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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Validation of MdmX as a therapeutic target for reactivating p53 in tumors
Daniel Garcia1, Matthew R Warr, Carla P Martins
1Department of Pathology, UCSF Helen Diller Family Comprehensive Cancer Center, San Francisco, California 94143, USA.
Abstract:
MdmX, also known as Mdm4, is a critical negative regulator of p53, and its overexpression serves to block p53 tumor suppressor function in many cancers. Consequently, inhibiting MdmX has emerged as an attractive approach to restoring p53 function in those cancers that retain functional p53. However, the consequences of acute systemic MdmX inhibition in normal adult tissues remain unknown. To determine directly the effects of systemic MdmX inhibition in normal tissues and in tumors, we crossed mdmX(-/-) mice into the p53ER(TAM) knockin background. In place of wild-type p53, p53ER(TAM) knockin mice express a variant of p53, p53ER(TAM), that is completely dependent on 4-hydroxy-tamoxifen for its activity. MdmX inhibition was then modeled by restoring p53 function in these MdmX-deficient mice. We show that MdmX is continuously required to buffer p53 activity in adult normal tissues and their stem cells. Importantly, the effects of transient p53 restoration in the absence of MdmX are nonlethal and reversible, unlike transient p53 restoration in the absence of Mdm2, which is ineluctably lethal. We also show that the therapeutic impact of restoring p53 in a tumor model is enhanced in the absence of MdmX, affording a significant extension of life span over p53 restoration in the presence of MdmX. Hence, systemic inhibition of MdmX is both a feasible therapeutic strategy for restoring p53 function in tumors that retain wild-type p53 and likely to be significantly safer than inhibition of Mdm2.
Insights
Inhibiting MdmX (Mdm4) restores p53 tumor suppressor function. This approach is safer and more effective than Mdm2 inhibition, with reversible effects in normal tissues and enhanced tumor suppression.
Area of Science:
- Molecular Biology
- Cancer Biology
- Oncology
Background:
- MdmX (Mdm4) is a key negative regulator of the p53 tumor suppressor.
- Overexpression of MdmX blocks p53 function in various cancers.
- Inhibiting MdmX is a potential strategy to restore p53 activity in cancer therapy.
Purpose of the Study:
- To investigate the effects of systemic MdmX inhibition in normal adult tissues and tumors.
- To assess the safety and efficacy of restoring p53 function in the absence of MdmX.
Main Methods:
- Utilized a genetically engineered mouse model (mdmX(-/-) p53ER(TAM)) where p53 activity is dependent on 4-hydroxy-tamoxifen.
- Modeled MdmX inhibition by restoring p53 function in MdmX-deficient mice.
- Evaluated effects in normal tissues, stem cells, and a tumor model.
Main Results:
- MdmX is essential for buffering p53 activity in normal adult tissues and stem cells.
- Transient p53 restoration in MdmX-deficient mice is non-lethal and reversible.
- Therapeutic restoration of p53 in tumors is enhanced in the absence of MdmX, extending lifespan.
Conclusions:
- Systemic MdmX inhibition is a feasible and safer therapeutic strategy for restoring p53 function in wild-type p53 cancers.
- MdmX inhibition offers potential advantages over Mdm2 inhibition due to reversible effects and enhanced anti-tumor activity.

