scholarly article | Q13442814 |
P50 | author | Dorothea K Thompson | Q54858760 |
P2093 | author name string | C J Daniels | |
P2860 | cites work | Complete Genome Sequence of the Methanogenic Archaeon, Methanococcus jannaschii | Q22065564 |
DNA sequencing with chain-terminating inhibitors | Q22066207 | ||
Towards a natural system of organisms: proposal for the domains Archaea, Bacteria, and Eucarya | Q22066209 | ||
Factor requirements for transcription in the Archaeon Sulfolobus shibatae | Q24532204 | ||
Crystal structure of a TFIIB-TBP-TATA-element ternary complex | Q27729899 | ||
The 2.1-A crystal structure of an archaeal preinitiation complex: TATA-box-binding protein/transcription factor (II)B core/TATA-box | Q27738757 | ||
Heat shock factor and the heat shock response | Q28274484 | ||
Mutational analysis of an archaebacterial promoter: essential role of a TATA box for transcription efficiency and start-site selection in vitro | Q33921470 | ||
Transcription in archaea: similarity to that in eucarya | Q34058138 | ||
Archaeal Histones, Nucleosomes, and Transcription Initiation | Q34064849 | ||
Archaea: narrowing the gap between prokaryotes and eukaryotes | Q34150706 | ||
Molecular cloning of the transcription factor TFIIB homolog from Sulfolobus shibatae | Q34183416 | ||
Transcription: new insights from studies on Archaea. | Q34289031 | ||
Shuttle vectors for the archaebacterium Halobacterium volcanii | Q34291257 | ||
Cloning and functional analysis of the TATA binding protein from Sulfolobus shibatae | Q34313343 | ||
Characterization of pHV2 from Halobacterium volcanii and its use in demonstrating transformation of an archaebacterium | Q34372391 | ||
Functional interaction of yeast and human TATA-binding proteins with an archaeal RNA polymerase and promoter | Q34769951 | ||
Fine structure analyses of the Drosophila and Saccharomyces heat shock factor--heat shock element interactions | Q34800621 | ||
Transcription factor IID in the Archaea: sequences in the Thermococcus celer genome would encode a product closely related to the TATA-binding protein of eukaryotes | Q35219798 | ||
Characterization of two heat shock genes from Haloferax volcanii: a model system for transcription regulation in the Archaea | Q35631289 | ||
Cloning of the HSP70 gene from Halobacterium marismortui: relatedness of archaebacterial HSP70 to its eubacterial homologs and a model for the evolution of the HSP70 gene | Q36114051 | ||
Characterization of the distal promoter element of halobacteria in vivo using saturation mutagenesis and selection | Q36810214 | ||
In vivo definition of an archaeal promoter | Q39836228 | ||
CIRCE, a novel heat shock element involved in regulation of heat shock operon dnaK of Bacillus subtilis | Q39930774 | ||
Expression of a yeast intron-containing tRNA in the archaeon Haloferax volcanii | Q39932419 | ||
Transcriptionally active regions in the genome of the archaebacterium Haloferax volcanii | Q39932805 | ||
Cloning, sequencing, and molecular analysis of the dnaK locus from Bacillus subtilis | Q39934245 | ||
An expression vector for the archaebacterium Haloferax volcanii | Q39952118 | ||
Complete nucleotide sequence of an archaeal (Pyrococcus woesei) gene encoding a homolog of eukaryotic transcription factor IIB (TFIIB). | Q40407956 | ||
Elements of an archaeal promoter defined by mutational analysis | Q40534896 | ||
Analysis of transcription in the archaebacterium Sulfolobus indicates that archaebacterial promoters are homologous to eukaryotic pol II promoters | Q40536345 | ||
An archaebacterial promoter element for stable RNA genes with homology to the TATA box of higher eukaryotes | Q40536399 | ||
Archaeal transcription factors and their role in transcription initiation | Q40992309 | ||
A dnaK homolog in the archaebacterium Methanosarcina mazei S6. | Q42618826 | ||
A molecular chaperone from a thermophilic archaebacterium is related to the eukaryotic protein t-complex polypeptide-1. | Q43017158 | ||
Purification and structural characterization of the thermosome from the hyperthermophilic archaeum Methanopyrus kandleri | Q43023844 | ||
