E2F1 Gene Summary [Human]

The protein encoded by this gene is a member of the E2F family of transcription factors. The E2F family plays a crucial role in the control of cell cycle and action of tumor suppressor proteins and is also a target of the transforming proteins of small DNA tumor viruses. The E2F proteins contain several evolutionally conserved domains found in most members of the family. These domains include a DNA binding domain, a dimerization domain which determines interaction with the differentiation regulated transcription factor proteins (DP), a transactivation domain enriched in acidic amino acids, and a tumor suppressor protein association domain which is embedded within the transactivation domain. This protein and another 2 members, E2F2 and E2F3, have an additional cyclin binding domain. This protein binds preferentially to retinoblastoma protein pRB in a cell-cycle dependent manner. It can mediate both cell proliferation and p53-dependent/independent apoptosis. [provided by RefSeq, Jul 2008]

Details

Type
Protein Coding
Official Symbol
E2F1
Official Name
E2F transcription factor 1 [Source:HGNC Symbol;Acc:HGNC:3113]
Ensembl ID
ENSG00000101412
Bio databases IDs NCBI: 1869 Ensembl: ENSG00000101412
Aliases E2F transcription factor 1
Synonyms E2f, E2F transcription factor 1, mKIAA4009, RBAP1, RBBP3, RBP3, Tg(Wnt1-cre)2Sor
Species
Human, Homo sapiens
OrthologiesMouse

Protein Domains

A protein domain is a distinct structural or functional region within a protein that can evolve, function, and exist independently of the rest of the protein chain. These domains in human E2F1 often fold into stable, three-dimensional structures and are associated with specific biological functions, such as binding to DNA, other proteins, or small molecules.
  • transcription regulator
  • transcription activation domain
  • transcription factor binding
  • leucine zipper domain
  • retinoblastoma protein binding domain
  • pocket domain
  • DP1 binding domain
  • RNA polymerase II transcription factor activity, sequence-specific DNA binding
  • Sp1 binding domain
  • marked box
  • pRb binding domain
  • activation domain
  • dimerization domain
  • protein kinase binding
  • DNA binding domain
  • nucleic acid binding
  • nuclear localization sequence
  • central domain
  • protein binding
  • Dimerization domain of E2F transcription factors
  • sequence-specific DNA binding
  • Mdm2 protein binding domain
  • cyclin-dependent kinase binding domain
  • DNA binding
  • cyclin-CDK binding domain
  • cyclin A-binding domain
  • double-stranded DNA binding
  • ATM phosphorylation site
  • heterodimerization domain
  • E2F/DP family winged-helix DNA-binding domain
  • cyclin-binding domain
  • transcription factor activity

Top Findings

The most significant associations for this gene, including commonly observed domains, pathway involvement, and functional highlights based on current data.
disease
  • epithelial neoplasia
  • benign neoplasia
  • acute myeloid leukemia
  • ovarian neoplasia
  • neoplasia
  • immunodeficiency
  • diabetes mellitus
  • liver cancer
  • gastric cancer
  • cancer
regulated by
  • etoposide
  • D-glucose
  • tetradecanoylphorbol acetate
  • 7-ketocholesterol
  • simvastatin
  • doxorubicin
  • MTOR
  • N-acetyl-L-cysteine
  • lipopolysaccharide
  • TNF
role in cell
  • survival
  • phosphorylation in
  • shortening
  • apoptosis
  • G1 phase
  • growth
  • cell death
  • outgrowth
  • autophagy by
  • expression in

Subcellular Expression

Locations within the cell where the protein is known or predicted to be active, providing insight into its function and cellular context.
  • Nucleus
  • nuclear fraction
  • Cytoplasm
  • intranuclear region
  • centrosome
  • Mitochondria
  • nuclear foci
  • chromosome
  • nucleoplasm
  • nucleoli
  • chromatin

Gene Ontology Annotations

Describes the biological processes, cellular components, and molecular functions associated with the human E2F1 gene, providing context for its role in the cell.

Biological Process

Functions and activities the gene product is involved in
  • transcription, DNA-dependent
  • negative regulation of fat cell differentiation
  • anoikis
  • regulation of transcription, DNA-dependent
  • DNA damage response, signal transduction resulting in induction of apoptosis
  • positive regulation of transcription from RNA polymerase II promoter
  • regulation of transcription from RNA polymerase II promoter
  • negative regulation of transcription from RNA polymerase II promoter
  • DNA damage checkpoint
  • negative regulation of DNA binding
  • forebrain development
  • negative regulation of transcription, DNA-dependent
  • positive regulation of transcription, DNA-dependent
  • positive regulation of gene expression
  • signal transduction by p53 class mediator resulting in induction of apoptosis
  • positive regulation of fibroblast proliferation
  • mRNA stabilization
  • positive regulation of apoptotic process
  • regulation of G1/S transition of mitotic cell cycle
  • cellular response to xenobiotic stimulus
  • negative regulation of fat cell proliferation

Cellular Component

Where in the cell the gene product is active
  • nucleus
  • Rb-E2F complex
  • centrosome
  • cytoplasm
  • macromolecular complex
  • chromatin
  • nucleoplasm

Molecular Function

What the gene product does at the molecular level
  • DNA binding
  • sequence-specific DNA binding transcription factor activity
  • protein binding
  • RNA polymerase II core promoter proximal region sequence-specific DNA binding
  • core promoter proximal region sequence-specific DNA binding
  • sequence-specific DNA binding
  • protein dimerization activity
  • sequence-specific DNA binding bacterial-type RNA polymerase transcription factor activity involved in positive regulation of transcription
  • sequence-specific DNA binding RNA polymerase II transcription factor activity
  • binding, bridging

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