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Targeting Trop2 by Bruceine D suppresses breast cancer metastasis by blocking Trop2/β-catenin positive feedback loop
Wenjuan Tang1, Yu Hu1, Kaihui Tu1
1School of Pharmacy, Health Science Center, Xi'an Jiaotong University, Xi'an 710061, China; State Key Laboratory of Shaanxi for Natural Medicines Research and Engineering, Xi'an 710061, China.
Introduction:
Tumor-associated calcium signal transducer 2 (Trop2) has been used as a transport gate for cytotoxic agents into cells in antibody-drug conjugate designs because of its expression in a wide range of solid tumors. However, the specific role of Trop2 itself in breast cancer progression remains unclear and small molecules targeting Trop2 have not yet been reported.
Objectives:
To screen small molecules targeting Trop2, and to reveal its pharmacological effects and the molecular mechanisms of action.
Methods:
Small molecule targeting Trop2 was identified by cell membrane chromatography, and validated by cellular thermal shift assay and point mutation analyses. We investigated the pharmacological effects of Trop2 inhibitor using RNA-seq, human foreskin fibroblast (HFF)-derived extracellular matrix (ECM), Matrigel drop invasion assays, colony-forming assay, xenograft tumor model, 4T1 orthotopic metastasis model and 4T1 experimental metastasis model. The molecular mechanism was determined using immunoprecipitation, mass spectrometry, immunofluorescence, immunohistochemistry and Western blotting.
Results:
Here we identified Bruceine D (BD) as the inhibitor of Trop2, and demonstrated anti-metastasis effects of BD in breast cancer. Notably, Lys307 and Glu310 residues of Trop2 acted as critical sites for BD binding. Mechanistically, BD suppressed Trop2-induced cancer metastasis by blocking the formation of Trop2/β-catenin positive loop, in which the Trop2/β-catenin complex prevented β-catenin from being degraded via the ubiquitin-proteosome pathway. Destabilized β-catenin caused by BD reduced nucleus translocation, leading to the reduction of transcription of Trop2, the reversal of epithelial-mesenchymal transition (EMT) process, and the inhibition of ECM remodeling, further inhibiting cancer metastasis. Additionally, the inhibitory effects of BD on lung metastatic colonization and the beneficial effects of BD on prolongation of survival were validated in 4T1 experimental metastasis model.
Conclusions:
These results support the tumor-promoting role of Trop2 in breast cancer by stabilizing β-catenin in Trop2/β-catenin positive loop, and suggest Bruceine D as a promising candidate for Trop2 inhibition.
Insights
Bruceine D inhibits Trop2, a protein promoting breast cancer metastasis by stabilizing beta-catenin. This small molecule blocks metastasis and improves survival, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Tumor-associated calcium signal transducer 2 (Trop2) is expressed in solid tumors and used in antibody-drug conjugates.
- The role of Trop2 in breast cancer progression and targeted small molecules are not well-defined.
Purpose of the Study:
- To screen for small molecules targeting Trop2.
- To investigate the pharmacological effects and molecular mechanisms of Trop2 inhibition in breast cancer.
Main Methods:
- Small molecule Trop2 inhibitor identified via cell membrane chromatography and validated by thermal shift assay.
- Pharmacological effects assessed using RNA-seq, invasion assays, colony formation, and metastasis models.
- Molecular mechanisms elucidated through immunoprecipitation, mass spectrometry, and Western blotting.
Main Results:
- Bruceine D (BD) identified as a Trop2 inhibitor with anti-metastasis effects in breast cancer.
- BD binds to Lys307 and Glu310 residues of Trop2, disrupting the Trop2/β-catenin loop.
- BD suppresses metastasis by reducing β-catenin nuclear translocation, inhibiting EMT and ECM remodeling, and reducing lung colonization.
Conclusions:
- Trop2 promotes breast cancer by stabilizing β-catenin, supporting its tumor-promoting role.
- Bruceine D demonstrates anti-metastatic potential and improved survival in preclinical models.
- Bruceine D is a promising candidate for Trop2-targeted breast cancer therapy.
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