Species specificity of transcription by RNA polymerase I.
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Summary
The purification and functional characterization of TIF-IB/SL1, a promoter-recognition factor containing the TATA-binding protein, as well as the recent cloning of cDNAs encoding the three subunits (TAF(I)s) of the respective human and mouse factor will facilitate the molecular analysis of the mechanisms underlying species-specific rDNA transcription and reveal how the basal transcriptional machinery has evolved.
- Type
- review
- Published
- 1995-10-01
- Cited by
- 67
- References
- 25
- OpenAlex
- https://openalex.org/W2013501552
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2493664
Keywords
Biology, General transcription factor, Transcription factor II D, RNA polymerase I, RNA polymerase II
References
- TIF‐IC, a factor involved in both transcription initiation and elongation of RNA polymerase I.
- TBP‐associated factors interact with DNA and govern species specificity of RNA polymerase I transcription.
- Transcription : mechanisms and regulation
- Transcription complex formation at the mouse rDNA promoter involves the stepwise association of four transcription factors and RNA polymerase I.
- Evolution of genes and proteins.
- The HMG box‐containing nucleolar transcription factor UBF interacts with a specific subunit of RNA polymerase I.
- Domains of the rat rDNA promoter must be aligned stereospecifically
- Structural determinant of the species-specific transcription of the mouse rRNA gene promoter
- Promotion and regulation of ribosomal transcription in eukaryotes by RNA polymerase I.
- Yeast TBP can replace its human homologue in the RNA polymerase I-specific multisubunit factor SL1.
- Assembly of transcriptionally active RNA polymerase I initiation factor SL1 from recombinant subunits.
- Half helical turn spacing changes convert a frog into a mouse rDNA promoter: a distant upstream domain determines the helix face of the initiation site.
- A TBP-containing multiprotein complex (TIF-IB) mediates transcription specificity of murine RNA polymerase I.
- The TATA-binding protein and associated factors are integral components of the RNA polymerase I transcription factor, SL1.
- Ribosomal RNA transcription in vitro is species specific
- Reconstitution of transcription factor SL1: exclusive binding of TBP by SL1 or TFIID subunits.
- Striking homology of the 'variable' N-terminal as well as the 'conserved core' domains of the mouse and human TATA-factors (TFIID).
- Short-range DNA looping by the Xenopus HMG-box transcription factor, xUBF.
- The conserved core domain of the human TATA binding protein is sufficient to assemble the multisubunit RNA polymerase I-specific transcription factor SL1.
- Multiple domains of the RNA polymerase I activator hUBF interact with the TATA-binding protein complex hSL1 to mediate transcription.
Cited by
- Structure and Organization of the rDNA Intergenic Spacer in Lake Trout (Salvelinus namaycush)
- Epigenetic regulation of Cyprinus carpio ribosomal cistron during the acclimatization process
- Efficient generation of influenza virus with a mouse RNA polymerase I-driven all-in-one plasmid
- Design of alternative live attenuated influenza virus vaccines.
- Regulation of RNA polymerase I transcription in yeast and vertebrates.
- Análise estrutural e funcional da região promotora de rDNA de Leishmania (Viannia) braziliensis e estudo comparativo com as regiões de Leishmania (Leishmania)
- UBF complexes with phosphatidylinositol 4,5-bisphosphate in nucleolar organizer regions regardless of ongoing RNA polymerase I activity
- Trichomonas vaginalis ribosomal RNA: identification and characterisation of the transcription promoter and terminator sequences.
- Construction of synthetic nucleoli in human cells reveals how a major functional nuclear domain is formed and propagated through cell division
- Identification of the transcription initiation site of the asexually expressed rRNA genes of the malaria parasite Plasmodium berghei.
- Mitotic phosphorylation of the TBP-containing factor SL1 represses ribosomal gene transcription.
- Regulation of rDNA transcription in plastids of higher plants.
- Concerted evolution: molecular mechanism and biological implications.
- Arenavirus reverse genetics for vaccine development.
- A novel TBP‐associated factor of SL1 functions in RNA polymerase I transcription
- Microspherule Protein 1, Mi-2β, and RET Finger Protein Associate in the Nucleolus and Up-regulate Ribosomal Gene Transcription*
- Mitotic silencing of human rRNA synthesis: inactivation of the promoter selectivity factor SL1 by cdc2/cyclin B‐mediated phosphorylation
- Evaluation of the Influenza A Replicon for Transient Expression of Recombinant Proteins in Mammalian Cells
- Search for promoters for the GARP and rRNA genes of Trypanosoma congolense.
- Role of Human Ribosomal RNA (rRNA) Promoter Methylation and of Methyl-CpG-binding Protein MBD2 in the Suppression of rRNA Gene Expression*
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