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Published on: January 7, 2019
Dual therapeutic targeting of MYC and JUNB transcriptional programs for enhanced anti-myeloma activity
Judith Lind1, Osman Aksoy1, Michaela Prchal-Murphy2
1Division of Molecular Oncology and Hematology, Department of Basic and Translational Oncology, Karl Landsteiner University of Health Sciences, Krems an der Donau, Austria.
Abstract:
Deregulation of transcription factors (TFs) leading to uncontrolled proliferation of tumor cells within the microenvironment represents a hallmark of cancer. However, the biological and clinical impact of transcriptional interference, particularly in multiple myeloma (MM) cells, remains poorly understood. The present study shows for the first time that MYC and JUNB, two crucial TFs implicated in MM pathogenesis, orchestrate distinct transcriptional programs. Specifically, our data revealed that expression levels of MYC, JUNB, and their respective downstream targets do not correlate and that their global chromatin-binding patterns are not significantly overlapping. Mechanistically, MYC expression was not affected by JUNB knockdown, and conversely, JUNB expression and transcriptional activity were not affected by MYC knockdown. Moreover, suppression of MYC levels in MM cells via targeting the master regulator BRD4 by either siRNA-mediated knockdown or treatment with the novel proteolysis targeting chimera (PROTAC) MZ-1 overcame bone marrow (BM) stroma cell/IL-6-induced MYC- but not MEK-dependent JUNB-upregulation and transcriptional activity. Consequently, targeting of the two non-overlapping MYC- and JUNB-transcriptoms by MZ-1 in combination with genetic or pharmacological JUNB-targeting approaches synergistically enhanced MM cell death, both in 2D and our novel dynamic 3D models of the BM milieu as well as in murine xenografts. In summary, our data emphasize the opportunity to employ MYC and JUNB dual-targeting treatment strategies in MM as another exciting approach to further improve patient outcomes.
Insights
This study reveals that MYC and JUNB transcription factors (TFs) have distinct roles in multiple myeloma (MM). Targeting both MYC and JUNB synergistically enhances MM cell death, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Transcription factor (TF) deregulation drives cancer cell proliferation.
- The role of transcriptional interference in multiple myeloma (MM) is not well understood.
- MYC and JUNB are key TFs in MM pathogenesis.
Purpose of the Study:
- To investigate the distinct transcriptional programs orchestrated by MYC and JUNB in MM.
- To explore the therapeutic potential of targeting MYC and JUNB in MM.
Main Methods:
- Analysis of MYC and JUNB expression levels and chromatin-binding patterns.
- Knockdown studies to assess the mechanistic interplay between MYC and JUNB.
- Treatment with siRNA, proteolysis targeting chimera (PROTAC) MZ-1, and JUNB-targeting agents.
- Evaluation of MM cell death in 2D, 3D models, and murine xenografts.
Main Results:
- MYC and JUNB operate through distinct transcriptional programs with non-overlapping chromatin binding.
- MYC and JUNB expression levels are independent of each other.
- Targeting BRD4 with MZ-1 suppressed MYC but not MEK-dependent JUNB upregulation.
- Dual targeting of MYC and JUNB synergistically induced MM cell death.
Conclusions:
- MYC and JUNB are independent regulators of distinct transcriptional networks in MM.
- Combined targeting of MYC and JUNB presents a promising therapeutic strategy for MM.
- This dual-targeting approach could significantly improve patient outcomes in multiple myeloma.
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