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Updated: Apr 26, 2026

Mapping the Structure-Function Relationships of Disordered Oncogenic Transcription Factors Using Transcriptomic Analysis
Published on: June 27, 2020
The transcription factor MEF/Elf4 is dually modulated by p53-MDM2 axis and MEF-MDM2 autoregulatory mechanism
Mary Ann Suico1, Ryosuke Fukuda1, Rui Miyakita1
1Department of Molecular Medicine, Graduate School of Pharmaceutical Sciences, Kumamoto University, Kumamoto 862-0973, Japan.
Abstract:
Myeloid Elf-1-like factor (MEF) or Elf4 is an ETS transcription factor that activates innate immunity-associated genes such as lysozyme (LYZ), human β-defensin 2 (HβD2), and interleukin-8 (IL-8) in epithelial cells and is also known to influence cell cycle progression. MEF is transcriptionally activated by E2F1, but the E2F1-mediated transcriptional activation is inhibited by p53 through E2F1-p53 protein interaction. Although the transcriptional activation of MEF has been investigated in depth, its post-translational regulation is not well explored. By overexpressing MEF cDNA in human cell lines, here we show that MEF protein expression is suppressed by p53. By screening a number of E3 ligases regulated by p53, we found that MDM2 is involved in the effect of p53 on MEF. MDM2 is transcriptionally activated by p53 and interacts with MEF protein to enhance MEF degradation. MDM2 reduces MEF protein expression, as well as stability and function of MEF as transcriptional activator. Furthermore, MDM2 was able to down-regulate MEF in the absence of p53, indicating a p53-independent effect on MEF. Notably, MEF transcriptionally activates MDM2, which was previously demonstrated to be the mechanism by which MEF suppresses the p53 protein. These results reveal that in addition to the potential of MEF to down-regulate p53 by transcriptionally activating E3 ligase MDM2, MEF participates with MDM2 in a novel autoregulatory feedback loop to regulate itself. Taken together with the findings on the effect of p53 on MEF, these data provide evidence that the p53-MDM2-MEF axis is a feedback mechanism that exquisitely controls the balance of these transcriptional regulators.
Insights
Myeloid Elf-1-like factor (MEF) protein expression is regulated by p53 and MDM2. MEF and MDM2 form a feedback loop, with p53 influencing this axis to control transcriptional regulators.
Area of Science:
- Molecular Biology
- Immunology
- Cell Biology
Background:
- Myeloid Elf-1-like factor (MEF), an ETS transcription factor, activates innate immunity genes and influences cell cycle.
- MEF is transcriptionally activated by E2F1, but this is inhibited by p53 via protein interaction.
- Post-translational regulation of MEF remains underexplored.
Purpose of the Study:
- To investigate the post-translational regulation of MEF protein.
- To elucidate the role of p53 and MDM2 in MEF protein expression and stability.
- To understand the feedback mechanisms involving p53, MDM2, and MEF.
Main Methods:
- Overexpression of MEF cDNA in human cell lines.
- Screening of p53-regulated E3 ligases.
- Co-immunoprecipitation and Western blotting to assess protein interactions and degradation.
- Analysis of gene expression and protein levels.
Main Results:
- p53 suppresses MEF protein expression.
- MDM2, an E3 ligase, interacts with MEF and enhances its degradation, reducing MEF stability and function.
- MDM2 down-regulates MEF independently of p53.
- MEF transcriptionally activates MDM2, contributing to p53 suppression.
- A novel autoregulatory feedback loop between MEF and MDM2 was identified.
Conclusions:
- The p53-MDM2-MEF axis represents a feedback mechanism controlling these transcriptional regulators.
- MDM2 plays a crucial role in the post-translational regulation of MEF.
- This regulatory network finely tunes innate immunity and cell cycle progression through precise control of MEF levels.
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