ArticleCancer research communications2022
Proteasome Inhibitors Silence Oncogenes in Multiple Myeloma through Localized Histone Deacetylase 3 (HDAC3) Stabilization and Chromatin Condensation.
Article in Cancer research communications, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed, 8 citations in OpenAlex.
- Integrative multi-omics profiling reveals an association between lipid metabolism dysregulation and bortezomib-induced cerebral hemorrhage in zebrafish.Fluids and barriers of the CNS · 2026Article
- Regulatory function of ten‑eleven translocation‑2 in transcriptional mechanisms of demethylated myeloma cells.Molecular medicine reports · 2026Article
- Serpina3c protects against metabolic dysfunction-associated steatotic liver disease in offspring induced by prenatal prednisone exposure.Signal transduction and targeted therapy · 2026Article
- Transcriptional Condensates: Epigenetic Reprogramming and Therapeutic Targets in Hematologic Malignancies.Cancers · 2025Review
- The role of acetylation and deacetylation in cancer metabolism.Clinical and translational medicine · 2025Review
- Proteasome Inhibition Reprograms Chromatin Landscape in Breast Cancer.Cancer research communications · 2024Article
- The Genetic and Molecular Drivers of Multiple Myeloma: Current Insights, Clinical Implications, and the Path Forward.Pharmacogenomics and personalized medicine · 2024Review
- IMiD-Free Interval and IMiDs Sequence: Which Strategy Is Better Suited for Lenalidomide-Refractory Myeloma?Life (Basel, Switzerland) · 2023Review
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Authors and funding
11 authors at 2 institutions in 1 country.
Funding
Abstract
Proteasome inhibitors have become the standard of care for multiple myeloma (MM). Blocking protein degradation particularly perturbs the homeostasis of short-lived polypeptides such as transcription factors and epigenetic regulators. To determine how proteasome inhibitors directly impact gene regulation, we performed an integrative genomics study in MM cells. We discovered that proteasome inhibitors reduce the turnover of DNA-associated proteins and repress genes necessary for proliferation through epigenetic silencing. Specifically, proteasome inhibition results in the localized accumulation of histone deacetylase 3 (HDAC3) at defined genomic sites, which reduces H3K27 acetylation and increases chromatin condensation. The loss of active chromatin at super-enhancers critical for MM, including the super-enhancer controlling the proto-oncogene c-MYC, reduces metabolic activity and cancer cell growth. Epigenetic silencing is attenuated by HDAC3 depletion, suggesting a tumor-suppressive element of this deacetylase in the context of proteasome inhibition. In the absence of treatment, HDAC3 is continuously removed from DNA by the ubiquitin ligase SIAH2. Overexpression of SIAH2 increases H3K27 acetylation at c-MYC-controlled genes, increases metabolic output, and accelerates cancer cell proliferation. Our studies indicate a novel therapeutic function of proteasome inhibitors in MM by reshaping the epigenetic landscape in an HDAC3-dependent manner. As a result, blocking the proteasome effectively antagonizes c-MYC and the genes controlled by this proto-oncogene.
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Registered trials
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