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PMID: 25586196 Published · epublish English

Cytoplasmic TAF2-TAF8-TAF10 complex provides evidence for nuclear holo-TFIID assembly from preformed submodules.

Nature communications ·Vol. 6 ·2016-02-08

Trowitzsch Simon, Viola Cristina, Scheer Elisabeth, Conic Sascha, Chavant Virginie, Fournier Marjorie, Papai Gabor, Ebong Ima-Obong, Schaffitzel Christiane, Zou Juan, Haffke Matthias, Rappsilber Juri, Robinson Carol V, Schultz Patrick, Tora Laszlo, Berger Imre

Abstract

General transcription factor TFIID is a cornerstone of RNA polymerase II transcription initiation in eukaryotic cells. How human TFIID-a megadalton-sized multiprotein complex composed of the TATA-binding protein (TBP) and 13 TBP-associated factors (TAFs)-assembles into a functional transcription factor is poorly understood. Here we describe a heterotrimeric TFIID subcomplex consisting of the TAF2, TAF8 and TAF10 proteins, which assembles in the cytoplasm. Using native mass spectrometry, we define the interactions between the TAFs and uncover a central role for TAF8 in nucleating the complex. X-ray crystallography reveals a non-canonical arrangement of the TAF8-TAF10 histone fold domains. TAF2 binds to multiple motifs within the TAF8 C-terminal region, and these interactions dictate TAF2 incorporation into a core-TFIID complex that exists in the nucleus. Our results provide evidence for a stepwise assembly pathway of nuclear holo-TFIID, regulated by nuclear import of preformed cytoplasmic submodules.

Article Info
Journal
Nature communications
Abbr.
Nat Commun
Published
2016-02-08
Indexed
2015-01-14
Updated
2016-11-22
Language
English
Country/Region
England
NLM ID
101528555
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