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Updated: Apr 28, 2026

Purification of Ubiquitinated p53 Proteins from Mammalian Cells
Published on: March 21, 2022
Degradation of mutant p53H175 protein by Zn(II) through autophagy
A Garufi1, D Pucci2, V D'Orazi3
11] Department of Experimental Oncology, Regina Elena National Cancer Institute, Rome, Italy [2] Department of Medical, Oral and Biotechnological Sciences, University "G. d'Annunzio", Chieti, Italy.
Abstract:
TP53, one of the most important oncosuppressors, is frequently mutated in cancer. Several p53 mutant proteins escape proteolytic degradation and are highly expressed in an aberrant conformation often acquiring pro-oncogenic activities that promote tumor progression and resistance to therapy. Therefore, it has been vastly proposed that reactivation of wild-type (wt) function(s) from mutant p53 (mutp53) may have therapeutic significance. We have previously reported that Zn(II) restores a folded conformation from mutp53 misfolding, rescuing wild-type (wt) p53/DNA-binding and transcription activities. However, whether Zn(II) affects mutp53 stability has never been investigated. Here we show that a novel Zn(II) compound induced mutp53 (R175H) protein degradation through autophagy, the proteolytic machinery specifically devoted to clearing misfolded proteins. Accordingly, pharmacological or genetic inhibition of autophagy prevented Zn(II)-mediated mutp53H175 degradation as well as the ability of the Zn(II) compound to restore wtp53 DNA-binding and transcription activity from this mutant. By contrast, inhibition of the proteasome failed to do so, suggesting that autophagy is the main route for p53H175 degradation. Mechanistically, Zn(II) restored the wtp53 ability to induce the expression of the p53 target gene DRAM (damage-regulated autophagy modulator), a key regulator of autophagy, leading to autophagic induction. Accordingly, inhibition of wtp53 transactivation by pifithrin-α (PFT-α) impaired both autophagy and mutp53H175 degradation induced by curcumin-based zinc compound (Zn(II)-curc). Viewed together, our results uncover a novel mechanism employed by Zn(II)-curc to reactivate mutp53H175, which involves, at least in part, induction of mutp53 degradation via wtp53-mediated autophagy.
Insights
Zinc compounds can degrade mutant p53 (mutp53) via autophagy, a cellular recycling process. This degradation is crucial for restoring wild-type p53 functions and has therapeutic potential in cancer treatment.
Area of Science:
- Molecular Biology
- Cancer Research
- Biochemistry
Background:
- Mutant p53 (mutp53) proteins often gain oncogenic functions and promote tumor progression and therapy resistance.
- Reactivating wild-type (wt) p53 functions from mutp53 is a promising therapeutic strategy.
- Previous studies showed Zn(II) can restore wt p53/DNA-binding and transcription activities but its effect on mutp53 stability was unknown.
Purpose of the Study:
- To investigate the effect of a novel Zn(II) compound on mutp53 stability and function.
- To elucidate the mechanism by which Zn(II) compounds might exert therapeutic effects on mutp53.
Main Methods:
- Treatment of cells expressing mutp53 (R175H) with a novel Zn(II) compound.
- Assessment of mutp53 protein degradation using autophagy and proteasome inhibition.
- Evaluation of wt p53 DNA-binding and transcription activities.
- Analysis of p53 target gene DRAM (damage-regulated autophagy modulator) expression.
- Inhibition of wt p53 transactivation using pifithrin-α (PFT-α).
Main Results:
- The Zn(II) compound induced degradation of mutp53 (R175H) specifically through autophagy, not the proteasome.
- Inhibition of autophagy prevented mutp53 degradation and the restoration of wt p53 DNA-binding and transcription activities.
- The Zn(II) compound restored wt p53's ability to induce DRAM expression, leading to autophagic induction.
- Inhibition of wt p53 transactivation impaired both autophagy and mutp53 degradation.
Conclusions:
- Zn(II) compounds can induce mutp53 degradation via autophagy, representing a novel therapeutic mechanism.
- The reactivation of mutp53 by Zn(II) involves wt p53-mediated autophagy induction.
- This study highlights the therapeutic potential of targeting mutp53 stability and function through autophagy.
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