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Integrated analysis of the E2F transcription factors across cancer types
Integrated analysis of the E2F transcription factors across cancer types

Genes | Free Full-Text | Deregulated E2F Activity as a Cancer-Cell Specific  Therapeutic Tool
Genes | Free Full-Text | Deregulated E2F Activity as a Cancer-Cell Specific Therapeutic Tool

Coordinating gene expression during the cell cycle: Trends in Biochemical  Sciences
Coordinating gene expression during the cell cycle: Trends in Biochemical Sciences

The E2F family: specific functions and overlapping interests | The EMBO  Journal
The E2F family: specific functions and overlapping interests | The EMBO Journal

Cancers | Free Full-Text | Direct Regulation of DNA Repair by E2F and RB in  Mammals and Plants: Core Function or Convergent Evolution?
Cancers | Free Full-Text | Direct Regulation of DNA Repair by E2F and RB in Mammals and Plants: Core Function or Convergent Evolution?

Tumor Suppressor Genes and Cancer - The Medical Biochemistry Page
Tumor Suppressor Genes and Cancer - The Medical Biochemistry Page

E2F target genes: unraveling the biology. | Semantic Scholar
E2F target genes: unraveling the biology. | Semantic Scholar

Atypical E2F target genes are specifically activated by deregulated E2F...  | Download Scientific Diagram
Atypical E2F target genes are specifically activated by deregulated E2F... | Download Scientific Diagram

Integrated analysis of the E2F transcription factors across cancer types
Integrated analysis of the E2F transcription factors across cancer types

Solved] DNA replication occurs in S phase. The entry of cells into S
Solved] DNA replication occurs in S phase. The entry of cells into S

E2F1 (E2F transcription factor 1)
E2F1 (E2F transcription factor 1)

Transcription Factor E2F - an overview | ScienceDirect Topics
Transcription Factor E2F - an overview | ScienceDirect Topics

E2F target genes: unraveling the biology - ScienceDirect
E2F target genes: unraveling the biology - ScienceDirect

The Key Role of E2F in Tumor Suppression through Specific Regulation of  Tumor Suppressor Genes in Response to Oncogenic Changes | IntechOpen
The Key Role of E2F in Tumor Suppression through Specific Regulation of Tumor Suppressor Genes in Response to Oncogenic Changes | IntechOpen

Frontiers | Transcriptional control of stem cell fate by E2Fs and pocket  proteins
Frontiers | Transcriptional control of stem cell fate by E2Fs and pocket proteins

Life and death decisions by E2F-1 | Cell Death & Differentiation
Life and death decisions by E2F-1 | Cell Death & Differentiation

Models for the regulation of gene expression by the E2F transcription... |  Download Scientific Diagram
Models for the regulation of gene expression by the E2F transcription... | Download Scientific Diagram

The Key Role of E2F in Tumor Suppression through Specific Regulation of  Tumor Suppressor Genes in Response to Oncogenic Changes | IntechOpen
The Key Role of E2F in Tumor Suppression through Specific Regulation of Tumor Suppressor Genes in Response to Oncogenic Changes | IntechOpen

Frontiers | E2F1, a Novel Regulator of Metabolism
Frontiers | E2F1, a Novel Regulator of Metabolism

E2F target genes: unraveling the biology. | Semantic Scholar
E2F target genes: unraveling the biology. | Semantic Scholar

To Grow, Stop or Die? – Novel Tumor-Suppressive Mechanism Regulated by the Transcription  Factor E2F | IntechOpen
To Grow, Stop or Die? – Novel Tumor-Suppressive Mechanism Regulated by the Transcription Factor E2F | IntechOpen

E2F regulation of the Phosphoglycerate kinase gene is functionally  important in Drosophila development | PNAS
E2F regulation of the Phosphoglycerate kinase gene is functionally important in Drosophila development | PNAS

E2F target genes: unraveling the biology - ScienceDirect
E2F target genes: unraveling the biology - ScienceDirect

E2F - Wikipedia
E2F - Wikipedia

Complex Cartography: Regulation of E2F Transcription Factors by Cyclin F  and Ubiquitin: Trends in Cell Biology
Complex Cartography: Regulation of E2F Transcription Factors by Cyclin F and Ubiquitin: Trends in Cell Biology

The E2F transcriptional network: old acquaintances with new faces | Oncogene
The E2F transcriptional network: old acquaintances with new faces | Oncogene