A genetic basis for the variation in the vulnerability of cancer to DNA damage
The variability in patient response to radiation treatment is difficult to predict. Here, using more than 500 cell lines the authors measure response to radiation exposure and a large panel of compounds, and show that response can be predicted by genetic alterations of the cells.
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Nature Portfolio
2016
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oai:doaj.org-article:877ae97e5e624e97832802165a4376542021-12-02T14:38:35ZA genetic basis for the variation in the vulnerability of cancer to DNA damage10.1038/ncomms114282041-1723https://doaj.org/article/877ae97e5e624e97832802165a4376542016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11428https://doaj.org/toc/2041-1723The variability in patient response to radiation treatment is difficult to predict. Here, using more than 500 cell lines the authors measure response to radiation exposure and a large panel of compounds, and show that response can be predicted by genetic alterations of the cells.Brian D. YardDrew J. AdamsEui Kyu ChiePablo TamayoJessica S. BattagliaPriyanka GopalKevin RogackiBradley E. PearsonJames PhillipsDaniel P. RaymondNathan A. PennellFrancisco AlmeidaJaime H. CheahPaul A. ClemonsAlykhan ShamjiCraig D. PeacockStuart L. SchreiberPeter S. HammermanMohamed E. AbazeedNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016) |
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Science Q Brian D. Yard Drew J. Adams Eui Kyu Chie Pablo Tamayo Jessica S. Battaglia Priyanka Gopal Kevin Rogacki Bradley E. Pearson James Phillips Daniel P. Raymond Nathan A. Pennell Francisco Almeida Jaime H. Cheah Paul A. Clemons Alykhan Shamji Craig D. Peacock Stuart L. Schreiber Peter S. Hammerman Mohamed E. Abazeed A genetic basis for the variation in the vulnerability of cancer to DNA damage |
description |
The variability in patient response to radiation treatment is difficult to predict. Here, using more than 500 cell lines the authors measure response to radiation exposure and a large panel of compounds, and show that response can be predicted by genetic alterations of the cells. |
format |
article |
author |
Brian D. Yard Drew J. Adams Eui Kyu Chie Pablo Tamayo Jessica S. Battaglia Priyanka Gopal Kevin Rogacki Bradley E. Pearson James Phillips Daniel P. Raymond Nathan A. Pennell Francisco Almeida Jaime H. Cheah Paul A. Clemons Alykhan Shamji Craig D. Peacock Stuart L. Schreiber Peter S. Hammerman Mohamed E. Abazeed |
author_facet |
Brian D. Yard Drew J. Adams Eui Kyu Chie Pablo Tamayo Jessica S. Battaglia Priyanka Gopal Kevin Rogacki Bradley E. Pearson James Phillips Daniel P. Raymond Nathan A. Pennell Francisco Almeida Jaime H. Cheah Paul A. Clemons Alykhan Shamji Craig D. Peacock Stuart L. Schreiber Peter S. Hammerman Mohamed E. Abazeed |
author_sort |
Brian D. Yard |
title |
A genetic basis for the variation in the vulnerability of cancer to DNA damage |
title_short |
A genetic basis for the variation in the vulnerability of cancer to DNA damage |
title_full |
A genetic basis for the variation in the vulnerability of cancer to DNA damage |
title_fullStr |
A genetic basis for the variation in the vulnerability of cancer to DNA damage |
title_full_unstemmed |
A genetic basis for the variation in the vulnerability of cancer to DNA damage |
title_sort |
genetic basis for the variation in the vulnerability of cancer to dna damage |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/877ae97e5e624e97832802165a437654 |
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