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Updated: Jun 11, 2026

Analysis of Translation Initiation During Stress Conditions by Polysome Profiling
Published on: May 19, 2014
Ribosome Profiling Reveals Translational Reprogramming via mTOR Activation in Omacetaxine-Resistant Multiple Myeloma
Zachary J Walker1, Katherine F Vaeth2,3, Amber Baldwin2,3
1Division of Hematology, Department of Medicine, University of Colorado Anschutz Medical Campus, Aurora, Colorado.
Abstract:
Protein homeostasis is critical to the survival of multiple myeloma cells. Although this is targeted with proteasome inhibitors, mRNA translation inhibition has not entered trials. Recent work illustrates broad sensitivity of multiple myeloma cells to the translation inhibitor omacetaxine. We hypothesized that understanding how multiple myeloma becomes resistant will lead to the development of drug combinations to prevent or delay relapse. We generated omacetaxine resistance in H929 and MM1S multiple myeloma cell lines and compared them with parental lines. Resistant lines displayed decreased sensitivity to omacetaxine, with EC50 > 100 nmol/L, compared with parental sensitivity of 24 to 54 nmol/L. As omacetaxine inhibits protein synthesis, we performed both RNA sequencing and ribosome profiling to identify shared and unique regulatory strategies of resistance. Transcripts encoding translation factors and containing a terminal oligopyrimidine sequence in their 5' untranslated region were translationally upregulated in both resistant cell lines. The mTOR pathway promotes the translation of terminal oligopyrimidine motif-containing mRNAs. Indeed, mTOR inhibition with Torin 1 restored partial sensitivity to omacetaxine in both resistant cell lines. The combination was synergistic in omacetaxine-naïve multiple myeloma cell lines, and a combination effect was observed in vivo. Primary multiple myeloma cells from patient samples were also sensitive to the combination. These results provide a rational approach for omacetaxine-based combination therapy in patients with multiple myeloma, which have historically shown better responses to multiagent regimens.
Implications:
Through the use of ribosome profiling, our findings indicate mTOR inhibition as a novel combination therapy for partnering with the translation inhibitor omacetaxine in the treatment of multiple myeloma.
Insights
Multiple myeloma cells are sensitive to the translation inhibitor omacetaxine. Combining omacetaxine with mTOR inhibitors overcomes resistance and shows promise for treating multiple myeloma.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Protein homeostasis is crucial for multiple myeloma (MM) cell survival.
- Proteasome inhibitors target MM, but mRNA translation inhibition is an underexplored therapeutic strategy.
- MM cells exhibit sensitivity to the translation inhibitor omacetaxine.
Purpose of the Study:
- To investigate mechanisms of omacetaxine resistance in multiple myeloma.
- To identify potential drug combinations to prevent or delay relapse in MM.
- To evaluate the efficacy of combining omacetaxine with mTOR inhibitors.
Main Methods:
- Generated omacetaxine-resistant MM cell lines (H929, MM1S).
- Utilized RNA-sequencing and ribosome profiling (Ribo-seq) to analyze gene expression and translation.
- Assessed the effects of mTOR inhibition (Torin 1) on omacetaxine sensitivity in vitro and in vivo.
Main Results:
- Resistant MM cells showed significantly decreased sensitivity to omacetaxine (EC50 > 100 nM vs. 24-54 nM).
- Upregulation of translation factors and TOP motif-containing mRNAs was observed in resistant cells.
- mTOR inhibition restored partial omacetaxine sensitivity in resistant cells and demonstrated synergistic effects in naïve cells and in vivo.
Conclusions:
- mTOR pathway activation contributes to omacetaxine resistance in multiple myeloma.
- Combining omacetaxine with mTOR inhibitors is a rational and effective strategy for MM treatment.
- This combination therapy shows promise for overcoming resistance and improving outcomes in patients with multiple myeloma.
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