Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer
The 17q23 amplicon is associated with poor outcome in ER+ breast cancers, but the causal genes responsible endocrine resistance in this region are unclear. In this study, the authors demonstrate that PRR11 located at 17q23, is critical for conferring endocrine resistance through activation of PI3K s...
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Nature Portfolio
2020
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oai:doaj.org-article:b05239cf19fd4376936d7400b75ca1612021-12-02T14:41:14ZProline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer10.1038/s41467-020-19291-x2041-1723https://doaj.org/article/b05239cf19fd4376936d7400b75ca1612020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19291-xhttps://doaj.org/toc/2041-1723The 17q23 amplicon is associated with poor outcome in ER+ breast cancers, but the causal genes responsible endocrine resistance in this region are unclear. In this study, the authors demonstrate that PRR11 located at 17q23, is critical for conferring endocrine resistance through activation of PI3K signalling and therefore propose PI3K inhibition as a treatment for PRR11-amplified breast cancers.Kyung-min LeeAngel L. Guerrero-ZotanoAlberto ServettoDhivya R. SudhanChang-Ching LinLuigi FormisanoValerie M. JansenPaula González-EricssonMelinda E. SandersThomas P. StrickerGanesh RajKevin M. DeanReto FiolkaLewis C. CantleyAriella B. HankerCarlos L. ArteagaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020) |
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Science Q Kyung-min Lee Angel L. Guerrero-Zotano Alberto Servetto Dhivya R. Sudhan Chang-Ching Lin Luigi Formisano Valerie M. Jansen Paula González-Ericsson Melinda E. Sanders Thomas P. Stricker Ganesh Raj Kevin M. Dean Reto Fiolka Lewis C. Cantley Ariella B. Hanker Carlos L. Arteaga Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer |
description |
The 17q23 amplicon is associated with poor outcome in ER+ breast cancers, but the causal genes responsible endocrine resistance in this region are unclear. In this study, the authors demonstrate that PRR11 located at 17q23, is critical for conferring endocrine resistance through activation of PI3K signalling and therefore propose PI3K inhibition as a treatment for PRR11-amplified breast cancers. |
format |
article |
author |
Kyung-min Lee Angel L. Guerrero-Zotano Alberto Servetto Dhivya R. Sudhan Chang-Ching Lin Luigi Formisano Valerie M. Jansen Paula González-Ericsson Melinda E. Sanders Thomas P. Stricker Ganesh Raj Kevin M. Dean Reto Fiolka Lewis C. Cantley Ariella B. Hanker Carlos L. Arteaga |
author_facet |
Kyung-min Lee Angel L. Guerrero-Zotano Alberto Servetto Dhivya R. Sudhan Chang-Ching Lin Luigi Formisano Valerie M. Jansen Paula González-Ericsson Melinda E. Sanders Thomas P. Stricker Ganesh Raj Kevin M. Dean Reto Fiolka Lewis C. Cantley Ariella B. Hanker Carlos L. Arteaga |
author_sort |
Kyung-min Lee |
title |
Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer |
title_short |
Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer |
title_full |
Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer |
title_fullStr |
Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer |
title_full_unstemmed |
Proline rich 11 (PRR11) overexpression amplifies PI3K signaling and promotes antiestrogen resistance in breast cancer |
title_sort |
proline rich 11 (prr11) overexpression amplifies pi3k signaling and promotes antiestrogen resistance in breast cancer |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/b05239cf19fd4376936d7400b75ca161 |
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