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Purification of Ubiquitinated p53 Proteins from Mammalian Cells
Published on: March 21, 2022
Dose and Schedule Determine Distinct Molecular Mechanisms Underlying the Efficacy of the p53-MDM2 Inhibitor HDM201
Sébastien Jeay1, Stéphane Ferretti2, Philipp Holzer3
1Disease Area Oncology, Novartis Institutes for BioMedical Research, Basel, Switzerland.
Abstract:
Activation of p53 by inhibitors of the p53-MDM2 interaction is being pursued as a therapeutic strategy in p53 wild-type cancers. Here, we report distinct mechanisms by which the novel, potent, and selective inhibitor of the p53-MDM2 interaction HDM201 elicits therapeutic efficacy when applied at various doses and schedules. Continuous exposure of HDM201 led to induction of p21 and delayed accumulation of apoptotic cells. By comparison, high-dose pulses of HDM201 were associated with marked induction of PUMA and a rapid onset of apoptosis. shRNA screens identified PUMA as a mediator of the p53 response specifically in the pulsed regimen. Consistent with this, the single high-dose HDM201 regimen resulted in rapid and marked induction of PUMA expression and apoptosis together with downregulation of Bcl-xL in vivo Knockdown of Bcl-xL was identified as the top sensitizer to HDM201 in vitro, and Bcl-xL was enriched in relapsing tumors from mice treated with intermittent high doses of HDM201. These findings define a regimen-dependent mechanism by which disruption of MDM2-p53 elicits therapeutic efficacy when given with infrequent dosing. In an ongoing HDM201 trial, the observed exposure-response relationship indicates that the molecular mechanism elicited by pulse dosing is likely reproducible in patients. These data support the clinical comparison of daily and intermittent regimens of p53-MDM2 inhibitors.Significance: Pulsed high doses versus sustained low doses of the p53-MDM2 inhibitor HDM201 elicit a proapoptotic response from wild-type p53 cancer cells, offering guidance to current clinical trials with this and other drugs that exploit the activity of p53. Cancer Res; 78(21); 6257-67. ©2018 AACR.
Insights
High-dose pulses of HDM201, a p53-MDM2 inhibitor, induce PUMA and apoptosis in wild-type p53 cancers. This pulsed regimen offers a distinct therapeutic mechanism compared to continuous exposure, guiding clinical trials.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Targeting the p53-MDM2 interaction is a therapeutic strategy for p53 wild-type cancers.
- HDM201 is a novel, potent, and selective inhibitor of the p53-MDM2 interaction.
Purpose of the Study:
- To investigate the distinct mechanisms of therapeutic efficacy of HDM201 at various doses and schedules.
- To define regimen-dependent mechanisms of p53-MDM2 inhibition.
Main Methods:
- Utilized shRNA screens to identify mediators of the p53 response.
- Administered HDM201 at continuous and pulsed high-dose regimens.
- Analyzed apoptosis, p21 and PUMA induction, and Bcl-xL expression in vitro and in vivo.
Main Results:
- Continuous HDM201 exposure induced p21 and delayed apoptosis.
- High-dose pulses of HDM201 induced PUMA and rapid apoptosis, with PUMA identified as a key mediator.
- HDM201 pulse dosing downregulated Bcl-xL, a key sensitizer, which was enriched in relapsing tumors.
Conclusions:
- Regimen-dependent mechanisms exist for p53-MDM2 inhibitors, with pulsed high doses eliciting a potent proapoptotic response.
- The findings support the clinical comparison of daily versus intermittent dosing regimens for HDM201 and similar agents.
- The molecular mechanism of pulse dosing is likely reproducible in patients, offering guidance for current clinical trials.
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