Inherited determinants of early recurrent somatic mutations in prostate cancer

Prostate cancer is a heterogeneous disease, and many cases show somatic mutations of SPOP. Here, the authors show that a non-coding polymorphic regulatory element at 7p14.3 may predispose to SPOP mutant prostate cancer subclass through a hormone dependent DNA damage response.

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Autores principales: Alessandro Romanel, Sonia Garritano, Blerta Stringa, Mirjam Blattner, Davide Dalfovo, Dimple Chakravarty, David Soong, Kellie A. Cotter, Gianluca Petris, Priyanka Dhingra, Paola Gasperini, Anna Cereseto, Olivier Elemento, Andrea Sboner, Ekta Khurana, Alberto Inga, Mark A. Rubin, Francesca Demichelis
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/9c76b74b1a9c4adba882a4b50f1bdddc
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spelling oai:doaj.org-article:9c76b74b1a9c4adba882a4b50f1bdddc2021-12-02T13:57:44ZInherited determinants of early recurrent somatic mutations in prostate cancer10.1038/s41467-017-00046-02041-1723https://doaj.org/article/9c76b74b1a9c4adba882a4b50f1bdddc2017-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00046-0https://doaj.org/toc/2041-1723Prostate cancer is a heterogeneous disease, and many cases show somatic mutations of SPOP. Here, the authors show that a non-coding polymorphic regulatory element at 7p14.3 may predispose to SPOP mutant prostate cancer subclass through a hormone dependent DNA damage response.Alessandro RomanelSonia GarritanoBlerta StringaMirjam BlattnerDavide DalfovoDimple ChakravartyDavid SoongKellie A. CotterGianluca PetrisPriyanka DhingraPaola GasperiniAnna CeresetoOlivier ElementoAndrea SbonerEkta KhuranaAlberto IngaMark A. RubinFrancesca DemichelisNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-10 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Alessandro Romanel
Sonia Garritano
Blerta Stringa
Mirjam Blattner
Davide Dalfovo
Dimple Chakravarty
David Soong
Kellie A. Cotter
Gianluca Petris
Priyanka Dhingra
Paola Gasperini
Anna Cereseto
Olivier Elemento
Andrea Sboner
Ekta Khurana
Alberto Inga
Mark A. Rubin
Francesca Demichelis
Inherited determinants of early recurrent somatic mutations in prostate cancer
description Prostate cancer is a heterogeneous disease, and many cases show somatic mutations of SPOP. Here, the authors show that a non-coding polymorphic regulatory element at 7p14.3 may predispose to SPOP mutant prostate cancer subclass through a hormone dependent DNA damage response.
format article
author Alessandro Romanel
Sonia Garritano
Blerta Stringa
Mirjam Blattner
Davide Dalfovo
Dimple Chakravarty
David Soong
Kellie A. Cotter
Gianluca Petris
Priyanka Dhingra
Paola Gasperini
Anna Cereseto
Olivier Elemento
Andrea Sboner
Ekta Khurana
Alberto Inga
Mark A. Rubin
Francesca Demichelis
author_facet Alessandro Romanel
Sonia Garritano
Blerta Stringa
Mirjam Blattner
Davide Dalfovo
Dimple Chakravarty
David Soong
Kellie A. Cotter
Gianluca Petris
Priyanka Dhingra
Paola Gasperini
Anna Cereseto
Olivier Elemento
Andrea Sboner
Ekta Khurana
Alberto Inga
Mark A. Rubin
Francesca Demichelis
author_sort Alessandro Romanel
title Inherited determinants of early recurrent somatic mutations in prostate cancer
title_short Inherited determinants of early recurrent somatic mutations in prostate cancer
title_full Inherited determinants of early recurrent somatic mutations in prostate cancer
title_fullStr Inherited determinants of early recurrent somatic mutations in prostate cancer
title_full_unstemmed Inherited determinants of early recurrent somatic mutations in prostate cancer
title_sort inherited determinants of early recurrent somatic mutations in prostate cancer
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/9c76b74b1a9c4adba882a4b50f1bdddc
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