Hierarchical TAF1-dependent co-translational assembly of the basal transcription factor TFIID

Abstract: Large heteromeric multiprotein complexes play pivotal roles at every step of gene expression in eukaryotic cells. Among them, the 20-subunit basal transcription factor TFIID nucleates the RNA polymerase II preinitiation complex at gene promoters. Here, by combining systematic RNA-immunoprecipitation (RIP) experiments, single-molecule imaging, proteomics and structure–function analyses, we show that human TFIID biogenesis occurs co-translationally. We discovered that all protein heterodimerization steps happen during protein synthesis. We identify TAF1—the largest protein in the complex—as a critical factor for TFIID assembly. TAF1 acts as a flexible scaffold that drives the co-translational recruitment of TFIID submodules preassembled in the cytoplasm. Altogether, our data suggest a multistep hierarchical model for TFIID biogenesis that culminates with the co-translational assembly of the complex onto the nascent TAF1 polypeptide. We envision that this assembly strategy could be shared with other large heteromeric protein complexes

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch
Anmerkungen
Nature structural & molecular biology. - 30, 8 (2023) , 1141-1152, ISSN: 1545-9985

Ereignis
Veröffentlichung
(wo)
Freiburg
(wer)
Universität
(wann)
2023
Urheber
Bernardini, Andrea
Mukherjee, Pooja
Scheer, Elisabeth
Kamenova, Ivanka
Antonova, Simona V.
Mendoza Sanchez, Paulina Karen
Yayli, Gizem
Morlet, Bastien
Timmers, Marc
Tora, László

DOI
10.1038/s41594-023-01026-3
URN
urn:nbn:de:bsz:25-freidok-2382536
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
14.08.2025, 10:46 MESZ

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Beteiligte

  • Bernardini, Andrea
  • Mukherjee, Pooja
  • Scheer, Elisabeth
  • Kamenova, Ivanka
  • Antonova, Simona V.
  • Mendoza Sanchez, Paulina Karen
  • Yayli, Gizem
  • Morlet, Bastien
  • Timmers, Marc
  • Tora, László
  • Universität

Entstanden

  • 2023

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