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Repression of p53-mediated transcription by MDM2: a dual mechanism
C J Thut1, J A Goodrich, R Tjian
1Howard Hughes Medical Institute, Department of Molecular and Cell Biology, University of California, Berkeley 94720-3204, USA.
Abstract:
The oncoprotein MDM2 binds to the activation domain of the tumor suppressor p53 and inhibits its ability to stimulate transcription. This same region of p53 is able to bind several basal transcription factors that appear to be important for the transactivation function of p53. It has therefore been suggested that MDM2 acts to inhibit p53 by concealing its activation domain from the basal machinery. Here we present data suggesting that MDM2 possesses an additional inhibitory function. Our experiments reveal that in addition to a p53-binding domain, MDM2 also contains an inhibitory domain that can directly repress basal transcription in the absence of p53. By fusing portions of MDM2 to a heterologous DNA-binding domain to allow p53-independent promoter recruitment, we have localized this inhibitory domain to a region encompassing amino acids 50-222 of MDM2. Furthermore, the function of this inhibitory domain does not require the presence of either TFIIA or the TAFs. Of the remaining basal factors, both the small subunit of TFIIE and monomeric TBP are bound by the MDM2 inhibitory domain. It is possible that MDM2 inhibits the ability of the preinitiation complex to synthesize RNA through one of these interactions. Our results are consistent with a model in which MDM2 represses p53-dependent transcription by a dual mechanism: a masking of the activation domain of p53 through a protein-protein interaction that additionally serves to recruit MDM2 to the promoter where it directly interferes with the basal transcription machinery.
Insights
The oncoprotein MDM2 inhibits tumor suppressor p53
Area of Science:
- Molecular Biology
- Cancer Research
- Gene Regulation
Background:
- MDM2 (mouse double minute 2 homolog) is an oncoprotein.
- MDM2 binds to the tumor suppressor p53, inhibiting its transcriptional activity.
- MDM2 is known to interact with p53's activation domain, potentially blocking interactions with transcription factors.
Purpose of the Study:
- To investigate the inhibitory mechanisms of MDM2 on p53.
- To determine if MDM2 has functions beyond p53 binding.
- To identify the specific domain and mechanism of MDM2's direct transcriptional repression.
Main Methods:
- Fusion of MDM2 fragments to a heterologous DNA-binding domain.
- Assays to test transcriptional repression in the absence of p53.
- Identification of basal transcription factors interacting with the MDM2 inhibitory domain.
Main Results:
- MDM2 possesses an inhibitory domain (amino acids 50-222) that represses basal transcription independently of p53.
- This repression does not require TFIIA or TAFs.
- The MDM2 inhibitory domain binds to TFIIE and TBP, key components of the basal transcription machinery.
Conclusions:
- MDM2 inhibits p53-dependent transcription through a dual mechanism.
- MDM2 masks p53's activation domain and directly represses basal transcription.
- MDM2 recruits itself to promoters to interfere with RNA synthesis via interactions with basal transcription factors.