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An order-to-disorder structural switch activates the FoxM1 transcription factor

Authors :
Andrew C. McShan
Eefei Chen
Nikolaos G. Sgourakis
Caileen M Brison
Aimee H. Marceau
Heather E. Arsenault
Santrupti Nerli
Seth M. Rubin
Jennifer A. Benanti
Hsiau-Wei Lee
Source :
eLife, Vol 8 (2019), eLife
Publication Year :
2019
Publisher :
eLife Sciences Publications Ltd, 2019.

Abstract

Intrinsically disordered transcription factor transactivation domains (TADs) function through structural plasticity, adopting ordered conformations when bound to transcriptional co-regulators. Many transcription factors contain a negative regulatory domain (NRD) that suppresses recruitment of transcriptional machinery through autoregulation of the TAD. We report the solution structure of an autoinhibited NRD-TAD complex within FoxM1, a critical activator of mitotic gene expression. We observe that while both the FoxM1 NRD and TAD are primarily intrinsically disordered domains, they associate and adopt a structured conformation. We identify how Plk1 and Cdk kinases cooperate to phosphorylate FoxM1, which releases the TAD into a disordered conformation that then associates with the TAZ2 or KIX domains of the transcriptional co-activator CBP. Our results support a mechanism of FoxM1 regulation in which the TAD undergoes switching between disordered and different ordered structures.

Details

Language :
English
Volume :
8
Database :
OpenAIRE
Journal :
eLife
Accession number :
edsair.doi.dedup.....a178b8b3e202d765f573c35cbb6cc72f