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An activity-specificity trade-off encoded in human transcription factors

Authors :
Naderi, Julian
Magalhaes, Alexandre P.
Kibar, Gözde
Stik, Gregoire
Zhang, Yaotian
Mackowiak, Sebastian D.
Wieler, Hannah M.
Rossi, Francesca
Buschow, Rene
Christou-Kent, Marie
Alcoverro-Bertran, Marc
Graf, Thomas
Vingron, Martin
Hnisz, Denes
Source :
Nature Cell Biology; August 2024, Vol. 26 Issue: 8 p1309-1321, 13p
Publication Year :
2024

Abstract

Transcription factors (TFs) control specificity and activity of gene transcription, but whether a relationship between these two features exists is unclear. Here we provide evidence for an evolutionary trade-off between the activity and specificity in human TFs encoded as submaximal dispersion of aromatic residues in their intrinsically disordered protein regions. We identified approximately 500 human TFs that encode short periodic blocks of aromatic residues in their intrinsically disordered regions, resembling imperfect prion-like sequences. Mutation of periodic aromatic residues reduced transcriptional activity, whereas increasing the aromatic dispersion of multiple human TFs enhanced transcriptional activity and reprogramming efficiency, promoted liquid–liquid phase separation in vitro and more promiscuous DNA binding in cells. Together with recent work on enhancer elements, these results suggest an important evolutionary role of suboptimal features in transcriptional control. We propose that rational engineering of amino acid features that alter phase separation may be a strategy to optimize TF-dependent processes, including cellular reprogramming.

Details

Language :
English
ISSN :
14657392 and 14764679
Volume :
26
Issue :
8
Database :
Supplemental Index
Journal :
Nature Cell Biology
Publication Type :
Periodical
Accession number :
ejs66855380
Full Text :
https://doi.org/10.1038/s41556-024-01411-0