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Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair

Homologous recombination (HR) repair deficiency predisposes to cancer development, but also sensitizes cancer cells to DNA-damage-inducing therapeutics. Here we identify an HR-defect (HRD) gene signature, which can be used to functionally assess HR repair status without interrogating individual gene...

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Autores principales: Peng, Guang, Lin, Curtis Chun-Jen, Mo, Wei, Dai, Hui, Park, Yun-Yong, Kim, Soo-Mi, Peng, Yang, Mo, Qianxing, Siwko, Stefan, Hu, Ruozhen, Lee, Ju-Seog, Hennessy, Bryan, Hanash, Samir, Mills, Gordon B., Lin, Shiaw-Yih
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4017859/
https://www.ncbi.nlm.nih.gov/pubmed/24553445
http://dx.doi.org/10.1038/ncomms4361
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author Peng, Guang
Lin, Curtis Chun-Jen
Mo, Wei
Dai, Hui
Park, Yun-Yong
Kim, Soo-Mi
Peng, Yang
Mo, Qianxing
Siwko, Stefan
Hu, Ruozhen
Lee, Ju-Seog
Hennessy, Bryan
Hanash, Samir
Mills, Gordon B.
Lin, Shiaw-Yih
author_facet Peng, Guang
Lin, Curtis Chun-Jen
Mo, Wei
Dai, Hui
Park, Yun-Yong
Kim, Soo-Mi
Peng, Yang
Mo, Qianxing
Siwko, Stefan
Hu, Ruozhen
Lee, Ju-Seog
Hennessy, Bryan
Hanash, Samir
Mills, Gordon B.
Lin, Shiaw-Yih
author_sort Peng, Guang
collection PubMed
description Homologous recombination (HR) repair deficiency predisposes to cancer development, but also sensitizes cancer cells to DNA-damage-inducing therapeutics. Here we identify an HR-defect (HRD) gene signature, which can be used to functionally assess HR repair status without interrogating individual genetic alterations in cells. By using this HRD gene signature as a functional network analysis tool, we discover that simultaneous loss of two major tumor suppressors BRCA1 and PTEN extensively rewire the HR repair-deficient phenotype, which is found in cells with defects in either BRCA1 or PTEN alone. Moreover, the HRD gene signature serves as an effective drug discovery platform to identify agents targeting HR repair as potential chemo/radio-sensitizers. More importantly, this HRD gene signature is able to predict clinical outcomes across multiple cancer lineages. Our findings, therefore, provide a molecular profile of HR repair to assess its status at a functional network level, which can provide both biological insights and have clinical implications in cancer.
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spelling pubmed-40178592014-07-01 Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair Peng, Guang Lin, Curtis Chun-Jen Mo, Wei Dai, Hui Park, Yun-Yong Kim, Soo-Mi Peng, Yang Mo, Qianxing Siwko, Stefan Hu, Ruozhen Lee, Ju-Seog Hennessy, Bryan Hanash, Samir Mills, Gordon B. Lin, Shiaw-Yih Nat Commun Article Homologous recombination (HR) repair deficiency predisposes to cancer development, but also sensitizes cancer cells to DNA-damage-inducing therapeutics. Here we identify an HR-defect (HRD) gene signature, which can be used to functionally assess HR repair status without interrogating individual genetic alterations in cells. By using this HRD gene signature as a functional network analysis tool, we discover that simultaneous loss of two major tumor suppressors BRCA1 and PTEN extensively rewire the HR repair-deficient phenotype, which is found in cells with defects in either BRCA1 or PTEN alone. Moreover, the HRD gene signature serves as an effective drug discovery platform to identify agents targeting HR repair as potential chemo/radio-sensitizers. More importantly, this HRD gene signature is able to predict clinical outcomes across multiple cancer lineages. Our findings, therefore, provide a molecular profile of HR repair to assess its status at a functional network level, which can provide both biological insights and have clinical implications in cancer. 2014 /pmc/articles/PMC4017859/ /pubmed/24553445 http://dx.doi.org/10.1038/ncomms4361 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Peng, Guang
Lin, Curtis Chun-Jen
Mo, Wei
Dai, Hui
Park, Yun-Yong
Kim, Soo-Mi
Peng, Yang
Mo, Qianxing
Siwko, Stefan
Hu, Ruozhen
Lee, Ju-Seog
Hennessy, Bryan
Hanash, Samir
Mills, Gordon B.
Lin, Shiaw-Yih
Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair
title Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair
title_full Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair
title_fullStr Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair
title_full_unstemmed Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair
title_short Genome-wide Transcriptome Profiling of Homologous Recombination DNA Repair
title_sort genome-wide transcriptome profiling of homologous recombination dna repair
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4017859/
https://www.ncbi.nlm.nih.gov/pubmed/24553445
http://dx.doi.org/10.1038/ncomms4361
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