Dissection of transcription factor TFIIF functional domains required for initiation and elongation.
- 20 June 1995
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (13), 6042-6046
- https://doi.org/10.1073/pnas.92.13.6042
Abstract
TFIIF is unique among the general transcription factors because of its ability to control the activity of RNA polymerase II at both the initiation and elongation stages of transcription. Mammalian TFIIF, a heterodimer of approximately 30-kDa (RAP30) and approximately 70-kDa (RAP74) subunits, assists TFIIB in recruiting RNA polymerase II into the preinitiation complex and activates the overall rate of RNA chain elongation by suppressing transient pausing by polymerase at many sites on DNA templates. A major objective of efforts to understand how TFIIF regulates transcription has been to establish the relationship between its initiation and elongation activities. Here we establish this relationship by demonstrating that TFIIF transcriptional activities are mediated by separable functional domains. To accomplish this, we sought and identified distinct classes of RAP30 mutations that selectively block TFIIF activity in transcription initiation and elongation. We propose that (i) TFIIF initiation activity is mediated at least in part by RAP30 C-terminal sequences that include a cryptic DNA-binding domain similar to conserved region 4 of bacterial sigma factors and (ii) TFIIF elongation activity is mediated in part by RAP30 sequences located immediately upstream of the C terminus in a region proposed to bind RNA polymerase II and by additional sequences located in the RAP30 N terminus.Keywords
This publication has 50 references indexed in Scilit:
- TFIIF-TAF-RNA polymerase II connection.Genes & Development, 1994
- Control of transcription arrest in intron 1 of the murine adenosine deaminase gene.Molecular and Cellular Biology, 1994
- Multiple sets of basal factors initiate transcription by RNA polymerase IIJournal of Biological Chemistry, 1994
- Domain structure of a human general transcription initiation factor, TFIIFNucleic Acids Research, 1993
- Imperfect conservation of a sigma factor-like subregion inXenopusgeneral transcription factor RAP30Nucleic Acids Research, 1992
- The carboxyl terminus of RAP30 is similar in sequence to region 4 of bacterial sigma factors and is required for function.Journal of Biological Chemistry, 1992
- Factor-stimulated RNA polymerase II transcribes at physiological elongation rates on naked DNA but very poorly on chromatin templates.Journal of Biological Chemistry, 1992
- Mechanism of assembly of the RNA polymerase II preinitiation complex. Transcription factors delta and epsilon promote stable binding of the transcription apparatus to the initiator element.Journal of Biological Chemistry, 1992
- Mechanistic studies of transcription arrest at the adenovirus major late attenuation site. Comparison of purified RNA polymerase II and washed elongation complexes.Journal of Biological Chemistry, 1992
- Isolation and nucleotide sequence of a rat cDNA homologous to human RAP 30Nucleic Acids Research, 1992