ArticleBlood cancer discovery2024
ETV4-Dependent Transcriptional Plasticity Maintains MYC Expression and Results in IMiD Resistance in Multiple Myeloma.
Article in Blood cancer discovery, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 28 papers.
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Who cites it
28 citing papers in PubMed, 29 citations in OpenAlex.
- Understanding and addressing resistance to IMiDs immunomodulatory compounds in multiple myeloma.The FEBS journal · 2026Review
- EZH2 inhibition overcomes immunomodulatory drug resistance in multiple myeloma via a cereblon-dependent pathway.Haematologica · 2026Article
- Single-nuclei UPR profiling by flow cytometry reveals bortezomib resistance mechanisms in multiple myeloma.EMBO molecular medicine · 2026Article
- Multiple myeloma: A tale of deregulated transcription factors.HemaSphere · 2026Review
- Emerging roles of RNA mInternational journal of oncology · 2026Review
- Catalytic Inhibition of p300 Preferentially Targets IRF4 Oncogenic Activity and Tumor Growth in Multiple Myeloma.Cancer research · 2026Article
- Epigenetic reprogramming in multiple myeloma-Challenges and opportunities.International journal of cancer · 2026Review
- Deubiquitination of ETV4 by USP7 Promotes NSCLC Tumorigenesis via MAPK7 Activation.Human mutation · 2026Article
- Article
- Genes-first and phenotypes-first paths to treatment resistance in hematological malignancies.Cell death & disease · 2025Review
- Topoisomerase I Inhibition in ETV4-overexpressed Non-Small Cell Lung Cancer Promotes Replication and Transcription Mediated R-Loop Accumulation and DNA Damage.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Systemic deficits in lipid homeostasis promote aging-associated impairments in B cell progenitor development.GeroScience · 2025Article
- A novel cereblon variant with both exon 8 and 10 deletions in newly diagnosed and relapsed multiple myeloma.Blood neoplasia · 2025Article
- GCK inhibition enhances iberdomide antimyeloma effects by promoting IKZF1 degradation via a CRBN-independent mechanism.Blood neoplasia · 2025Article
- Resistance to immunomodulatory drugs in multiple myeloma: the cereblon pathway and beyond.Haematologica · 2025Review
- PEA3 Transcription Factors, Role in Invasion, Proliferation and Radioresistance of Glioblastoma Stem Cells.Journal of cellular and molecular medicine · 2025Article
- Dual CARM1-and IKZF3-targeting: A novel approach to multiple myeloma therapy synergy between CARM1 inhibition and IMiDs.Molecular therapy. Oncology · 2025Article
- Article
- Enitociclib, a selective CDK9 inhibitor: in vitro and in vivo preclinical studies in multiple myeloma.Blood neoplasia · 2025Article
- Immunocompetent mouse models of multiple myeloma.Seminars in hematology · 2025Review
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Authors and funding
21 authors at 6 institutions in 4 countries.
Funding
Abstract
Immunomodulatory drugs (IMiD) are a backbone therapy for multiple myeloma (MM). Despite their efficacy, most patients develop resistance, and the mechanisms are not fully defined. Here, we show that IMiD responses are directed by IMiD-dependent degradation of IKZF1 and IKZF3 that bind to enhancers necessary to sustain the expression of MYC and other myeloma oncogenes. IMiD treatment universally depleted chromatin-bound IKZF1, but eviction of P300 and BRD4 coactivators only occurred in IMiD-sensitive cells. IKZF1-bound enhancers overlapped other transcription factor binding motifs, including ETV4. Chromatin immunoprecipitation sequencing showed that ETV4 bound to the same enhancers as IKZF1, and ETV4 CRISPR/Cas9-mediated ablation resulted in sensitization of IMiD-resistant MM. ETV4 expression is associated with IMiD resistance in cell lines, poor prognosis in patients, and is upregulated at relapse. These data indicate that ETV4 alleviates IKZF1 and IKZF3 dependency in MM by maintaining oncogenic enhancer activity and identify transcriptional plasticity as a previously unrecognized mechanism of IMiD resistance. SIGNIFICANCE: We show that IKZF1-bound enhancers are critical for IMiD efficacy and that the factor ETV4 can bind the same enhancers and substitute for IKZF1 and mediate IMiD resistance by maintaining MYC and other oncogenes. These data implicate transcription factor redundancy as a previously unrecognized mode of IMiD resistance in MM. See related article by Welsh, Barwick, et al., p. 34. See related commentary by Yun and Cleveland, p. 5. This article is featured in Selected Articles from This Issue, p. 4.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.