The transcription factor NF-Y is a trimer with histone-like subunits that binds and activates CCAAT-containing promoters. NF-Y controls the expression of several key regulators of the cell cycle. In this study, we examined the functional and molecular effects of NF-YB knockdown. Cell cycle progression is affected with a G2/M-specific depletion. This is due to the inability of activation of G2/M-specific genes, as evidenced by expression profiling, RT-PCR and ChIP data. Surprisingly, apoptosis is also observed, with Caspase 3/7/8 cleavage. A role of p53 and Bcl-2 family members is important. NF-YB inactivation is sufficient to functionally activate p53, in the absence of DNA damage. Failure to maintain a physiologic level of CCAAT-dependent ...
In response to DNA damage, p53 activates G1/S blocking and apoptotic genes through sequence-specific...
In response to DNA damage, p53 activates G1/S blocking and apoptotic genes through sequence-specific...
In response to DNA damage, p53 activates G(1)/S blocking and apoptotic genes through sequence-specif...
The transcription factor NF-Y is a trimer with histone-like subunits that binds and activates CCAAT-...
The transcription factor NF-Y is a trimer with histone-like subunits that binds and activates CCAAT-...
The transcription factor NF-Y is a trimer with histone-likesubunits that binds and activates CCAAT-c...
The transcription factor NF-Y is a trimer with histone-likesubunits that binds and activates CCAAT-c...
The CCAAT-binding factor NF-Y plays an important role in controlling the transcription of cell cycle...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
The CCAAT-binding factor NF-Y plays an important role in controlling the transcription of cell cycle...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
In response to DNA damage, p53 activates G1/S blocking and apoptotic genes through sequence-specific...
In response to DNA damage, p53 activates G1/S blocking and apoptotic genes through sequence-specific...
In response to DNA damage, p53 activates G(1)/S blocking and apoptotic genes through sequence-specif...
The transcription factor NF-Y is a trimer with histone-like subunits that binds and activates CCAAT-...
The transcription factor NF-Y is a trimer with histone-like subunits that binds and activates CCAAT-...
The transcription factor NF-Y is a trimer with histone-likesubunits that binds and activates CCAAT-c...
The transcription factor NF-Y is a trimer with histone-likesubunits that binds and activates CCAAT-c...
The CCAAT-binding factor NF-Y plays an important role in controlling the transcription of cell cycle...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
The CCAAT-binding factor NF-Y plays an important role in controlling the transcription of cell cycle...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
Regulated gene expression is essential for a proper progression through the cell cycle. The transcri...
In response to DNA damage, p53 activates G1/S blocking and apoptotic genes through sequence-specific...
In response to DNA damage, p53 activates G1/S blocking and apoptotic genes through sequence-specific...
In response to DNA damage, p53 activates G(1)/S blocking and apoptotic genes through sequence-specif...