BACKGROUND: Proteins in their majority act rarely as single entities. Multisubunit macromolecular complexes are the actors in most of the cellular processes. These nanomachines are hold together by weak protein-protein interactions and undergo functionally important conformational changes. TFIID is such a multiprotein complex acting in eukaryotic transcription initiation. This complex is first to be recruited to the promoter of the genes and triggers the formation of the transcription preinitiation complex involving RNA polymerase II which leads to gene transcription. The exact role of TFIID in this process is not yet understood. METHODS: Last generation electron microscopes, improved data collection and new image analysis tools made it pos...
The general transcription factor IID (TFIID) is required for initiation of RNA polymerase II-depende...
DNA metabolism comprises central cellular functions that are required to support cell growth and gra...
Recent cryo-electron microscopic studies have arrived at atomic models of the core transcription ini...
International audienceBackgroundProteins in their majority act rarely as single entities. Multisubun...
SummaryThe multisubunit transcription factor TFIID is essential for directing eukaryotic promoter re...
Eukaryotic gene transcription requires the assembly at the promoter of a large preinitiation complex...
SummaryA mechanistic description of metazoan transcription is essential for understanding the molecu...
For the initiation of transcription, RNA polymerase II (Pol II) assembles with general transcription...
Transcription preinitiation complex assembly on the promoters of protein encoding genes is nucleated...
A shrewd cryo-EM study of the TFIID complex in this issue of Structure (Elmlund et al., 2009) has ge...
SummaryThe general transcription factor IID (TFIID) is required for initiation of RNA polymerase II-...
Proper gene regulation is a problem faced by all organisms, ranging from single-celled bacteria to m...
Eukaryotic transcription initiation requires the assembly of general transcription factors into a pr...
The general transcription factor IID (TFIID) plays a central role in the initiation of RNA polymeras...
DNA-directed RNA Polymerase II (Pol II) is highly conserved among eukaryotic organisms and plays a f...
The general transcription factor IID (TFIID) is required for initiation of RNA polymerase II-depende...
DNA metabolism comprises central cellular functions that are required to support cell growth and gra...
Recent cryo-electron microscopic studies have arrived at atomic models of the core transcription ini...
International audienceBackgroundProteins in their majority act rarely as single entities. Multisubun...
SummaryThe multisubunit transcription factor TFIID is essential for directing eukaryotic promoter re...
Eukaryotic gene transcription requires the assembly at the promoter of a large preinitiation complex...
SummaryA mechanistic description of metazoan transcription is essential for understanding the molecu...
For the initiation of transcription, RNA polymerase II (Pol II) assembles with general transcription...
Transcription preinitiation complex assembly on the promoters of protein encoding genes is nucleated...
A shrewd cryo-EM study of the TFIID complex in this issue of Structure (Elmlund et al., 2009) has ge...
SummaryThe general transcription factor IID (TFIID) is required for initiation of RNA polymerase II-...
Proper gene regulation is a problem faced by all organisms, ranging from single-celled bacteria to m...
Eukaryotic transcription initiation requires the assembly of general transcription factors into a pr...
The general transcription factor IID (TFIID) plays a central role in the initiation of RNA polymeras...
DNA-directed RNA Polymerase II (Pol II) is highly conserved among eukaryotic organisms and plays a f...
The general transcription factor IID (TFIID) is required for initiation of RNA polymerase II-depende...
DNA metabolism comprises central cellular functions that are required to support cell growth and gra...
Recent cryo-electron microscopic studies have arrived at atomic models of the core transcription ini...