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Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer

Whole-genome sequencing of primary breast tumors enabled the identification of cancer driver genes and noncoding cancer driver plexuses from somatic mutations. However, differentiating driver from passenger events among noncoding genetic variants remains a challenge. Herein, we reveal cancer-driver...

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Autores principales: El Ghamrasni, Samah, Quevedo, Rene, Hawley, James, Mazrooei, Parisa, Hanna, Youstina, Cirlan, Iulia, Zhu, Helen, Bruce, Jeff P., Oldfield, Leslie E., Yang, S.Y. Cindy, Guilhamon, Paul, Reimand, Jüri, Cescon, Dave W., Done, Susan J., Lupien, Mathieu, Pugh, Trevor J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398156/
https://www.ncbi.nlm.nih.gov/pubmed/34556523
http://dx.doi.org/10.1158/1541-7786.MCR-21-0471
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author El Ghamrasni, Samah
Quevedo, Rene
Hawley, James
Mazrooei, Parisa
Hanna, Youstina
Cirlan, Iulia
Zhu, Helen
Bruce, Jeff P.
Oldfield, Leslie E.
Yang, S.Y. Cindy
Guilhamon, Paul
Reimand, Jüri
Cescon, Dave W.
Done, Susan J.
Lupien, Mathieu
Pugh, Trevor J.
author_facet El Ghamrasni, Samah
Quevedo, Rene
Hawley, James
Mazrooei, Parisa
Hanna, Youstina
Cirlan, Iulia
Zhu, Helen
Bruce, Jeff P.
Oldfield, Leslie E.
Yang, S.Y. Cindy
Guilhamon, Paul
Reimand, Jüri
Cescon, Dave W.
Done, Susan J.
Lupien, Mathieu
Pugh, Trevor J.
author_sort El Ghamrasni, Samah
collection PubMed
description Whole-genome sequencing of primary breast tumors enabled the identification of cancer driver genes and noncoding cancer driver plexuses from somatic mutations. However, differentiating driver from passenger events among noncoding genetic variants remains a challenge. Herein, we reveal cancer-driver cis-regulatory elements linked to transcription factors previously shown to be involved in development of luminal breast cancers by defining a tumor-enriched catalogue of approximately 100,000 unique cis-regulatory elements from 26 primary luminal estrogen receptor (ER)(+) progesterone receptor (PR)(+) breast tumors. Integrating this catalog with somatic mutations from 350 publicly available breast tumor whole genomes, we uncovered cancer driver cistromes, defined as the sum of binding sites for a transcription factor, for ten transcription factors in luminal breast cancer such as FOXA1 and ER, nine of which are essential for growth in breast cancer with four exclusive to the luminal subtype. Collectively, we present a strategy to find cancer driver cistromes relying on quantifying the enrichment of noncoding mutations over cis-regulatory elements concatenated into a functional unit. IMPLICATIONS: Mapping the accessible chromatin of luminal breast cancer led to discovery of an accumulation of mutations within cistromes of transcription factors essential to luminal breast cancer. This demonstrates coopting of regulatory networks to drive cancer and provides a framework to derive insight into the noncoding space of cancer.
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spelling pubmed-93981562023-01-05 Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer El Ghamrasni, Samah Quevedo, Rene Hawley, James Mazrooei, Parisa Hanna, Youstina Cirlan, Iulia Zhu, Helen Bruce, Jeff P. Oldfield, Leslie E. Yang, S.Y. Cindy Guilhamon, Paul Reimand, Jüri Cescon, Dave W. Done, Susan J. Lupien, Mathieu Pugh, Trevor J. Mol Cancer Res Cancer “-Omics” Whole-genome sequencing of primary breast tumors enabled the identification of cancer driver genes and noncoding cancer driver plexuses from somatic mutations. However, differentiating driver from passenger events among noncoding genetic variants remains a challenge. Herein, we reveal cancer-driver cis-regulatory elements linked to transcription factors previously shown to be involved in development of luminal breast cancers by defining a tumor-enriched catalogue of approximately 100,000 unique cis-regulatory elements from 26 primary luminal estrogen receptor (ER)(+) progesterone receptor (PR)(+) breast tumors. Integrating this catalog with somatic mutations from 350 publicly available breast tumor whole genomes, we uncovered cancer driver cistromes, defined as the sum of binding sites for a transcription factor, for ten transcription factors in luminal breast cancer such as FOXA1 and ER, nine of which are essential for growth in breast cancer with four exclusive to the luminal subtype. Collectively, we present a strategy to find cancer driver cistromes relying on quantifying the enrichment of noncoding mutations over cis-regulatory elements concatenated into a functional unit. IMPLICATIONS: Mapping the accessible chromatin of luminal breast cancer led to discovery of an accumulation of mutations within cistromes of transcription factors essential to luminal breast cancer. This demonstrates coopting of regulatory networks to drive cancer and provides a framework to derive insight into the noncoding space of cancer. American Association for Cancer Research 2022-01-01 2021-09-23 /pmc/articles/PMC9398156/ /pubmed/34556523 http://dx.doi.org/10.1158/1541-7786.MCR-21-0471 Text en ©2021 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Cancer “-Omics”
El Ghamrasni, Samah
Quevedo, Rene
Hawley, James
Mazrooei, Parisa
Hanna, Youstina
Cirlan, Iulia
Zhu, Helen
Bruce, Jeff P.
Oldfield, Leslie E.
Yang, S.Y. Cindy
Guilhamon, Paul
Reimand, Jüri
Cescon, Dave W.
Done, Susan J.
Lupien, Mathieu
Pugh, Trevor J.
Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer
title Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer
title_full Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer
title_fullStr Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer
title_full_unstemmed Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer
title_short Mutations in Noncoding Cis-Regulatory Elements Reveal Cancer Driver Cistromes in Luminal Breast Cancer
title_sort mutations in noncoding cis-regulatory elements reveal cancer driver cistromes in luminal breast cancer
topic Cancer “-Omics”
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398156/
https://www.ncbi.nlm.nih.gov/pubmed/34556523
http://dx.doi.org/10.1158/1541-7786.MCR-21-0471
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