Related Experiment Video
Updated: Aug 31, 2025

Pooled shRNA Library Screening to Identify Factors that Modulate a Drug Resistance Phenotype
Published on: June 17, 2022
Small molecule MMRi62 targets MDM4 for degradation and induces leukemic cell apoptosis regardless of p53 status
Rati Lama1, Chao Xu1, Samuel L Galster2
1Department of Pharmacology and Therapeutics, Roswell Park Comprehensive Cancer Center, Buffalo, NY, United States.
Abstract:
MDM2 and MDM4 proteins are key negative regulators of tumor suppressor p53. MDM2 and MDM4 interact via their RING domains and form a heterodimer polyubiquitin E3 ligase essential for p53 degradation. MDM4 also forms heterodimer E3 ligases with MDM2 isoforms that lack p53-binding domains, which regulate p53 and MDM4 stability. We are working to identify small-molecule inhibitors targeting the RING domain of MDM2-MDM4 (MMRi) that can inactivate the total oncogenic activity of MDM2-MDM4 heterodimers. Here, we describe the identification and characterization of MMRi62 as an MDM4-degrader and apoptosis inducer in leukemia cells. Biochemically, in our experiments, MMRi62 bound to preformed RING domain heterodimers altered the substrate preference toward MDM4 ubiquitination and promoted MDM2-dependent MDM4 degradation in cells. This MDM4-degrader activity of MMRi62 was found to be associated with potent apoptosis induction in leukemia cells. Interestingly, MMRi62 effectively induced apoptosis in p53 mutant, multidrug-resistant leukemia cells and patient samples in addition to p53 wild-type cells. In contrast, MMRi67 as a RING heterodimer disruptor and an enzymatic inhibitor of the MDM2-MDM4 E3 complex lacked MDM4-degrader activity and failed to induce apoptosis in these cells. In summary, this study identifies MMRi62 as a novel MDM2-MDM4-targeting agent and suggests that small molecules capable of promoting MDM4 degradation may be a viable new approach to killing leukemia cells bearing non-functional p53 by apoptosis.
Insights
Researchers identified MMRi62, a novel drug that degrades MDM4 protein, effectively inducing apoptosis in leukemia cells, including those with non-functional p53. This discovery offers a new therapeutic strategy for leukemia treatment.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- MDM2 and MDM4 proteins are crucial negative regulators of the tumor suppressor p53.
- They form heterodimers via their RING domains, creating an E3 ligase complex essential for p53 degradation.
- Dysregulation of this complex contributes to oncogenesis, particularly in leukemia.
Purpose of the Study:
- To identify small-molecule inhibitors targeting the MDM2-MDM4 RING domain (MMRi) to inactivate their oncogenic activity.
- To characterize MMRi62 as a potential therapeutic agent for leukemia by evaluating its mechanism and efficacy.
Main Methods:
- Biochemical assays to assess MMRi62 binding to MDM2-MDM4 heterodimers.
- Cell-based experiments to evaluate MDM4 degradation and ubiquitination.
- Apoptosis induction assays in various leukemia cell lines and patient samples, including p53 wild-type and mutant cells.
Main Results:
- MMRi62 binds to MDM2-MDM4 RING domain heterodimers, altering substrate preference and promoting MDM4 degradation.
- MMRi62 acts as an MDM4-degrader, potently inducing apoptosis in leukemia cells.
- MMRi62 demonstrated efficacy in p53 mutant, multidrug-resistant leukemia cells and patient samples, unlike the inhibitor MMRi67.
Conclusions:
- MMRi62 is a novel agent targeting the MDM2-MDM4 complex by inducing MDM4 degradation.
- Small molecules promoting MDM4 degradation represent a promising therapeutic approach for leukemia, especially in cases with non-functional p53.
More Related Videos
15:53Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells
Published on: August 21, 2013
09:57Real Time Detection of In Vitro Tumor Cell Apoptosis Induced by CD8+ T Cells to Study Immune Suppressive Functions of Tumor-infiltrating Myeloid Cells
Published on: January 29, 2019
Related Concept Videos
Abnormal Proliferation
Targeted Cancer Therapies
There are several types of targeted therapies against...