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The SET oncoprotein promotes estrogen-induced transcription by facilitating establishment of active chromatin.


ABSTRACT: SET is a multifunctional histone-binding oncoprotein that regulates transcription by an unclear mechanism. Here we show that SET enhances estrogen-dependent transcription. SET knockdown abrogates transcription of estrogen-responsive genes and their enhancer RNAs. In response to 17β-estradiol (E2), SET binds to the estrogen receptor α (ERα) and is recruited to ERα-bound enhancers and promoters at estrogen response elements (EREs). SET functions as a histone H2 chaperone that dynamically associates with H2A.Z via its acidic C-terminal domain and promotes H2A.Z incorporation, ERα, MLL1, and KDM3A loading and modulates histone methylation at EREs. SET depletion diminishes recruitment of condensin complexes to EREs and impairs E2-dependent enhancer-promoter looping. Thus, SET boosts E2-induced gene expression by establishing an active chromatin structure at ERα-bound enhancers and promoters, which is essential for transcriptional activation.

SUBMITTER: Guo C 

PROVIDER: S-EPMC9974495 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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The SET oncoprotein promotes estrogen-induced transcription by facilitating establishment of active chromatin.

Guo Changying C   Meza-Sosa Karla F KF   Valle-Garcia David D   Zhao Guomeng G   Gao Kun K   Yu Liting L   Zhang Hongying H   Chen Yeqing Y   Sun Liang L   Rockowitz Shira S   Wang Shouyu S   Jiang Sheng S   Lieberman Judy J  

Proceedings of the National Academy of Sciences of the United States of America 20230215 8


SET is a multifunctional histone-binding oncoprotein that regulates transcription by an unclear mechanism. Here we show that SET enhances estrogen-dependent transcription. SET knockdown abrogates transcription of estrogen-responsive genes and their enhancer RNAs. In response to 17β-estradiol (E2), SET binds to the estrogen receptor α (ERα) and is recruited to ERα-bound enhancers and promoters at estrogen response elements (EREs). SET functions as a histone H2 chaperone that dynamically associate  ...[more]

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