E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the control of cellular proliferation, survival, and development. E2F signaling also interacts with transcriptional programs that are downstream of genetic predictors for cancer development, including hepatocellular carcinoma (HCC). Here, we evaluated the function of the atypical repressor genes E2f7 and E2f8 in adult liver physiology. Using several loss-of-function alleles in mice, we determined that combined deletion of E2f7 and E2f8 in hepatocytes leads to HCC. Temporal-specific ablation strategies revealed that E2f8's tumor suppressor role is critical during the first 2 weeks of life, which correspond to a highly proliferative stage of postna...
Upregulation of the E2F-dependent transcriptional network has been identified in nearly every human ...
Background and Aims Up-regulation of the E2F-dependent transcriptional network has been identified i...
Background and Aims Up-regulation of the E2F-dependent transcriptional network has been identified i...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
Endocrinology, 2009, 150 (1): 540-545E2F-mediated transcriptional repression of cell cycle–dependent...
Background and Aims: Up-regulation of the E2F-dependent transcriptional network has been identified ...
Background and Aims: Up-regulation of the E2F-dependent transcriptional network has been identified ...
Background and Aims: Up-regulation of the E2F-dependent transcriptional network has been identified ...
Upregulation of the E2F-dependent transcriptional network has been identified in nearly every human ...
Background and Aims Up-regulation of the E2F-dependent transcriptional network has been identified i...
Background and Aims Up-regulation of the E2F-dependent transcriptional network has been identified i...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle-dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
E2F-mediated transcriptional repression of cell cycle–dependent gene expression is critical for the ...
Endocrinology, 2009, 150 (1): 540-545E2F-mediated transcriptional repression of cell cycle–dependent...
Background and Aims: Up-regulation of the E2F-dependent transcriptional network has been identified ...
Background and Aims: Up-regulation of the E2F-dependent transcriptional network has been identified ...
Background and Aims: Up-regulation of the E2F-dependent transcriptional network has been identified ...
Upregulation of the E2F-dependent transcriptional network has been identified in nearly every human ...
Background and Aims Up-regulation of the E2F-dependent transcriptional network has been identified i...
Background and Aims Up-regulation of the E2F-dependent transcriptional network has been identified i...