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Published on: May 1, 2015
MAFb protein confers intrinsic resistance to proteasome inhibitors in multiple myeloma
Ya-Wei Qiang1, Shiqiao Ye2, Yuhua Huang2
1Myeloma Institute, University of Arkansas for Medical Sciences, Winthrop P. Rockefeller Cancer Institute, 4301 West Markham St., Slot 776, Rm 914, Little Rock, AR, 72205, USA. yqiang@uams.edu.
Background:
Multiple myeloma (MM) patients with t(14;20) have a poor prognosis and their outcome has not improved following the introduction of bortezomib (Bzb). The mechanism underlying the resistance to proteasome inhibitors (PIs) for this subset of patients is unknown.
Methods:
IC50 of Bzb and carfilzomib (CFZ) in human myeloma cell lines (HMCLs) were established by MTT assay. Gene Expression profile (GEP) analysis was used to determine gene expression in primary myeloma cells. Immunoblotting analysis was performed for MAFb and caspase family proteins. Immunofluorescence staining was used to detect the location of MAFb protein in MM cells. Lentiviral infections were used to knock-down MAFb expression in two lines. Apoptosis detection by flow cytometry and western blot analysis was performed to determine the molecular mechanism MAFb confers resistance to proteasome inhibitors.
Results:
We found high levels of MAFb protein in cell lines with t(14;20), in one line with t(6;20), in one with Igλ insertion into MAFb locus, and in primary plasma cells from MM patients with t(14;20). High MAFb protein levels correlated with higher IC50s of PIs in MM cells. Inhibition of GSK3β activity or treatment with Bzb or CFZ prevented MAFb protein degradation without affecting the corresponding mRNA level indicating a role for GSK3 and proteasome inhibitors in regulation of MAFb stability. Silencing MAFb restored sensitivity to Bzb and CFZ, and enhanced PIs-induced apoptosis and activation of caspase-3, - 8, - 9, PARP and lamin A/C suggesting that high expression of MAFb protein leads to insensitivity to proteasome inhibitors.
Conclusion:
These results highlight the role of post-translational modification of MAFb in maintaining its protein level, and identify a mechanism by which proteasome inhibitors induced stabilization of MAFb confers resistance to proteasome inhibitors, and provide a rationale for the development of targeted therapeutic strategies for this subset of patients.
Insights
High MAFb protein levels in multiple myeloma patients with t(14;20) confer resistance to proteasome inhibitors like bortezomib and carfilzomib. Targeting MAFb stabilization may improve treatment outcomes for this poor-prognosis group.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- Multiple myeloma (MM) patients with the t(14;20) translocation exhibit poor prognosis.
- Existing treatments, including bortezomib (Bzb), have not improved outcomes for this MM subset.
- The mechanism of resistance to proteasome inhibitors (PIs) in t(14;20) MM remains unclear.
Purpose of the Study:
- To investigate the role of MAFb protein in mediating resistance to proteasome inhibitors in multiple myeloma.
- To elucidate the molecular mechanisms underlying PI resistance in t(14;20) MM.
- To identify potential therapeutic targets for improving treatment efficacy in this patient group.
Main Methods:
- Assessed bortezomib (Bzb) and carfilzomib (CFZ) IC50 values in human myeloma cell lines (HMCLs) using MTT assays.
- Analyzed gene expression profiles (GEP) in primary myeloma cells and performed immunoblotting for MAFb and caspase proteins.
- Utilized immunofluorescence, lentiviral knockdown of MAFb, flow cytometry, and western blotting to determine MAFb's role in PI resistance and apoptosis.
Main Results:
- Elevated MAFb protein levels were observed in cell lines with t(14;20) and in primary t(14;20) MM patient cells.
- High MAFb protein levels correlated with increased resistance (higher IC50s) to PIs.
- Inhibition of GSK3β or treatment with Bzb/CFZ stabilized MAFb protein, while MAFb knockdown restored sensitivity to PIs and enhanced apoptosis.
Conclusions:
- Post-translational modification of MAFb is crucial for maintaining its protein levels.
- PI-induced stabilization of MAFb confers resistance to proteasome inhibitors in multiple myeloma.
- Targeting MAFb stabilization presents a promising therapeutic strategy for t(14;20) MM patients.
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