The 60 kDa heat shock proteins in the hyperthermophilic archaeon Sulfolobus shibatae | Q48069280 | ||
The archaeal dnaK-dnaJ gene cluster: organization and expression in the methanogen Methanosarcina mazei | Q48072211 | ||
The TATA-binding protein: a general transcription factor in eukaryotes and archaebacteria | Q48082429 | ||
TFIIB, an evolutionary link between the transcription machineries of archaebacteria and eukaryotes | Q48153028 | ||
A regulatory upstream promoter element in the Drosophila hsp 70 heat-shock gene. | Q52527826 | ||
Two transcription factors related with the eucaryal transcription factors TATA-binding protein and transcription factor IIB direct promoter recognition by an archaeal RNA polymerase. | Q54576699 | ||
Control regions of an archaeal gene. A TATA box and an initiator element promote cell-free transcription of the tRNA(Val) gene of Methanococcus vannielii. | Q54687628 | ||
Detailed physical map and set of overlapping clones covering the genome of the archaebacterium Haloferax volcanii DS2 | Q58487830 | ||
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 541-551 | |
P577 | publication date | 1998-02-01 | |
P1433 | published in | Molecular Microbiology | Q6895967 |
P1476 | title | Heat shock inducibility of an archaeal TATA-like promoter is controlled by adjacent sequence elements | |
P478 | volume | 27 |
Q78378152 | A novel archaeal transcriptional regulator of heat shock response |
Q43021129 | All three chaperonin genes in the archaeon Haloferax volcanii are individually dispensable. |
Q33969470 | Alpha-crystallin-type heat shock proteins: socializing minichaperones in the context of a multichaperone network. |
Q34418436 | Archaeal catabolite repression: a gene regulatory paradigm |
Q34532838 | Archaeal chromatin and transcription |
Q33658157 | Archaebacteria then ... Archaes now (are there really no archaeal pathogens?) |
Q77063246 | Basal and regulated transcription in archaea |
Q33992424 | Coordinate transcriptional control in the hyperthermophilic archaeon Sulfolobus solfataricus |
Q36676481 | Dissection of the regulatory mechanism of a heat-shock responsive promoter in Haloarchaea: a new paradigm for general transcription factor directed archaeal gene regulation. |
Q42516499 | Effect of heat stress on promoter binding by transcription factors in the cytosol of the archaeon Methanosarcina mazeii |
Q47931317 | Expression and heat-responsive regulation of a TFIIB homologue from the archaeon Haloferax volcanii. |
Q36993576 | Expression profiles and physiological roles of two types of molecular chaperonins from the hyperthermophilic archaeon Thermococcus kodakarensis |
Q39679197 | Functional role for a 2-oxo acid dehydrogenase in the halophilic archaeon Haloferax volcanii. |
Q43021136 | HMG-CoA reductase is regulated by salinity at the level of transcription in Haloferax volcanii. |
Q33937683 | Heat shock response of Archaeoglobus fulgidus |
Q34205041 | Mechanism and regulation of transcription in archaea |
Q48139416 | Novel chaperonins in a prokaryote |
Q33614040 | Prediction of transcription regulatory sites in Archaea by a comparative genomic approach |
Q38359795 | Properties of the chaperonin complex from the halophilic archaeon Haloferax volcanii |
Q47923631 | Recurrent paralogy in the evolution of archaeal chaperonins |
Q33991783 | Saturation mutagenesis of the TATA box and upstream activator sequence in the haloarchaeal bop gene promoter. |
Q33334155 | Stress genes and proteins in the archaea |
Q42692692 | The DNA binding protein Tfx from Methanobacterium thermoautotrophicum: structure, DNA binding properties and transcriptional regulation |
Q47797051 | Transcription and translation in Archaea: a mosaic of eukaryal and bacterial features |
Q33671277 | Transcription in Archaea |
Q43026756 | Transcriptional analysis of the hsp70 gene in a haloarchaeon Natrinema sp. J7 under heat and cold stress |
Q33632460 | Transcriptional regulation in Archaea |
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