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An Organotypic High Throughput System for Characterization of Drug Sensitivity of Primary Multiple Myeloma Cells
Published on: July 15, 2015
Tropolone-induced effects on the unfolded protein response pathway and apoptosis in multiple myeloma cells are
Staci L Haney1, Michelle L Varney1, Hannah R Safranek1
1Department of Internal Medicine, University of Nebraska Medical Center, Omaha, NE, United States.
Abstract:
Tropolones are naturally occurring seven-membered non-benzenoid aromatic compounds that are of interest due to their cytotoxic properties. MO-OH-Nap is a novel α-substituted tropolone that induces caspase cleavage and upregulates markers associated with the unfolded protein response (UPR) in multiple myeloma (MM) cells. Given previous reports that tropolones may function as iron chelators, we investigated the effects of MO-OH-Nap, as well as the known iron chelator deferoxamine (DFO), in MM cells in the presence or absence of supplemental iron. The ability of MO-OH-Nap to induce apoptosis and upregulate markers of the UPR could be completely prevented by co-incubation with either ferric chloride or ammonium ferrous sulfate. Iron also completely prevented the decrease in BrdU incorporation induced by either DFO or MO-OH-Nap. Ferrozine assays demonstrated that MO-OH-Nap directly chelates iron. Furthermore, MO-OH-Nap upregulates cell surface expression and mRNA levels of transferrin receptor. In vivo studies demonstrate increased Prussian blue staining in hepatosplenic macrophages in MO-OH-Nap-treated mice. These studies demonstrate that MO-OH-Nap-induced cytotoxic effects in MM cells are dependent on the tropolone's ability to alter cellular iron availability and establish new connections between iron homeostasis and the UPR in MM.
Insights
MO-OH-Nap, a novel tropolone, shows cytotoxic effects in multiple myeloma (MM) cells by chelating iron. Restoring iron levels prevents these effects, linking iron homeostasis and the unfolded protein response (UPR) in MM.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Tropolones are aromatic compounds with known cytotoxic properties.
- MO-OH-Nap is a novel α-substituted tropolone that induces apoptosis and the unfolded protein response (UPR) in multiple myeloma (MM) cells.
Purpose of the Study:
- To investigate the role of iron chelation in MO-OH-Nap's cytotoxic effects on MM cells.
- To explore the relationship between iron homeostasis and the UPR in MM.
Main Methods:
- Investigated MO-OH-Nap and deferoxamine (DFO) effects on MM cells with and without supplemental iron.
- Utilized ferrozine assays to assess iron chelation.
- Analyzed BrdU incorporation and transferrin receptor expression.
- Conducted in vivo studies using Prussian blue staining.
Main Results:
- Iron supplementation completely prevented MO-OH-Nap-induced apoptosis and UPR marker upregulation.
- Iron also reversed MO-OH-Nap and DFO-induced decreases in BrdU incorporation.
- MO-OH-Nap was confirmed to directly chelate iron.
- MO-OH-Nap increased transferrin receptor expression and showed iron-dependent effects in vivo.
Conclusions:
- MO-OH-Nap's cytotoxicity in MM cells is iron-dependent.
- MO-OH-Nap alters cellular iron availability, impacting MM cell viability.
- Established a link between iron homeostasis and the UPR in MM pathogenesis.
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