scholarly article | Q13442814 |
P2093 | author name string | Jörg Bungert | |
Zhuo Zhou | |||
Russell P Darst | |||
I-Ju Lin | |||
P2860 | cites work | NC2alpha interacts with BTAF1 and stimulates its ATP-dependent association with TATA-binding protein | Q24561740 |
Global distribution of negative cofactor 2 subunit-alpha on human promoters | Q24674005 | ||
Cooperative action of NC2 and Mot1p to regulate TATA-binding protein function across the genome | Q27930925 | ||
The dual control of TFIIB recruitment by NC2 is gene specific | Q27938045 | ||
Mot1 activates and represses transcription by direct, ATPase-dependent mechanisms | Q27939577 | ||
Functional characterization of core promoter elements: DPE-specific transcription requires the protein kinase CK2 and the PC4 coactivator | Q28250701 | ||
Efficient Binding of NC2⋅TATA-binding Protein to DNA in the Absence of TATA | Q28296028 | ||
The initiator core promoter element antagonizes repression of TATA-directed transcription by negative cofactor NC2 | Q28307279 | ||
Switching of the core transcription machinery during myogenesis | Q28510568 | ||
The role of general initiation factors in transcription by RNA polymerase II | Q29616442 | ||
The "initiator" as a transcription control element | Q29619589 | ||
Mot1 regulates the DNA binding activity of free TATA-binding protein in an ATP-dependent manner | Q30310486 | ||
Snf2/Swi2-related ATPase Mot1 drives displacement of TATA-binding protein by gripping DNA | Q30439794 | ||
Yeast NC2 associates with the RNA polymerase II preinitiation complex and selectively affects transcription in vivo | Q33967909 | ||
Caudal, a key developmental regulator, is a DPE-specific transcriptional factor | Q34857106 | ||
Roles for BTAF1 and Mot1p in dynamics of TATA-binding protein and regulation of RNA polymerase II transcription | Q35558697 | ||
Considerations of transcriptional control mechanisms: Do TFIID–core promoter complexes recapitulate nucleosome-like functions? | Q36035094 | ||
Core promoter-selective RNA polymerase II transcription. | Q36454331 | ||
New problems in RNA polymerase II transcription initiation: matching the diversity of core promoters with a variety of promoter recognition factors. | Q36774924 | ||
TBP, Mot1, and NC2 establish a regulatory circuit that controls DPE-dependent versus TATA-dependent transcription | Q36869081 | ||
A single point mutation in TFIIA suppresses NC2 requirement in vivo | Q38315368 | ||
Family of proteins that interact with TFIID and regulate promoter activity | Q42473645 | ||
Mapping the location of TFIIB within the RNA polymerase II transcription preinitiation complex: a model for the structure of the PIC. | Q45103213 | ||
A basal transcription factor that activates or represses transcription. | Q46000075 | ||
Drosophila TFIID binds to a conserved downstream basal promoter element that is present in many TATA-box-deficient promoters | Q46474921 | ||
Identification and distinct regulation of yeast TATA box-containing genes | Q47987647 | ||
NC2 mobilizes TBP on core promoter TATA boxes. | Q55045569 | ||
P433 | issue | 1 | |
P304 | page(s) | 1-4 | |
P577 | publication date | 2009-01-27 | |
P1433 | published in | Epigenetics | Q15753739 |
P1476 | title | Maneuver at the transcription start site: Mot1p and NC2 navigate TFIID/TBP to specific core promoter elements | |
P478 | volume | 4 |
Q39432771 | Arabidopsis DPB3-1, a DREB2A interactor, specifically enhances heat stress-induced gene expression by forming a heat stress-specific transcriptional complex with NF-Y subunits |
Q37952284 | NF-Y and the transcriptional activation of CCAAT promoters. |
Q57239848 | Polychlorinated biphenyls affect histone modification pattern in early development of rats: a role for androgen receptor-dependent modulation? |
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