Cell cycle control of histone H4 gene transcription is mediated by the multipartite promoter domain H4-Site II, which supports transcriptional activation at the G1/S phase transition and modulates basal H4 gene transcription. Proliferation-specific transcription is determined by the integrated activities of three distinct promoter factors interacting with H4-Site II: the interferon regulatory factor IRF-2 (synonymous with HiNF-M), HiNF-D (a complex between the homeodomain protein CDP-cut and the cell cycle mediators CDC2, cyclin A and pRB), as well as HiNF-P/H4TF-2. However, the contribution of HiNF-D to the enhancement and/or suppression of H4 gene transcription at specific cell cycle stages remains to be established. We used a panel of sy...
The proliferation-specific transcription factor complex HiNF-D interacts with sequence specificity i...
Histone nuclear factor P (HiNF-P) activates histone H4 gene transcription at the G1/S phase transiti...
Expression of many histone H4 genes is stringently controlled during the cell cycle to maintain a fu...
Maximal transcription of a prototypical cell cycle controlled histone H4 gene requires a proliferati...
At the G(1)/S phase cell cycle transition, multiple histone genes are expressed to ensure that newly...
Transcription of the genes for the human histone proteins H4, H3, H2A, H2B, and H1 is activated at t...
Cell cycle-controlled human histone genes are coordinately expressed during S phase, and transcripti...
Cell cycle progression beyond the G1/S phase transition requires the activation of a transcription c...
Histone genes display a peak in transcription in early S phase and are ideal models for cell cycle-r...
Cell cycle regulated gene expression was studied by analyzing protein/DNA interactions occurring at ...
The histone H4 gene promoter provides a paradigm for defining transcriptional control operative at t...
Histone gene expression is cell cycle regulated at the transcriptional and the post-transcriptional ...
The human histone H4 gene FO108 is regulated during the cell cycle with a peak in transcription duri...
Cell cycle and growth control of the DNA binding and transactivation functions of regulatory factors...
HiNF-P is a recently identified histone H4 subtype specific transcriptional regulator that associate...
The proliferation-specific transcription factor complex HiNF-D interacts with sequence specificity i...
Histone nuclear factor P (HiNF-P) activates histone H4 gene transcription at the G1/S phase transiti...
Expression of many histone H4 genes is stringently controlled during the cell cycle to maintain a fu...
Maximal transcription of a prototypical cell cycle controlled histone H4 gene requires a proliferati...
At the G(1)/S phase cell cycle transition, multiple histone genes are expressed to ensure that newly...
Transcription of the genes for the human histone proteins H4, H3, H2A, H2B, and H1 is activated at t...
Cell cycle-controlled human histone genes are coordinately expressed during S phase, and transcripti...
Cell cycle progression beyond the G1/S phase transition requires the activation of a transcription c...
Histone genes display a peak in transcription in early S phase and are ideal models for cell cycle-r...
Cell cycle regulated gene expression was studied by analyzing protein/DNA interactions occurring at ...
The histone H4 gene promoter provides a paradigm for defining transcriptional control operative at t...
Histone gene expression is cell cycle regulated at the transcriptional and the post-transcriptional ...
The human histone H4 gene FO108 is regulated during the cell cycle with a peak in transcription duri...
Cell cycle and growth control of the DNA binding and transactivation functions of regulatory factors...
HiNF-P is a recently identified histone H4 subtype specific transcriptional regulator that associate...
The proliferation-specific transcription factor complex HiNF-D interacts with sequence specificity i...
Histone nuclear factor P (HiNF-P) activates histone H4 gene transcription at the G1/S phase transiti...
Expression of many histone H4 genes is stringently controlled during the cell cycle to maintain a fu...