Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection
Deregulation of transcription factors is frequently observed in cancer. Here, the authors develop a blood-based approach to map transcription factor binding, revealing both patient-specific and tumour-specific aberrations
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Nature Portfolio
2019
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oai:doaj.org-article:dbef1e4364b449e490e94bf709b557cd2021-12-02T14:39:01ZInference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection10.1038/s41467-019-12714-42041-1723https://doaj.org/article/dbef1e4364b449e490e94bf709b557cd2019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12714-4https://doaj.org/toc/2041-1723Deregulation of transcription factors is frequently observed in cancer. Here, the authors develop a blood-based approach to map transcription factor binding, revealing both patient-specific and tumour-specific aberrationsPeter UlzSamantha PerakisQing ZhouTina MoserJelena BelicIsaac LazzeriAlbert WölflerArmin ZebischArmin GergerGunda PristauzEdgar PetruBrandon WhiteCharles E. S. RobertsJohn St. JohnMichael G. SchimekJochen B. GeiglThomas BauernhoferHeinz SillChristoph BockEllen HeitzerMichael R. SpeicherNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019) |
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Science Q Peter Ulz Samantha Perakis Qing Zhou Tina Moser Jelena Belic Isaac Lazzeri Albert Wölfler Armin Zebisch Armin Gerger Gunda Pristauz Edgar Petru Brandon White Charles E. S. Roberts John St. John Michael G. Schimek Jochen B. Geigl Thomas Bauernhofer Heinz Sill Christoph Bock Ellen Heitzer Michael R. Speicher Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection |
description |
Deregulation of transcription factors is frequently observed in cancer. Here, the authors develop a blood-based approach to map transcription factor binding, revealing both patient-specific and tumour-specific aberrations |
format |
article |
author |
Peter Ulz Samantha Perakis Qing Zhou Tina Moser Jelena Belic Isaac Lazzeri Albert Wölfler Armin Zebisch Armin Gerger Gunda Pristauz Edgar Petru Brandon White Charles E. S. Roberts John St. John Michael G. Schimek Jochen B. Geigl Thomas Bauernhofer Heinz Sill Christoph Bock Ellen Heitzer Michael R. Speicher |
author_facet |
Peter Ulz Samantha Perakis Qing Zhou Tina Moser Jelena Belic Isaac Lazzeri Albert Wölfler Armin Zebisch Armin Gerger Gunda Pristauz Edgar Petru Brandon White Charles E. S. Roberts John St. John Michael G. Schimek Jochen B. Geigl Thomas Bauernhofer Heinz Sill Christoph Bock Ellen Heitzer Michael R. Speicher |
author_sort |
Peter Ulz |
title |
Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection |
title_short |
Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection |
title_full |
Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection |
title_fullStr |
Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection |
title_full_unstemmed |
Inference of transcription factor binding from cell-free DNA enables tumor subtype prediction and early detection |
title_sort |
inference of transcription factor binding from cell-free dna enables tumor subtype prediction and early detection |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/dbef1e4364b449e490e94bf709b557cd |
work_keys_str_mv |
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