Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma

Liposarcoma (LPS) is a rare cancer that can acquire resistance to chemotherapy. Here, the authors map super-enhancers in LPS, finding BET-protein dependent mechanisms that can be targeted by a BET protein degrader, which also can overcome acquired resistance to chemotherapy in LPS.

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Autores principales: Ye Chen, Liang Xu, Anand Mayakonda, Mo-Li Huang, Deepika Kanojia, Tuan Zea Tan, Pushkar Dakle, Ruby Yu-Tong Lin, Xin-Yu Ke, Jonathan W. Said, Jianxiang Chen, Sigal Gery, Ling-Wen Ding, Yan-Yi Jiang, Angela Pang, Mark Edward Puhaindran, Boon Cher Goh, H. Phillip Koeffler
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/737f0325add94122b8c3c1a96fabd32f
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spelling oai:doaj.org-article:737f0325add94122b8c3c1a96fabd32f2021-12-02T15:35:53ZBromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma10.1038/s41467-019-09257-z2041-1723https://doaj.org/article/737f0325add94122b8c3c1a96fabd32f2019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09257-zhttps://doaj.org/toc/2041-1723Liposarcoma (LPS) is a rare cancer that can acquire resistance to chemotherapy. Here, the authors map super-enhancers in LPS, finding BET-protein dependent mechanisms that can be targeted by a BET protein degrader, which also can overcome acquired resistance to chemotherapy in LPS.Ye ChenLiang XuAnand MayakondaMo-Li HuangDeepika KanojiaTuan Zea TanPushkar DakleRuby Yu-Tong LinXin-Yu KeJonathan W. SaidJianxiang ChenSigal GeryLing-Wen DingYan-Yi JiangAngela PangMark Edward PuhaindranBoon Cher GohH. Phillip KoefflerNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ye Chen
Liang Xu
Anand Mayakonda
Mo-Li Huang
Deepika Kanojia
Tuan Zea Tan
Pushkar Dakle
Ruby Yu-Tong Lin
Xin-Yu Ke
Jonathan W. Said
Jianxiang Chen
Sigal Gery
Ling-Wen Ding
Yan-Yi Jiang
Angela Pang
Mark Edward Puhaindran
Boon Cher Goh
H. Phillip Koeffler
Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
description Liposarcoma (LPS) is a rare cancer that can acquire resistance to chemotherapy. Here, the authors map super-enhancers in LPS, finding BET-protein dependent mechanisms that can be targeted by a BET protein degrader, which also can overcome acquired resistance to chemotherapy in LPS.
format article
author Ye Chen
Liang Xu
Anand Mayakonda
Mo-Li Huang
Deepika Kanojia
Tuan Zea Tan
Pushkar Dakle
Ruby Yu-Tong Lin
Xin-Yu Ke
Jonathan W. Said
Jianxiang Chen
Sigal Gery
Ling-Wen Ding
Yan-Yi Jiang
Angela Pang
Mark Edward Puhaindran
Boon Cher Goh
H. Phillip Koeffler
author_facet Ye Chen
Liang Xu
Anand Mayakonda
Mo-Li Huang
Deepika Kanojia
Tuan Zea Tan
Pushkar Dakle
Ruby Yu-Tong Lin
Xin-Yu Ke
Jonathan W. Said
Jianxiang Chen
Sigal Gery
Ling-Wen Ding
Yan-Yi Jiang
Angela Pang
Mark Edward Puhaindran
Boon Cher Goh
H. Phillip Koeffler
author_sort Ye Chen
title Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
title_short Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
title_full Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
title_fullStr Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
title_full_unstemmed Bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
title_sort bromodomain and extraterminal proteins foster the core transcriptional regulatory programs and confer vulnerability in liposarcoma
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/737f0325add94122b8c3c1a96fabd32f
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