Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex

A number of natural occurring small-molecule splicing modulators are known. Here, the authors combine chemogenomic, structural and biochemical methods and show that these compounds also target the spliceosome-associated protein PHF5A and propose a potential modulator binding site in the PHF5A–SF3B1...

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Autores principales: Teng Teng, Jennifer HC Tsai, Xiaoling Puyang, Michael Seiler, Shouyong Peng, Sudeep Prajapati, Daniel Aird, Silvia Buonamici, Benjamin Caleb, Betty Chan, Laura Corson, Jacob Feala, Peter Fekkes, Baudouin Gerard, Craig Karr, Manav Korpal, Xiang Liu, Jason T. Lowe, Yoshiharu Mizui, James Palacino, Eunice Park, Peter G. Smith, Vanitha Subramanian, Zhenhua Jeremy Wu, Jian Zou, Lihua Yu, Agustin Chicas, Markus Warmuth, Nicholas Larsen, Ping Zhu
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/bcd02552d59140f1871d75acbfffec14
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spelling oai:doaj.org-article:bcd02552d59140f1871d75acbfffec142021-12-02T15:37:05ZSplicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex10.1038/ncomms155222041-1723https://doaj.org/article/bcd02552d59140f1871d75acbfffec142017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15522https://doaj.org/toc/2041-1723A number of natural occurring small-molecule splicing modulators are known. Here, the authors combine chemogenomic, structural and biochemical methods and show that these compounds also target the spliceosome-associated protein PHF5A and propose a potential modulator binding site in the PHF5A–SF3B1 complex.Teng TengJennifer HC TsaiXiaoling PuyangMichael SeilerShouyong PengSudeep PrajapatiDaniel AirdSilvia BuonamiciBenjamin CalebBetty ChanLaura CorsonJacob FealaPeter FekkesBaudouin GerardCraig KarrManav KorpalXiang LiuJason T. LoweYoshiharu MizuiJames PalacinoEunice ParkPeter G. SmithVanitha SubramanianZhenhua Jeremy WuJian ZouLihua YuAgustin ChicasMarkus WarmuthNicholas LarsenPing ZhuNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-16 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Teng Teng
Jennifer HC Tsai
Xiaoling Puyang
Michael Seiler
Shouyong Peng
Sudeep Prajapati
Daniel Aird
Silvia Buonamici
Benjamin Caleb
Betty Chan
Laura Corson
Jacob Feala
Peter Fekkes
Baudouin Gerard
Craig Karr
Manav Korpal
Xiang Liu
Jason T. Lowe
Yoshiharu Mizui
James Palacino
Eunice Park
Peter G. Smith
Vanitha Subramanian
Zhenhua Jeremy Wu
Jian Zou
Lihua Yu
Agustin Chicas
Markus Warmuth
Nicholas Larsen
Ping Zhu
Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex
description A number of natural occurring small-molecule splicing modulators are known. Here, the authors combine chemogenomic, structural and biochemical methods and show that these compounds also target the spliceosome-associated protein PHF5A and propose a potential modulator binding site in the PHF5A–SF3B1 complex.
format article
author Teng Teng
Jennifer HC Tsai
Xiaoling Puyang
Michael Seiler
Shouyong Peng
Sudeep Prajapati
Daniel Aird
Silvia Buonamici
Benjamin Caleb
Betty Chan
Laura Corson
Jacob Feala
Peter Fekkes
Baudouin Gerard
Craig Karr
Manav Korpal
Xiang Liu
Jason T. Lowe
Yoshiharu Mizui
James Palacino
Eunice Park
Peter G. Smith
Vanitha Subramanian
Zhenhua Jeremy Wu
Jian Zou
Lihua Yu
Agustin Chicas
Markus Warmuth
Nicholas Larsen
Ping Zhu
author_facet Teng Teng
Jennifer HC Tsai
Xiaoling Puyang
Michael Seiler
Shouyong Peng
Sudeep Prajapati
Daniel Aird
Silvia Buonamici
Benjamin Caleb
Betty Chan
Laura Corson
Jacob Feala
Peter Fekkes
Baudouin Gerard
Craig Karr
Manav Korpal
Xiang Liu
Jason T. Lowe
Yoshiharu Mizui
James Palacino
Eunice Park
Peter G. Smith
Vanitha Subramanian
Zhenhua Jeremy Wu
Jian Zou
Lihua Yu
Agustin Chicas
Markus Warmuth
Nicholas Larsen
Ping Zhu
author_sort Teng Teng
title Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex
title_short Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex
title_full Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex
title_fullStr Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex
title_full_unstemmed Splicing modulators act at the branch point adenosine binding pocket defined by the PHF5A–SF3b complex
title_sort splicing modulators act at the branch point adenosine binding pocket defined by the phf5a–sf3b complex
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/bcd02552d59140f1871d75acbfffec14
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