Functional annotation of rare gene aberration drivers of pancreatic cancer
Next generation sequencing allows the identification of oncogenic driver genes in pancreatic cancer. Here, in an effort to identify additional causal genes, the authors develop a high throughput in vivoscreen and identify genes that whilst infrequently mutated in pancreatic cancer contribute to tumo...
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Nature Portfolio
2016
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oai:doaj.org-article:ad00a3ec62c944099c564237f8e7c4982021-12-02T16:50:14ZFunctional annotation of rare gene aberration drivers of pancreatic cancer10.1038/ncomms105002041-1723https://doaj.org/article/ad00a3ec62c944099c564237f8e7c4982016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10500https://doaj.org/toc/2041-1723Next generation sequencing allows the identification of oncogenic driver genes in pancreatic cancer. Here, in an effort to identify additional causal genes, the authors develop a high throughput in vivoscreen and identify genes that whilst infrequently mutated in pancreatic cancer contribute to tumour formation.Yiu Huen TsangTurgut DogrulukPhilip M. TedeschiJoanna Wardwell-OzgoHengyu LuMaribel EspitiaNikitha NairRosalba MinelliZechen ChongFengju ChenQing Edward ChangJennifer B. DennisonArmel DogrulukMin LiHaoqiang YingJoseph R. BertinoMarie-Claude GingrasMichael IttmannJohn KerriganKen ChenChad J. CreightonKarina EterovicGordon B. MillsKenneth L. ScottNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016) |
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Science Q |
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Science Q Yiu Huen Tsang Turgut Dogruluk Philip M. Tedeschi Joanna Wardwell-Ozgo Hengyu Lu Maribel Espitia Nikitha Nair Rosalba Minelli Zechen Chong Fengju Chen Qing Edward Chang Jennifer B. Dennison Armel Dogruluk Min Li Haoqiang Ying Joseph R. Bertino Marie-Claude Gingras Michael Ittmann John Kerrigan Ken Chen Chad J. Creighton Karina Eterovic Gordon B. Mills Kenneth L. Scott Functional annotation of rare gene aberration drivers of pancreatic cancer |
description |
Next generation sequencing allows the identification of oncogenic driver genes in pancreatic cancer. Here, in an effort to identify additional causal genes, the authors develop a high throughput in vivoscreen and identify genes that whilst infrequently mutated in pancreatic cancer contribute to tumour formation. |
format |
article |
author |
Yiu Huen Tsang Turgut Dogruluk Philip M. Tedeschi Joanna Wardwell-Ozgo Hengyu Lu Maribel Espitia Nikitha Nair Rosalba Minelli Zechen Chong Fengju Chen Qing Edward Chang Jennifer B. Dennison Armel Dogruluk Min Li Haoqiang Ying Joseph R. Bertino Marie-Claude Gingras Michael Ittmann John Kerrigan Ken Chen Chad J. Creighton Karina Eterovic Gordon B. Mills Kenneth L. Scott |
author_facet |
Yiu Huen Tsang Turgut Dogruluk Philip M. Tedeschi Joanna Wardwell-Ozgo Hengyu Lu Maribel Espitia Nikitha Nair Rosalba Minelli Zechen Chong Fengju Chen Qing Edward Chang Jennifer B. Dennison Armel Dogruluk Min Li Haoqiang Ying Joseph R. Bertino Marie-Claude Gingras Michael Ittmann John Kerrigan Ken Chen Chad J. Creighton Karina Eterovic Gordon B. Mills Kenneth L. Scott |
author_sort |
Yiu Huen Tsang |
title |
Functional annotation of rare gene aberration drivers of pancreatic cancer |
title_short |
Functional annotation of rare gene aberration drivers of pancreatic cancer |
title_full |
Functional annotation of rare gene aberration drivers of pancreatic cancer |
title_fullStr |
Functional annotation of rare gene aberration drivers of pancreatic cancer |
title_full_unstemmed |
Functional annotation of rare gene aberration drivers of pancreatic cancer |
title_sort |
functional annotation of rare gene aberration drivers of pancreatic cancer |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/ad00a3ec62c944099c564237f8e7c498 |
work_keys_str_mv |
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