubmed-9936162
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Life Science Alliance LLC
record_format MEDLINE/PubMed
spelling pubmed-99361622023-02-18 AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation Asteriti, Italia Anna Polverino, Federica Stagni, Venturina Sterbini, Valentina Ascanelli, Camilla Naso, Francesco Davide Mastrangelo, Anna Rosa, Alessandro Paiardini, Alessandro Lindon, Catherine Guarguaglini, Giulia Life Sci Alliance Research Articles The AurkA kinase is a well-known mitotic regulator, frequently overexpressed in tumors. The microtubule-binding protein TPX2 controls AurkA activity, localization, and stability in mitosis. Non-mitotic roles of AurkA are emerging, and increased nuclear localization in interphase has been correlated with AurkA oncogenic potential. Still, the mechanisms leading to AurkA nuclear accumulation are poorly explored. Here, we investigated these mechanisms under physiological or overexpression conditions. We observed that AurkA nuclear localization is influenced by the cell cycle phase and nuclear export, but not by its kinase activity. Importantly, AURKA overexpression is not sufficient to determine its accumulation in interphase nuclei, which is instead obtained when AURKA and TPX2 are co-overexpressed or, to a higher extent, when proteasome activity is impaired. Expression analyses show that AURKA, TPX2, and the import regulator CSE1L are co-overexpressed in tumors. Finally, using MCF10A mammospheres we show that TPX2 co-overexpression drives protumorigenic processes downstream of nuclear AurkA. We propose that AURKA/TPX2 co-overexpression in cancer represents a key determinant of AurkA nuclear oncogenic functions. Life Science Alliance LLC 2023-02-16 /pmc/articles/PMC9936162/ /pubmed/36797043 http://dx.doi.org/10.26508/lsa.202201726 Text en © 2023 Asteriti et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Asteriti, Italia Anna
Polverino, Federica
Stagni, Venturina
Sterbini, Valentina
Ascanelli, Camilla
Naso, Francesco Davide
Mastrangelo, Anna
Rosa, Alessandro
Paiardini, Alessandro
Lindon, Catherine
Guarguaglini, Giulia
AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation
title AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation
title_full AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation
title_fullStr AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation
title_full_unstemmed AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation
title_short AurkA nuclear localization is promoted by TPX2 and counteracted by protein degradation
title_sort aurka nuclear localization is promoted by tpx2 and counteracted by protein degradation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9936162/
https://www.ncbi.nlm.nih.gov/pubmed/36797043
http://dx.doi.org/10.26508/lsa.202201726
work_keys_str_mv AT asteritiitaliaanna aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT polverinofederica aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT stagniventurina aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT sterbinivalentina aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT ascanellicamilla aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT nasofrancescodavide aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT mastrangeloanna aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT rosaalessandro aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT paiardinialessandro aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT lindoncatherine aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation
AT guarguaglinigiulia aurkanuclearlocalizationispromotedbytpx2andcounteractedbyproteindegradation