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Proteasome inhibitors trigger NOXA-mediated apoptosis in melanoma and myeloma cells
Jian-Zhong Qin1, Jeffrey Ziffra, Lawrence Stennett
1Department of Pathology, Loyola University Medical Center, Maywood, Illinois 60153-5385, USA.
Abstract:
Patients with metastatic melanoma or multiple myeloma have a dismal prognosis because these aggressive malignancies resist conventional treatment. A promising new oncologic approach uses molecularly targeted therapeutics that overcomes apoptotic resistance and, at the same time, achieves tumor selectivity. The unexpected selectivity of proteasome inhibition for inducing apoptosis in cancer cells, but not in normal cells, prompted us to define the mechanism of action for this class of drugs, including Food and Drug Administration-approved bortezomib. In this report, five melanoma cell lines and a myeloma cell line are treated with three different proteasome inhibitors (MG-132, lactacystin, and bortezomib), and the mechanism underlying the apoptotic pathway is defined. Following exposure to proteasome inhibitors, effective killing of human melanoma and myeloma cells, but not of normal proliferating melanocytes, was shown to involve p53-independent induction of the BH3-only protein NOXA. Induction of NOXA at the protein level was preceded by enhanced transcription of NOXA mRNA. Engagement of mitochondrial-based apoptotic pathway involved release of cytochrome c, second mitochondria-derived activator of caspases, and apoptosis-inducing factor, accompanied by a proteolytic cascade with processing of caspases 9, 3, and 8 and poly(ADP)-ribose polymerase. Blocking NOXA induction using an antisense (but not control) oligonucleotide reduced the apoptotic response by 30% to 50%, indicating a NOXA-dependent component in the overall killing of melanoma cells. These results provide a novel mechanism for overcoming the apoptotic resistance of tumor cells, and validate agents triggering NOXA induction as potential selective cancer therapeutics for life-threatening malignancies such as melanoma and multiple myeloma.
Insights
Proteasome inhibitors selectively kill melanoma and myeloma cells by inducing the NOXA protein, a key step in the apoptotic pathway. This targeted approach offers a new therapeutic strategy for aggressive cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cell Death Research
Background:
- Metastatic melanoma and multiple myeloma are aggressive cancers with poor prognoses due to treatment resistance.
- Molecularly targeted therapeutics offer a promising approach to overcome apoptotic resistance and achieve tumor selectivity.
Purpose of the Study:
- To define the mechanism of action for proteasome inhibitors in inducing apoptosis in cancer cells.
- To investigate the role of NOXA protein in the apoptotic pathway triggered by proteasome inhibitors.
Main Methods:
- Treatment of melanoma and myeloma cell lines with proteasome inhibitors (MG-132, lactacystin, bortezomib).
- Analysis of apoptotic pathway components, including NOXA mRNA and protein levels, cytochrome c release, and caspase activation.
- Assessment of NOXA's role using antisense oligonucleotides.
Main Results:
- Proteasome inhibitors effectively killed melanoma and myeloma cells, but not normal melanocytes.
- Apoptosis involved p53-independent induction of NOXA, preceded by NOXA mRNA enhancement.
- Mitochondrial pathway activation, caspase cascade, and PARP cleavage were observed.
- Blocking NOXA reduced melanoma cell death by 30-50%.
Conclusions:
- Proteasome inhibitors induce apoptosis in cancer cells via NOXA induction, a p53-independent mechanism.
- NOXA plays a significant role in the apoptotic response to proteasome inhibitors in melanoma.
- Agents inducing NOXA represent potential selective cancer therapeutics for melanoma and multiple myeloma.
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