Abstract
E2F is a mammalian transcription factor that appears to play an important role in cell cycle control. DNA affinity column-purified E2F from HeLa cells reproducibly exhibits multiple protein bands when analyzed by SDS/PAGE. After electrophoretic purification, electroelution, and refolding of the individual protein components, the E2F DNA binding activity of the individual proteins was poor. However, upon mixing the individual components together, a dramatic (100- to 1000-fold) increase in specific DNA binding activity was observed. The five protein bands isolated can be separated into two groups based on apparent molecular mass. Optimal reconstitution of activity requires one of the two proteins found in the group of larger molecular mass (approximately 60 kDa) and one of the three proteins in the smaller-sized group (approximately 50 kDa). The reconstituted heterodimer is identical to authentic affinity-purified E2F by three criteria: DNA-binding specificity, DNA pattern, and binding to the retinoblastoma gene product. A recently cloned protein with E2F-like activity, RBP3/E2F-1, is related to the protein components of the group of larger molecular mass, as determined by Western blot analysis and reconstitution experiments. These data suggest that E2F, like many other transcription factors, binds DNA as an oligomeric complex composed of at least two distinct proteins.
MeSH Terms
Adenoviruses, Human/genetics
Base Sequence
Binding Sites
Blotting, Western
Carrier Proteins/genetics,isolation & purification,metabolism
Cell Cycle Proteins
Chromatography, Affinity
DNA/metabolism
DNA, Viral/genetics,metabolism
DNA-Binding Proteins/isolation & purification,metabolism
E2F Transcription Factors
Glutathione Transferase/genetics,isolation & purification,metabolism
HeLa Cells
Humans
Macromolecular Substances
Molecular Sequence Data
Oligodeoxyribonucleotides/metabolism
Promoter Regions, Genetic
Protein Denaturation
Recombinant Fusion Proteins/isolation & purification,metabolism
Retinoblastoma Protein/metabolism
Retinoblastoma-Binding Protein 1
Substrate Specificity
Transcription Factor DP1
Transcription Factors/isolation & purification,metabolism
Chemicals
Carrier Proteins
Cell Cycle Proteins
DNA, Viral
DNA-Binding Proteins
E2F Transcription Factors
Macromolecular Substances
Oligodeoxyribonucleotides
Recombinant Fusion Proteins
Retinoblastoma Protein
Retinoblastoma-Binding Protein 1
Transcription Factor DP1
Transcription Factors
DNA
Glutathione Transferase
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Huber H E
Department of Cancer Research, Merck Research Laboratories, West Point, PA 19486.
Edwards G
Goodhart P J
Patrick D R
Huang P S
Ivey-Hoyle M
Barnett S F
Oliff A
Heimbrook D C
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