ArticleCell death discovery2024
Novel FOXM1 inhibitor STL001 sensitizes human cancers to a broad-spectrum of cancer therapies.
Article in Cell death discovery, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers.
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Who cites it
19 citing papers in PubMed.
- RBM15B-mediated m6A modification of FOXM1 activates the AURKA/TPX2 axis to promote epithelial-mesenchymal transition-driven endometrial cancer progression.Cell adhesion & migration · 2026Article
- Anthracycline and antimetabolite, trigger distinct resistance mechanisms in TP53Cell death discovery · 2026Article
- Inflammatory monocytes constrain YAP-induced cell proliferation.Science advances · 2026Article
- The Regulatory Network of FOXM1: Orchestrating Cancer Progression and Resistance to Therapy.International journal of molecular sciences · 2026Review
- FOXM1-Specific TCR-Engineered T Cells Target Non-Small Cell Lung Cancer.Cancer immunology research · 2026Article
- Design, Synthesis, Biological Evaluation, and Molecular Modeling Studies of Novel 2-Aminothiazole Derivatives as Potential FOXM1 Inhibitors for Triple-Negative Breast Cancer Therapy and Structure-Activity Relationship.Drug development research · 2026Article
- Protein lactylation: a metabolic signal driving cancer therapy resistance.Cell death discovery · 2026Review
- FOXM1 induces therapy resistance and inhibits apoptosis in a variety of human cancers.Cell death & disease · 2026Review
- FOXM1 Signaling Network Transcriptionally Upregulates Expression of Proteins Involved in Mitotic Progression to Induce High Proliferation and Chromosomal Instability in Androgen Receptor-Low Triple-Negative Breast Cancer.International journal of molecular sciences · 2026Article
- Targeting FOXM1 reshapes antitumor immunity to attenuate small cell lung cancer progression.Cancer letters · 2026Article
- Design, synthesis, and anticancer evaluation of benzimidazole and benzothiazole derivatives targeting Hsp70 and FoxM1.Bioorganic & medicinal chemistry letters · 2026Article
- Cell-type-agnostic differential gene expression uncovers conserved principles of cellular regulation.bioRxiv : the preprint server for biology · 2025Article
- Inhibition of FOXM1 Synergizes with BH3 Mimetics Venetoclax and Sonrotoclax in Killing Multiple Myeloma Cells through Repressing MYC Pathway.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Bypassing the guardian: regulated cell death pathways in p53-mutant cancers.Cellular & molecular biology letters · 2025Review
- Deciphering the roles of non-coding RNAs in liposarcoma development: Challenges and opportunities for translational therapeutic advances.Non-coding RNA research · 2025Review
- Harnessing the anticancer potential of Piper nigrum: a synergistic approach to chemotherapy enhancement and reduced side effects.Discover oncology · 2025Review
- Response Gene to Complement 32 promotes cell proliferation and tamoxifen resistance in breast cancer via elevated FoxM1 expression.PloS one · 2025Article
- Novel benzothiazole/benzothiazole thiazolidine-2,4-dione derivatives as potential FOXM1 inhibitors: In silico, synthesis, and in vitro studies.Archiv der Pharmazie · 2024Article
- VGLL3 Regulates DAPK2-Mediated Autophagy During Osteoblast Differentiation.BioFactors (Oxford, England)Article
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9 authors.
Funding
Abstract
Forkhead box protein M1 (FOXM1) is often overexpressed in human cancers and strongly associated with therapy resistance and less good patient survival. The chemotherapy options for patients with the most aggressive types of solid cancers remain very limited because of the acquired drug resistance, making the therapy less effective. NPM1 mutation through the inactivation of FOXM1 via FOXM1 relocalization to the cytoplasm confers more favorable treatment outcomes for AML patients, confirming FOXM1 as a crucial target to overcome drug resistance. Pharmacological inhibition of FOXM1 could be a promising approach to sensitize therapy-resistant cancers. Here, we explore a novel FOXM1 inhibitor STL001, a first-generation modification drug of our previously reported FOXM1 inhibitor STL427944. STL001 preserves the mode of action of the STL427944; however, STL001 is up to 50 times more efficient in reducing FOXM1 activity in a variety of solid cancers. The most conventional cancer therapies studied here induce FOXM1 overexpression in solid cancers. The therapy-induced FOXM1 overexpression may explain the failure or reduced efficacy of these drugs in cancer patients. Interestingly, STL001 increased the sensitivity of cancer cells to conventional cancer therapies by suppressing both the high-endogenous and drug-induced FOXM1. Notably, STL001 does not provide further sensitization to FOXM1-KD cancer cells, suggesting that the sensitization effect is conveyed specifically through FOXM1 suppression. RNA-seq and gene set enrichment studies revealed prominent suppression of FOXM1-dependent pathways and gene ontologies. Also, gene regulation by STL001 showed extensive overlap with FOXM1-KD, suggesting a high selectivity of STL001 toward the FOXM1 regulatory network. A completely new activity of FOXM1, mediated through steroid/cholesterol biosynthetic process and protein secretion in cancer cells was also detected. Collectively, STL001 offers intriguing translational opportunities as combination therapies targeting FOXM1 activity in a variety of human cancers driven by FOXM1.
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Registered trials
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 OpenQuestion graph.