Fission yeast contains an rDNA binding activity that interacts specifically with regulatory sequences for ribosomal RNA synthesis

scientific article published on January 2000

Fission yeast contains an rDNA binding activity that interacts specifically with regulatory sequences for ribosomal RNA synthesis is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/S0378-1119(99)00527-2
P698PubMed publication ID10721711

P2093author name stringChen L
Zhao A
Pape L
Guo A
Boukghalter B
P2860cites workAn immunoaffinity purified Schizosaccharomyces pombe TBP-containing complex directs correct initiation of the S.pombe rRNA gene promoterQ39719720
Acanthamoeba castellanii contains a ribosomal RNA enhancer binding protein which stimulates TIF-IB binding and transcription under stringent conditionsQ40396508
Cooperative binding of the Xenopus RNA polymerase I transcription factor xUBF to repetitive ribosomal gene enhancersQ41097280
Regulation of RNA polymerase I transcription in yeast and vertebratesQ42467507
TTF-I determines the chromatin architecture of the active rDNA promoterQ42645803
An exonuclease protection assay reveals heat-shock element and TATA box DNA-binding proteins in crude nuclear extracts.Q52457454
A novel transcription initiation factor (TIF), TIF-IE, is required for homogeneous Acanthamoeba castellanii TIF-IB (SL1) to form a committed complex.Q54122304
Regulation of Mammalian Ribosomal Gene Transcription by RNA Polymerase IQ54228372
Characterization of the components of reconstituted Saccharomyces cerevisiae RNA polymerase I transcription complexesQ72631639
The species-specific RNA polymerase I transcription factor SL-1 binds to upstream binding factorQ24650868
Multiprotein transcription factor UAF interacts with the upstream element of the yeast RNA polymerase I promoter and forms a stable preinitiation complex.Q27931925
Histones H3 and H4 are components of upstream activation factor required for the high-level transcription of yeast rDNA by RNA polymerase IQ27934091
Reconstitution of yeast RNA polymerase I transcription in vitro from purified components. TATA-binding protein is not required for basal transcriptionQ27935304
Interaction of TATA-binding protein with upstream activation factor is required for activated transcription of ribosomal DNA by RNA polymerase I in Saccharomyces cerevisiae in vivoQ27938691
Recruitment of TATA-binding protein-TAFI complex SL1 to the human ribosomal DNA promoter is mediated by the carboxy-terminal activation domain of upstream binding factor (UBF) and is regulated by UBF phosphorylationQ28611495
Coactivator and promoter-selective properties of RNA polymerase I TAFsQ28611690
The Xenopus RNA polymerase I transcription factor, UBF, has a role in transcriptional enhancement distinct from that at the promoter.Q33886018
Histone acetyltransferase and protein kinase activities copurify with a putative Xenopus RNA polymerase I holoenzyme self-sufficient for promoter-dependent transcriptionQ33957262
Cellular regulation of ribosomal DNA transcription:both rat and Xenopus UBF1 stimulate rDNA transcription in 3T3 fibroblastsQ34698109
Enhancer 1 binding factor, a Ku-related protein, is a positive regulator of RNA polymerase I transcription initiationQ34999232
In vitrodefinition of the yeast RNA polymerase I promoterQ35012178
Dual role of the nucleolar transcription factor UBF: trans-activator and antirepressorQ37146220
Activated levels of rRNA synthesis in fission yeast are driven by an intergenic rDNA region positioned over 2500 nucleotides upstream of the initiation siteQ39719056
Molecular cloning and analysis of Schizosaccharomyces pombe Reb1p: sequence-specific recognition of two sites in the far upstream rDNA intergenic spacerQ39719237
P433issue1-2
P407language of work or nameEnglishQ1860
P304page(s)183-192
P577publication date2000-01-01
P1433published inGeneQ5531065
P1476titleFission yeast contains an rDNA binding activity that interacts specifically with regulatory sequences for ribosomal RNA synthesis
P478volume242

Reverse relations

cites work (P2860)
Q74404555Characterization of a fission yeast subunit of an RNA polymerase I essential transcription initiation factor, SpRrn7h/TAF(I)68, that bridges yeast and mammals: association with SpRrn11h and the core ribosomal RNA gene promoter
Q34446547Characterization of the fission yeast ribosomal DNA binding factor: components share homology with Upstream Activating Factor and with SWI/SNF subunits

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