Literature DB >> 33558557

Mutational processes in cancer preferentially affect binding of particular transcription factors.

Mo Liu1,2, Arnoud Boot1,2, Alvin W T Ng1,2, Raluca Gordân3, Steven G Rozen4,5.   

Abstract

Protein binding microarrays provide comprehensive information about the DNA binding specificities of transcription factors (TFs), and can be used to quantitatively predict the effects of DNA sequence variation on TF binding. There has also been substantial progress in dissecting the patterns of mutations, i.e., the "mutational signatures", generated by different mutational processes. By combining these two layers of information we can investigate whether certain mutational processes tend to preferentially affect binding of particular classes of TFs. Such preferential alterations of binding might predispose to particular oncogenic pathways. We developed and implemented a method, termed "Signature-QBiC", that integrates protein binding microarray data with the signatures of mutational processes, with the aim of predicting which TFs' binding profiles are preferentially perturbed by particular mutational processes. We used Signature-QBiC to predict the effects of 47 signatures of mutational processes on 582 human TFs. Pathway analysis showed that binding of TFs involved in NOTCH1 signaling is strongly affected by the signatures of several mutational processes, including exposure to ultraviolet radiation. Additionally, toll-like-receptor signaling pathways are also vulnerable to disruption by this exposure. This study provides a novel overview of the effects of mutational processes on TF binding and the potential of these processes to activate oncogenic pathways through mutating TF binding sites.

Entities:  

Year:  2021        PMID: 33558557     DOI: 10.1038/s41598-021-82910-0

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.379


  25 in total

1.  Protein binding microarrays (PBMs) for rapid, high-throughput characterization of the sequence specificities of DNA binding proteins.

Authors:  Michael F Berger; Martha L Bulyk
Journal:  Methods Mol Biol       Date:  2006

2.  Compact, universal DNA microarrays to comprehensively determine transcription-factor binding site specificities.

Authors:  Michael F Berger; Anthony A Philippakis; Aaron M Qureshi; Fangxue S He; Preston W Estep; Martha L Bulyk
Journal:  Nat Biotechnol       Date:  2006-09-24       Impact factor: 54.908

3.  Recurrent TERT promoter mutations identified in a large-scale study of multiple tumour types are associated with increased TERT expression and telomerase activation.

Authors:  Dong-Sheng Huang; Zhaohui Wang; Xu-Jun He; Bill H Diplas; Rui Yang; Patrick J Killela; Qun Meng; Zai-Yuan Ye; Wei Wang; Xiao-Ting Jiang; Li Xu; Xiang-Lei He; Zhong-Sheng Zhao; Wen-Juan Xu; Hui-Ju Wang; Ying-Yu Ma; Ying-Jie Xia; Li Li; Ru-Xuan Zhang; Tao Jin; Zhong-Kuo Zhao; Ji Xu; Sheng Yu; Fang Wu; Junbo Liang; Sizhen Wang; Yuchen Jiao; Hai Yan; Hou-Quan Tao
Journal:  Eur J Cancer       Date:  2015-04-02       Impact factor: 9.162

4.  QBiC-Pred: quantitative predictions of transcription factor binding changes due to sequence variants.

Authors:  Vincentius Martin; Jingkang Zhao; Ariel Afek; Zachery Mielko; Raluca Gordân
Journal:  Nucleic Acids Res       Date:  2019-07-02       Impact factor: 16.971

5.  Highly recurrent TERT promoter mutations in human melanoma.

Authors:  Franklin W Huang; Eran Hodis; Mary Jue Xu; Gregory V Kryukov; Lynda Chin; Levi A Garraway
Journal:  Science       Date:  2013-01-24       Impact factor: 47.728

6.  Universal protein-binding microarrays for the comprehensive characterization of the DNA-binding specificities of transcription factors.

Authors:  Michael F Berger; Martha L Bulyk
Journal:  Nat Protoc       Date:  2009       Impact factor: 13.491

7.  RSAT 2011: regulatory sequence analysis tools.

Authors:  Morgane Thomas-Chollier; Matthieu Defrance; Alejandra Medina-Rivera; Olivier Sand; Carl Herrmann; Denis Thieffry; Jacques van Helden
Journal:  Nucleic Acids Res       Date:  2011-07       Impact factor: 16.971

8.  The repertoire of mutational signatures in human cancer.

Authors:  Ludmil B Alexandrov; Jaegil Kim; Gad Getz; Steven G Rozen; Michael R Stratton; Nicholas J Haradhvala; Mi Ni Huang; Alvin Wei Tian Ng; Yang Wu; Arnoud Boot; Kyle R Covington; Dmitry A Gordenin; Erik N Bergstrom; S M Ashiqul Islam; Nuria Lopez-Bigas; Leszek J Klimczak; John R McPherson; Sandro Morganella; Radhakrishnan Sabarinathan; David A Wheeler; Ville Mustonen
Journal:  Nature       Date:  2020-02-05       Impact factor: 49.962

9.  Deciphering signatures of mutational processes operative in human cancer.

Authors:  Ludmil B Alexandrov; Serena Nik-Zainal; David C Wedge; Peter J Campbell; Michael R Stratton
Journal:  Cell Rep       Date:  2013-01-10       Impact factor: 9.423

10.  Landscape of somatic mutations in 560 breast cancer whole-genome sequences.

Authors:  Serena Nik-Zainal; Helen Davies; Johan Staaf; Manasa Ramakrishna; Dominik Glodzik; Xueqing Zou; Inigo Martincorena; Ludmil B Alexandrov; Sancha Martin; David C Wedge; Peter Van Loo; Young Seok Ju; Marcel Smid; Arie B Brinkman; Sandro Morganella; Miriam R Aure; Ole Christian Lingjærde; Anita Langerød; Markus Ringnér; Sung-Min Ahn; Sandrine Boyault; Jane E Brock; Annegien Broeks; Adam Butler; Christine Desmedt; Luc Dirix; Serge Dronov; Aquila Fatima; John A Foekens; Moritz Gerstung; Gerrit K J Hooijer; Se Jin Jang; David R Jones; Hyung-Yong Kim; Tari A King; Savitri Krishnamurthy; Hee Jin Lee; Jeong-Yeon Lee; Yilong Li; Stuart McLaren; Andrew Menzies; Ville Mustonen; Sarah O'Meara; Iris Pauporté; Xavier Pivot; Colin A Purdie; Keiran Raine; Kamna Ramakrishnan; F Germán Rodríguez-González; Gilles Romieu; Anieta M Sieuwerts; Peter T Simpson; Rebecca Shepherd; Lucy Stebbings; Olafur A Stefansson; Jon Teague; Stefania Tommasi; Isabelle Treilleux; Gert G Van den Eynden; Peter Vermeulen; Anne Vincent-Salomon; Lucy Yates; Carlos Caldas; Laura van't Veer; Andrew Tutt; Stian Knappskog; Benita Kiat Tee Tan; Jos Jonkers; Åke Borg; Naoto T Ueno; Christos Sotiriou; Alain Viari; P Andrew Futreal; Peter J Campbell; Paul N Span; Steven Van Laere; Sunil R Lakhani; Jorunn E Eyfjord; Alastair M Thompson; Ewan Birney; Hendrik G Stunnenberg; Marc J van de Vijver; John W M Martens; Anne-Lise Børresen-Dale; Andrea L Richardson; Gu Kong; Gilles Thomas; Michael R Stratton
Journal:  Nature       Date:  2016-05-02       Impact factor: 49.962

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  1 in total

1.  Direct observation of DNA alterations induced by a DNA disruptor.

Authors:  Takahito Ohshiro; Ayumu Asai; Masamitsu Konno; Mayuka Ohkawa; Yuki Komoto; Ken Ofusa; Hideshi Ishii; Masateru Taniguchi
Journal:  Sci Rep       Date:  2022-04-28       Impact factor: 4.996

  1 in total

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