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Multiple DNA elements are required for the growth regulation of the mouse E2F1 promoter

K M Hsiao1, S L McMahon, P J Farnham

  • 1McArdle Laboratory for Cancer Research, University of Wisconsin Medical School, Madison 53706.

Genes & Development
|July 1, 1994
PubMed

Insights

The E2F1 promoter is activated during the G1/S-phase transition, partly through repression in G0. Multiple DNA elements regulate E2F1 gene transcription for DNA synthesis preparation.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Genetics

Background:

  • Cell cycle progression requires coordinated gene expression, particularly for DNA synthesis.
  • The E2F transcription factor family regulates genes essential for the S phase.
  • E2F1 expression significantly increases at the G1/S boundary, indicating its crucial role.

Purpose of the Study:

  • To investigate the transcriptional regulation of the mouse E2F1 gene.
  • To understand the role of E2F binding sites in E2F1 promoter activity.
  • To elucidate the signaling pathways controlling E2F1 gene expression during the cell cycle.

Main Methods:

  • Cloning and characterization of the mouse E2F1 promoter.
  • Reporter assays to measure promoter activity.
  • Analysis of E2F binding sites and their function.
  • Cell cycle synchronization and analysis of promoter activity at the G1/S boundary.

Main Results:

  • The mouse E2F1 promoter contains overlapping E2F-binding sites crucial for activation.
  • E2F1 promoter activity is significantly enhanced by co-expression of E2F proteins.
  • E2F1 promoter activity increases ~80-fold at the G1/S boundary, with G0-specific repression via E2F sites.
  • E2F binding sites alone are insufficient for growth-regulated transcription; multiple elements are required.

Conclusions:

  • The E2F1 promoter is tightly regulated at the G1/S-phase transition.
  • E2F proteins play a key role in activating E2F1 transcription.
  • Growth-regulated transcription of E2F1 involves complex interactions between multiple DNA elements.

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