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Updated: Mar 15, 2026

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Published on: August 22, 2010
v-Src Oncogene Induces Trop2 Proteolytic Activation via Cyclin D1
Xiaoming Ju1,2, Xuanmao Jiao1,2, Adam Ertel1,2
1Department of Cancer Biology, Thomas Jefferson University, Philadelphia, Pennsylvania.
Abstract:
Proteomic analysis of castration-resistant prostate cancer demonstrated the enrichment of Src tyrosine kinase activity in approximately 90% of patients. Src is known to induce cyclin D1, and a cyclin D1-regulated gene expression module predicts poor outcome in human prostate cancer. The tumor-associated calcium signal transducer 2 (TACSTD2/Trop2/M1S1) is enriched in the prostate, promoting prostate stem cell self-renewal upon proteolytic activation via a γ-secretase cleavage complex (PS1, PS2) and TACE (ADAM17), which releases the Trop2 intracellular domain (Trop2 ICD). Herein, v-Src transformation of primary murine prostate epithelial cells increased the proportion of prostate cancer stem cells as characterized by gene expression, epitope characteristics, and prostatosphere formation. Cyclin D1 was induced by v-Src, and Src kinase induction of Trop2 ICD nuclear accumulation required cyclin D1. Cyclin D1 induced abundance of the Trop2 proteolytic cleavage activation components (PS2, TACE) and restrained expression of the inhibitory component of the Trop2 proteolytic complex (Numb). Patients with prostate cancer with increased nuclear Trop2 ICD and cyclin D1, and reduced Numb, had reduced recurrence-free survival probability (HR = 4.35). Cyclin D1, therefore, serves as a transducer of v-Src-mediated induction of Trop2 ICD by enhancing abundance of the Trop2 proteolytic activation complex. Cancer Res; 76(22); 6723-34. ©2016 AACR.
Insights
Src tyrosine kinase activity drives prostate cancer stem cell renewal by upregulating tumor-associated calcium signal transducer 2 (Trop2) cleavage. Cyclin D1 links Src to Trop2 activation, predicting poor patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Castration-resistant prostate cancer (CRPC) shows enriched Src tyrosine kinase activity in most patients.
- Src signaling influences cyclin D1, a key regulator of poor prognosis in prostate cancer.
- Tumor-associated calcium signal transducer 2 (Trop2) promotes prostate cancer stem cell renewal via proteolytic activation.
Purpose of the Study:
- To investigate the role of Src tyrosine kinase in prostate cancer stem cell (CSC) generation.
- To elucidate the mechanism by which Src induces Trop2 intracellular domain (Trop2 ICD) accumulation.
- To determine the clinical significance of Trop2 ICD and cyclin D1 in prostate cancer progression.
Main Methods:
- v-Src transformation of primary murine prostate epithelial cells.
- Analysis of CSC markers, gene expression, and prostatosphere formation.
- Assessment of Trop2 ICD nuclear localization, proteolytic complex components (PS2, TACE, Numb), and patient survival data.
Main Results:
- v-Src transformation increased CSC proportion, correlating with gene expression and prostatosphere formation.
- Src-induced Trop2 ICD nuclear accumulation was dependent on cyclin D1.
- Cyclin D1 upregulated Trop2 activation components (PS2, TACE) and downregulated Numb, a Trop2 inhibitor.
- Elevated nuclear Trop2 ICD and cyclin D1, with reduced Numb, predicted significantly worse recurrence-free survival in patients (HR=4.35).
Conclusions:
- Cyclin D1 acts as a crucial mediator, linking v-Src activity to Trop2 ICD induction in prostate cancer.
- The Src-cyclin D1-Trop2 axis promotes prostate cancer stemness and predicts poor clinical outcomes.
- Targeting this pathway may offer therapeutic strategies for advanced prostate cancer.
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