Epigenetics and transcription regulation during eukaryotic diversification: the saga of TFIID

Publication date

2019-08-01

Authors

Antonova, Simona VISNI 0000000506811530
Boeren, Jeffrey
Timmers, H T Marc
Snel, BerendISNI 000000039128969X

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Document Type

Article
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Abstract

The basal transcription factor TFIID is central for RNA polymerase II-dependent transcription. Human TFIID is endowed with chromatin reader and DNA-binding domains and protein interaction surfaces. Fourteen TFIID TATA-binding protein (TBP)-associated factor (TAF) subunits assemble into the holocomplex, which shares subunits with the Spt-Ada-Gcn5-acetyltransferase (SAGA) coactivator. Here, we discuss the structural and functional evolution of TFIID and its divergence from SAGA. Our orthologous tree and domain analyses reveal dynamic gains and losses of epigenetic readers, plant-specific functions of TAF1 and TAF4, the HEAT2-like repeat in TAF2, and, importantly, the pre-LECA origin of TFIID and SAGA. TFIID evolution exemplifies the dynamic plasticity in transcription complexes in the eukaryotic lineage.

Keywords

Biodiversity, Epigenesis, Genetic, Eukaryota/classification, Evolution, Molecular, Gene Expression Regulation, Phylogeny, Transcription Factor TFIID/genetics

Citation

Antonova, S V, Boeren, J, Timmers, H T M & Snel, B 2019, 'Epigenetics and transcription regulation during eukaryotic diversification : the saga of TFIID', Genes and Development, vol. 33, no. 15-16, pp. 888-902. https://doi.org/10.1101/gad.300475.117