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1.
Genes Dev ; 33(15-16): 888-902, 2019 08 01.
Artículo en Inglés | MEDLINE | ID: mdl-31123066

RESUMEN

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.


Asunto(s)
Epigénesis Genética , Eucariontes/clasificación , Eucariontes/genética , Evolución Molecular , Regulación de la Expresión Génica , Factor de Transcripción TFIID/genética , Biodiversidad , Filogenia
2.
Nat Struct Mol Biol ; 25(12): 1119-1127, 2018 12.
Artículo en Inglés | MEDLINE | ID: mdl-30510221

RESUMEN

TFIID is a cornerstone of eukaryotic gene regulation. Distinct TFIID complexes with unique subunit compositions exist and several TFIID subunits are shared with other complexes, thereby conveying precise cellular control of subunit allocation and functional assembly of this essential transcription factor. However, the molecular mechanisms that underlie the regulation of TFIID remain poorly understood. Here we use quantitative proteomics to examine TFIID submodules and assembly mechanisms in human cells. Structural and mutational analysis of the cytoplasmic TAF5-TAF6-TAF9 submodule identified novel interactions that are crucial for TFIID integrity and for allocation of TAF9 to TFIID or the Spt-Ada-Gcn5 acetyltransferase (SAGA) co-activator complex. We discover a key checkpoint function for the chaperonin CCT, which specifically associates with nascent TAF5 for subsequent handover to TAF6-TAF9 and ultimate holo-TFIID formation. Our findings illustrate at the molecular level how multisubunit complexes are generated within the cell via mechanisms that involve checkpoint decisions facilitated by a chaperone.


Asunto(s)
Chaperonina con TCP-1/fisiología , Modelos Moleculares , Factor de Transcripción TFIID/química , Chaperonina con TCP-1/metabolismo , Cristalografía por Rayos X , Células HeLa , Humanos , Espectrometría de Masas , Dominios Proteicos , Factores Asociados con la Proteína de Unión a TATA/química , Factor de Transcripción TFIID/metabolismo , Transcripción Genética
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