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Recruitment of CTCF to the SIRT1 promoter after Oxidative Stress mediates Cardioprotective Transcription.

Authors :
Wagner T
Priyanka P
Micheletti R
Friedman MJ
Nair SJ
Gamliel A
Taylor H
Song X
Cho M
Oh S
Li W
Han J
Ohgi KA
Abrass M
D'Antonio-Chronowska A
D'Antonio M
Hazuda H
Duggirala R
Blangero J
Ding S
Guzmann C
Frazer KA
Aggarwal AK
Zemljic-Harpf AE
Rosenfeld MG
Suh Y
Source :
BioRxiv : the preprint server for biology [bioRxiv] 2024 May 22. Date of Electronic Publication: 2024 May 22.
Publication Year :
2024

Abstract

Because most DNA-binding transcription factors (dbTFs), including the architectural regulator CTCF, bind RNA and exhibit di-/multimerization, a central conundrum is whether these distinct properties are regulated post-transcriptionally to modulate transcriptional programs. Here, investigating stress-dependent activation of SIRT1, encoding an evolutionarily-conserved protein deacetylase, we show that induced phosphorylation of CTCF acts as a rheostat to permit CTCF occupancy of low-affinity promoter DNA sites to precisely the levels necessary. This CTCF recruitment to the SIRT1 promoter is eliciting a cardioprotective cardiomyocyte transcriptional activation program and provides resilience against the stress of the beating heart in vivo . Mice harboring a mutation in the conserved low-affinity CTCF promoter binding site exhibit an altered, cardiomyocyte-specific transcriptional program and a systolic heart failure phenotype. This transcriptional role for CTCF reveals that a covalent dbTF modification regulating signal-dependent transcription serves as a previously unsuspected component of the oxidative stress response.

Details

Language :
English
Database :
MEDLINE
Journal :
BioRxiv : the preprint server for biology
Accession number :
38798402
Full Text :
https://doi.org/10.1101/2024.05.17.594600