Cargando…

The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers

Genomic instability, a hallmark of cancer, is commonly caused by failures in the DNA damage response. Here we conducted a bioinformatical screen to reveal DNA damage response genes that are upregulated by estrogen and highly mutated in breast and ovarian cancers. This screen identified 53 estrogen-d...

Descripción completa

Detalles Bibliográficos
Autores principales: Strauss, Carmit, Kornowski, Maya, Benvenisty, Avraham, Shahar, Amit, Masury, Hadas, Ben-Porath, Ittai, Ravid, Tommer, Arbel-Eden, Ayelet, Goldberg, Michal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4253442/
https://www.ncbi.nlm.nih.gov/pubmed/25238049
_version_ 1782347259032109056
author Strauss, Carmit
Kornowski, Maya
Benvenisty, Avraham
Shahar, Amit
Masury, Hadas
Ben-Porath, Ittai
Ravid, Tommer
Arbel-Eden, Ayelet
Goldberg, Michal
author_facet Strauss, Carmit
Kornowski, Maya
Benvenisty, Avraham
Shahar, Amit
Masury, Hadas
Ben-Porath, Ittai
Ravid, Tommer
Arbel-Eden, Ayelet
Goldberg, Michal
author_sort Strauss, Carmit
collection PubMed
description Genomic instability, a hallmark of cancer, is commonly caused by failures in the DNA damage response. Here we conducted a bioinformatical screen to reveal DNA damage response genes that are upregulated by estrogen and highly mutated in breast and ovarian cancers. This screen identified 53 estrogen-dependent cancer genes, some of which are novel. Notably, the screen retrieved 9 DNA helicases as well as 5 nucleases. DNA2, which functions as both a helicase and a nuclease and plays a role in DNA repair and replication, was retrieved in the screen. Mutations in DNA2, found in estrogen-dependent cancers, are clustered in the helicase and nuclease domains, suggesting activity impairment. Indeed, we show that mutations found in ovarian cancers impair DNA2 activity. Depletion of DNA2 in cells reduces their tumorogenicity in mice. In human, high expression of DNA2 correlates with poor survival of estrogen receptor-positive patients but not of estrogen receptor-negative patients. We also demonstrate that depletion of DNA2 in cells reduces proliferation, while addition of estrogen restores proliferation. These findings suggest that cells responding to estrogen will proliferate despite being impaired in DNA2 activity, potentially promoting genomic instability and triggering cancer development.
format Online
Article
Text
id pubmed-4253442
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-42534422014-12-03 The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers Strauss, Carmit Kornowski, Maya Benvenisty, Avraham Shahar, Amit Masury, Hadas Ben-Porath, Ittai Ravid, Tommer Arbel-Eden, Ayelet Goldberg, Michal Oncotarget Research Paper Genomic instability, a hallmark of cancer, is commonly caused by failures in the DNA damage response. Here we conducted a bioinformatical screen to reveal DNA damage response genes that are upregulated by estrogen and highly mutated in breast and ovarian cancers. This screen identified 53 estrogen-dependent cancer genes, some of which are novel. Notably, the screen retrieved 9 DNA helicases as well as 5 nucleases. DNA2, which functions as both a helicase and a nuclease and plays a role in DNA repair and replication, was retrieved in the screen. Mutations in DNA2, found in estrogen-dependent cancers, are clustered in the helicase and nuclease domains, suggesting activity impairment. Indeed, we show that mutations found in ovarian cancers impair DNA2 activity. Depletion of DNA2 in cells reduces their tumorogenicity in mice. In human, high expression of DNA2 correlates with poor survival of estrogen receptor-positive patients but not of estrogen receptor-negative patients. We also demonstrate that depletion of DNA2 in cells reduces proliferation, while addition of estrogen restores proliferation. These findings suggest that cells responding to estrogen will proliferate despite being impaired in DNA2 activity, potentially promoting genomic instability and triggering cancer development. Impact Journals LLC 2014-11-01 /pmc/articles/PMC4253442/ /pubmed/25238049 Text en Copyright: © 2014 Strauss et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Strauss, Carmit
Kornowski, Maya
Benvenisty, Avraham
Shahar, Amit
Masury, Hadas
Ben-Porath, Ittai
Ravid, Tommer
Arbel-Eden, Ayelet
Goldberg, Michal
The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
title The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
title_full The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
title_fullStr The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
title_full_unstemmed The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
title_short The DNA2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
title_sort dna2 nuclease/helicase is an estrogen-dependent gene mutated in breast and ovarian cancers
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4253442/
https://www.ncbi.nlm.nih.gov/pubmed/25238049
work_keys_str_mv AT strausscarmit thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT kornowskimaya thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT benvenistyavraham thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT shaharamit thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT masuryhadas thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT benporathittai thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT ravidtommer thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT arbeledenayelet thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT goldbergmichal thedna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT strausscarmit dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT kornowskimaya dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT benvenistyavraham dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT shaharamit dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT masuryhadas dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT benporathittai dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT ravidtommer dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT arbeledenayelet dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers
AT goldbergmichal dna2nucleasehelicaseisanestrogendependentgenemutatedinbreastandovariancancers