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Updated: Aug 9, 2026

Purification of Ubiquitinated p53 Proteins from Mammalian Cells
Published on: March 21, 2022
Cytoplasmic localized ubiquitin ligase cullin 7 binds to p53 and promotes cell growth by antagonizing p53 function
1Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, NC, USA.
Abstract:
Cullins are a family of evolutionarily conserved proteins that bind to the small RING finger protein, ROC1, to constitute potentially a large number of distinct E3 ubiquitin ligases. CUL7 mediates an essential function for mouse embryo development and has been linked with cell transformation by its physical association with the SV40 large T antigen. We report here that, like its closely related homolog PARC, CUL7 is localized predominantly in the cytoplasm and binds directly to p53. In contrast to PARC, however, CUL7, even when overexpressed, did not sequester p53 in the cytoplasm. We have identified a sequence in the N-terminal region of CUL7 that is highly conserved in PARC and a sequence spanning the tetramerization domain in p53 that are required for CUL7-p53 binding. CUL7 and MDM2 did not form a detectable tertiary complex with p53. In vitro, CUL7 caused only mono- or di-ubiquitination of p53 under the conditions MDM2 polyubiquitinated p53. Co-expression of CUL7 reduced the transactivating activity of p53. Constitutive ectopic expression of CUL7 increased the rate of cell proliferation and delayed UV-induced G2 accumulation in U2OS cells expressing functional p53, but had no detectable effect in p53-deficient H1299 cells. Deletion of the N-terminal domain of CUL7 or a mutation disrupting p53 binding abolished the ability of CUL7 to increase the rate of U2OS cell proliferation. Our results suggest that CUL7 functions to promote cell growth through, in part, antagonizing the function of p53.
Insights
Cullin 7 (CUL7) protein binds to and antagonizes the tumor suppressor p53, promoting cell proliferation. This interaction influences cell cycle progression and growth, highlighting CUL7
Area of Science:
- Cell Biology
- Molecular Biology
- Protein Biochemistry
Background:
- Cullins form E3 ubiquitin ligases essential for protein degradation.
- CUL7 is crucial for mouse embryo development and linked to cell transformation.
- CUL7 and PARC are homologs, with CUL7 binding p53.
Purpose of the Study:
- To investigate the interaction between CUL7 and p53.
- To determine the functional consequences of CUL7-p53 binding on cell proliferation and p53 activity.
- To identify the specific domains involved in CUL7-p53 interaction.
Main Methods:
- Co-localization studies to determine CUL7 localization.
- Binding assays to confirm direct CUL7-p53 interaction.
- Ubiquitination assays to assess CUL7's effect on p53 ubiquitination.
- Cell proliferation assays and cell cycle analysis in p53-proficient and deficient cells.
Main Results:
- CUL7 localizes to the cytoplasm and directly binds p53.
- Specific N-terminal and p53 tetramerization domains mediate CUL7-p53 binding.
- CUL7 promotes mono- or di-ubiquitination of p53, unlike MDM2's polyubiquitination.
- CUL7 reduces p53 transactivating activity and enhances cell proliferation.
- CUL7's effects on proliferation and cell cycle are p53-dependent.
Conclusions:
- CUL7 antagonizes p53 function, promoting cell growth.
- The CUL7-p53 interaction is critical for CUL7's role in cell proliferation.
- CUL7 represents a potential target for cancer therapies aiming to restore p53 function.
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