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Updated: Jul 12, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
A GPX4 non-enzymatic domain and MDM2 targeting peptide PROTAC for acute lymphoid leukemia therapy through ferroptosis
Fan Niu1, Runyu Yang1, Hui Feng1
1Department of Hematology, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.
Abstract:
Ferroptosis, an emerging form of programmed cell death, has garnered substantial attention as a potential target for cancer therapy. However, despite the potential promise, no ferroptosis-related therapies have progressed to clinical trials. Identifying disease types sensitive to ferroptosis and developing specific ferroptosis-targeting drugs are critical focal points in the field of ferroptosis-based treatment. In this study, we conducted a comprehensive database analysis and presented compelling evidence indicating a high expression of GPX4 in patients with acute lymphoblastic leukemia (ALL), significantly correlating with poor prognosis. Notably, elevated GPX4 expression is closely associated with ALL relapse, a major challenge in the treatment of this disease. Building upon these findings, we devised a novel peptide-based Proteolysis Targeting Chimeras (PROTAC) drug targeting GPX4 through computer-aided design. In contrast to existing drugs that target the conjugative enzyme active site, our design focused on a peptide drug targeting the non-active site of GPX4. Furthermore, we strategically selected MDM2, an E3 ligase highly expressed in ALL, for the PROTAC drug design. This deliberate choice amplifies the drug's effect on cancer cells while minimizing its impact on normal cells, achieving desirable selectivity for cancer cells. Leveraging nanogold delivery, we successfully facilitated intracellular action of the GPX4-targeting peptide PROTAC drug, denoted as Au-PGPD (peptide GPX4 PROTAC drug). Au-PGPD effectively induced GPX4 degradation and inhibited ALL cell proliferation. Remarkably, Au-PGPD exhibited significantly less efficacy on normal cells, underscoring the selectivity and safety of our design.
Insights
Researchers developed a novel peptide-based drug targeting GPX4 to induce ferroptosis in acute lymphoblastic leukemia (ALL). This targeted approach shows promise for selective cancer cell killing and improved ALL treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Ferroptosis, a form of programmed cell death, is a promising cancer therapy target.
- No ferroptosis-related therapies have reached clinical trials.
- Identifying ferroptosis-sensitive cancers and developing targeted drugs are crucial.
Purpose of the Study:
- To investigate GPX4 expression in acute lymphoblastic leukemia (ALL).
- To design and evaluate a novel GPX4-targeting drug for ALL treatment.
Main Methods:
- Comprehensive database analysis to assess GPX4 expression in ALL patients.
- Computer-aided design of a peptide-based Proteolysis Targeting Chimeras (PROTAC) drug targeting GPX4.
- Utilized nanogold delivery system for intracellular drug action.
Main Results:
- High GPX4 expression in ALL patients correlates with poor prognosis and relapse.
- The novel GPX4-targeting PROTAC drug, Au-PGPD, effectively induced GPX4 degradation.
- Au-PGPD inhibited ALL cell proliferation with significant selectivity against normal cells.
Conclusions:
- GPX4 is a potential therapeutic target in acute lymphoblastic leukemia.
- The developed peptide-PROTAC drug Au-PGPD demonstrates selective efficacy against ALL cells.
- This targeted ferroptosis induction strategy offers a promising avenue for novel ALL therapies.

