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Biologic sequelae of nuclear factor-kappaB blockade in multiple myeloma: therapeutic applications
Nicholas Mitsiades1, Constantine S Mitsiades, Vassiliki Poulaki
1Department of Adult Oncology, Dana Farber Cancer Institute, Harvard Medical School, Boston, MA 02115, USA.
Abstract:
The transcription factor nuclear factor-kappaB (NF-kappaB) confers significant survival potential in a variety of tumors. Several established or novel anti-multiple myeloma (anti-MM) agents, such as dexamethasone, thalidomide, and proteasome inhibitors (PS-341), inhibit NF-kappaB activity as part of their diverse actions. However, studies to date have not delineated the effects of specific inhibition of NF-kappaB activity in MM. We therefore investigated the effect of SN50, a cell-permeable specific inhibitor of NF-kappaB nuclear translocation and activity, on MM cells. SN50 induced apoptosis in MM cell lines and patient cells; down-regulated expression of Bcl-2, A1, X-chromosome-linked inhibitor-of-apoptosis protein (XIAP), cellular inhibitor-of-apoptosis protein 1 (cIAP-1), cIAP-2, and survivin; up-regulated Bax; increased mitochondrial cytochrome c release into the cytoplasm; and activated caspase-9 and caspase-3, but not caspase-8. We have previously demonstrated that tumor necrosis factor-alpha (TNF-alpha) is present locally in the bone marrow microenvironment and induces NF-kappaB-dependent up-regulation of adhesion molecules on both MM cells and bone marrow stromal cells, with resultant increased adhesion. In this study, TNF-alpha alone induced NF-kappaB nuclear translocation, cIAP-1 and cIAP-2 up-regulation, and MM cell proliferation; in contrast, SN50 pretreatment sensitized MM cells to TNF-alpha-induced apoptosis and cleavage of caspase-8 and caspase-3, similar to our previous finding of SN50-induced sensitization to apoptosis induced by the TNF-alpha family member TNF-related apoptosis-inducing ligand (TRAIL)/Apo2L. Moreover, SN50 inhibited TNF-alpha-induced expression of another NF-kappaB target gene, intercellular adhesion molecule-1. Although the p38 inhibitor PD169316 did not directly kill MM cells, it potentiated the apoptotic effect of SN50, suggesting an interaction between the p38 and NF-kappaB pathways. Our results therefore demonstrate that NF-kappaB activity in MM cells promotes tumor-cell survival and protects against apoptotic stimuli. These studies provide the framework for targeting NF-kappaB activity in novel biologically based therapies for MM.
Insights
Specific inhibition of nuclear factor-kappaB (NF-kappaB) with SN50 induces apoptosis in multiple myeloma (MM) cells. This highlights NF-kappaB as a therapeutic target for novel MM treatments.
Area of Science:
- Molecular Biology
- Cancer Research
- Immunology
Background:
- Nuclear factor-kappaB (NF-kappaB) is a transcription factor crucial for tumor cell survival across various cancers.
- Existing anti-multiple myeloma (MM) agents partially inhibit NF-kappaB, but its specific role in MM requires further elucidation.
- Tumor necrosis factor-alpha (TNF-alpha) in the bone marrow microenvironment promotes MM cell adhesion and proliferation via NF-kappaB.
Purpose of the Study:
- To investigate the effects of SN50, a specific inhibitor of NF-kappaB nuclear translocation and activity, on multiple myeloma (MM) cells.
- To determine if NF-kappaB inhibition sensitizes MM cells to apoptosis and affects TNF-alpha-induced responses.
- To explore potential interactions between NF-kappaB and p38 signaling pathways in MM.
Main Methods:
- Treatment of MM cell lines and patient cells with SN50, a cell-permeable NF-kappaB inhibitor.
- Analysis of apoptosis-related protein expression (Bcl-2, XIAP, cIAP-1, cIAP-2, survivin, Bax), caspase activation (caspase-3, -8, -9), and cytochrome c release.
- Assessment of SN50's effect on TNF-alpha-induced MM cell proliferation, apoptosis, and adhesion molecule expression (ICAM-1), and its interaction with p38 inhibitor PD169316.
Main Results:
- SN50 induced apoptosis in MM cells by down-regulating anti-apoptotic proteins and up-regulating Bax, leading to caspase activation and cytochrome c release.
- SN50 pretreatment sensitized MM cells to TNF-alpha-induced apoptosis and caspase cleavage, and inhibited TNF-alpha-induced ICAM-1 expression.
- The p38 inhibitor PD169316 potentiated SN50's apoptotic effect, suggesting pathway crosstalk.
Conclusions:
- NF-kappaB activity in MM cells is essential for tumor cell survival and protection against apoptotic stimuli.
- Targeting NF-kappaB with inhibitors like SN50 represents a promising strategy for novel, biologically based therapies against multiple myeloma.
- Combined inhibition of NF-kappaB and p38 pathways may offer enhanced therapeutic benefits in MM treatment.
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