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Class II ferroptosis inducers are a novel therapeutic approach for t(4;14)-positive multiple myeloma
Jiasi Zhang1, Yuxi Liu1, Liping Zuo1
1Department of Hematology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Multiple myeloma (MM) is a clonal plasma cell malignancy that is characterized by genetic heterogeneity. The cytogenetic abnormality t(4;14) strongly predicts poor outcome in patients with MM, even in the era of novel drugs. Ferroptosis is a new approach to antitumor therapy, but the relationship between ferroptosis and MM cytogenetic abnormalities remains largely unclear. In this study, we show that t(4;14)-positive but not t(4;14)-negative MM cells are susceptible to class II ferroptosis inducers (FINs) in a preclinical setting, which is dependent on the significant upregulation of the MM SET domain-containing protein (MMSET). Mechanistically, MMSET upregulates acyl-coenzyme A synthetase long-chain family member 4 transcription by binding to its promoter region, leading to increased polyunsaturated fatty acid (PUFA) levels and enhanced sensitivity of t(4;14)-positive MM cells to ferroptosis. Supplementation with PUFAs efficiently restores the susceptibility of t(4;14)-negative MM cells to ferroptosis. In addition, combining class II FIN treatment with bortezomib in t(4;14)-positive MM cells attenuates cellular glutathione and induces both apoptosis and ferroptosis levels by inhibiting the increase in solute carrier family 7 member 11, demonstrating synergistic antitumor activity in vitro and in a xenograft model. Taken together, our findings suggest that targeting ferroptosis with class II FINs is a novel and promising therapeutic approach to improve the outcome of t(4;14)-positive patients with MM.
Insights
The study reveals that t(4;14)-positive multiple myeloma (MM) cells are vulnerable to ferroptosis inducers, a vulnerability linked to MMSET upregulation. This finding offers a new therapeutic strategy for poor-prognosis MM patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Multiple myeloma (MM) is a plasma cell cancer with genetic variations.
- The t(4;14) cytogenetic abnormality is associated with poor MM prognosis.
- Ferroptosis, a cell death pathway, is a potential anti-cancer therapy, but its role in MM subtypes is unclear.
Purpose of the Study:
- To investigate the relationship between ferroptosis and the t(4;14) genetic abnormality in multiple myeloma.
- To explore the potential of ferroptosis inducers as a targeted therapy for t(4;14)-positive MM.
Main Methods:
- Compared ferroptosis susceptibility in t(4;14)-positive and negative MM cells.
- Investigated the role of MMSET and its downstream targets (ACSL4, PUFAs) in ferroptosis.
- Assessed the synergistic effect of ferroptosis inducers and bortezomib in preclinical MM models.
Main Results:
- t(4;14)-positive MM cells showed increased susceptibility to ferroptosis inducers, dependent on MMSET upregulation.
- MMSET enhances ferroptosis sensitivity by increasing polyunsaturated fatty acid (PUFA) levels.
- PUFA supplementation restored ferroptosis sensitivity in t(4;14)-negative MM cells.
- Combined therapy with ferroptosis inducers and bortezomib showed synergistic antitumor activity.
Conclusions:
- Targeting ferroptosis with class II inducers is a promising therapeutic strategy for t(4;14)-positive multiple myeloma.
- MMSET-driven ferroptosis is a key vulnerability in this MM subtype.
- Combination therapy demonstrates significant potential for improving outcomes in high-risk MM patients.
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