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Published on: June 6, 2025
Proteasome inhibitor-induced apoptosis in acute myeloid leukemia: a correlation with the proteasome status
Mariette Matondo1, Marie-Pierre Bousquet-Dubouch, Nathalie Gallay
1CNRS, Institut de Pharmacologie et de Biologie Structurale, 205 route de Narbonne, F-31077 Toulouse, France.
Abstract:
The proteasome plays a critical role in the regulation of many cellular processes, including the cell cycle and tumor growth. The proteasome inhibitor bortezomib has recently been approved for the treatment of relapsed and refractory multiple myeloma. In this study, we investigated the induction of apoptosis by proteasome inhibitors in several human acute myeloid leukemia (AML) cell lines and in primary cells from patients. We demonstrate that these drugs induce a high level of apoptosis in the KG1a cell line, in which the therapeutic drug daunorubicin is poorly active, compared to other AML cell lines. In parallel, we found that significantly different levels of apoptosis were induced in primary cells from patients depending on the FAB-based differentiation status of these cells. Moreover, the level of 20S proteasome in KG1a cells was also high compared to other AML cell lines, suggesting a relationship between the high sensitivity to proteasome inhibitors and an elevated amount of 20S proteasome. In good accordance, we identified two groups of patient cells expressing high and low levels of 20S proteasome, with respective high and low sensitivity to proteasome inhibitors. Further comparison of the proteasome status in KG1a and U937 cells also suggests that a high proportion of the 19S regulatory complex in U937 cells compared to the 20S core complex may explain an increased proteasome activity. Altogether, our results suggest that various AML subtypes may present different responses to proteasome inhibitors, that these molecules can be potentially considered as interesting therapeutic alternatives for these pathologies, and that the amount of 20S proteasome in AML cells may be predictive of the cellular response to these inhibitors.
Insights
Proteasome inhibitors induce apoptosis in acute myeloid leukemia (AML) cells, with sensitivity linked to 20S proteasome levels. This suggests potential therapeutic use and predictive value for AML treatment.
Area of Science:
- Molecular Biology
- Cancer Research
- Pharmacology
Background:
- The proteasome regulates crucial cellular processes like the cell cycle and tumor growth.
- Proteasome inhibitors, such as bortezomib, are approved for multiple myeloma treatment.
- Investigating proteasome inhibitor efficacy in acute myeloid leukemia (AML) is warranted.
Purpose of the Study:
- To investigate the induction of apoptosis by proteasome inhibitors in human AML cell lines and patient samples.
- To explore the relationship between proteasome levels and sensitivity to proteasome inhibitors in AML.
- To assess the potential of proteasome inhibitors as therapeutic agents for AML.
Main Methods:
- Treatment of AML cell lines (KG1a, U937) and primary patient cells with proteasome inhibitors.
- Assessment of apoptosis induction via cellular assays.
- Quantification of 20S proteasome and analysis of proteasome complex proportions.
Main Results:
- Proteasome inhibitors induced high apoptosis in KG1a cells, which are poorly responsive to daunorubicin.
- Apoptosis induction varied significantly in primary AML cells based on FAB differentiation status.
- High 20S proteasome levels in KG1a cells correlated with increased sensitivity to proteasome inhibitors.
- Patient cells stratified into high and low 20S proteasome groups showed corresponding high and low sensitivity.
- U937 cells exhibited higher proteasome activity potentially due to a greater 19S/20S complex ratio.
Conclusions:
- AML subtypes display differential responses to proteasome inhibitors.
- Proteasome inhibitors represent potential therapeutic alternatives for AML.
- 20S proteasome levels may predict cellular response to proteasome inhibitors in AML.
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