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Reference - PMID:12682361 - The fission yeast TFIIB-related factor limits RNA polymerase III to a TATA-dependent pathway of TBP recruitment.

Reference summary

PubMed ID
PMID:12682361
Title
The fission yeast TFIIB-related factor limits RNA polymerase III to a TATA-dependent pathway of TBP recruitment.
Authors
Huang Y, McGillicuddy E, Weindel M, Dong S, Maraia RJ
Citation
Nucleic Acids Res 2003 Apr 15;31(8):2108-16
Publication year
2003
Abstract
The RNA polymerase (pol) III-transcribed (e.g. tRNA and 5S rRNA) genes of traditionally studied organisms rely on gene-internal promoters that precisely position the initiation factor, TFIIIB, on the upstream promoter-less DNA. This is accomplished by the ability of the TFIIIB subunit, TFIIB-related factor (Brf1), to make stable protein-protein interactions with TATA-binding protein (TBP) and place it on the promoter-less upstream DNA. Unlike traditional model organisms, Schizosaccharomyces pombe tRNA and 5S rRNA genes contain upstream TATA promoters that are required to program functional pol III initiation complexes. In this study we demonstrate that S.pombe (Sp)Brf does not form stable interactions with TBP in the absence of DNA using approaches that do reveal stable association of TBP and S.cerevisiae (Sc)Brf1. Gel mobility analyses demonstrate that a TBP-TATA DNA complex can recruit SpBrf to a Pol III promoter. Consistent with this, overproduction of SpBrf in S.pombe increases the expression of a TATA-dependent, but not a TATA-less, suppressor tRNA gene. Since previous whole genome analysis also revealed TATA elements upstream of tRNA genes in Arabidopsis, this pathway may be more widespread than appreciated previously.

Annotation

GO biological process

GO:0006384 - transcription initiation at RNA polymerase III promoter

Genes:

GO cellular component

GO:0000126 - transcription factor TFIIIB complex

Genes:

GO molecular function

GO:0000995 - RNA polymerase III general transcription initiation factor activity

Genes:

GO:0001006 - RNA polymerase III type 3 promoter sequence-specific DNA binding

Genes: