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Updated: Mar 23, 2026

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition
Published on: October 9, 2014
CD82 suppresses CD44 alternative splicing-dependent melanoma metastasis by mediating U2AF2 ubiquitination and
Pu Zhang1,2, Shan Feng1, Gentao Liu3
1Key Laboratory of Luminescence and Real-Time Analytical Chemistry (Southwest University),Ministry of Education, College of Pharmaceutical Sciences, Southwest University, Chongqing, China, 400715.
Abstract:
Melanoma is one of the most lethal forms of skin cancer because of its early metastatic spread. The variant form of CD44 (CD44v), a cell surface glycoprotein, is highly expressed on metastatic melanoma. The mechanisms of regulation of CD44 alternative splicing in melanoma and its pathogenic contributions are so far poorly understood. Here, we investigated the expression level of CD44 in a large set of melanocytic lesions at different stages. We found that the expression of CD44v8-10 and a splicing factor, U2AF2, is significantly increased during melanoma progression, whereas CD82/KAI1, a tetraspanin family of tumor suppressor, is reduced in metastatic melanoma. CD44v8-10 and U2AF2 expression levels, which are negatively correlated with CD82 levels, are markedly elevated in primary melanoma compared with dysplastic nevi and further increased in metastatic melanoma. We also showed that patients with higher CD44v8-10 and U2AF2 expression levels tended to have shorter survival. By using both in vivo and in vitro assays, we demonstrated that CD82 inhibits the production of CD44v8-10 on melanoma. Mechanistically, U2AF2 is a downstream target of CD82 and in malignant melanoma facilitates CD44v8-10 alternative splicing. U2AF2-mediated CD44 isoform switch is required for melanoma migration in vitro and lung and liver metastasis in vivo. Notably, overexpression of CD82 suppresses U2AF2 activity by inducing U2AF2 ubiquitination. In addition, our data suggested that enhancement of melanoma migration by U2AF2-dependent CD44v8-10 splicing is mediated by Src/focal adhesion kinase/RhoA activation and formation of stress fibers, as well as CD44-E-selectin binding reinforcement. These findings uncovered a hitherto unappreciated function of CD82 in severing the linkage between U2AF2-mediated CD44 alternative splicing and cancer aggressiveness, with potential prognostic and therapeutic implications in melanoma.
Insights
CD82 suppresses melanoma metastasis by inhibiting CD44v8-10 splicing via U2AF2. Lower CD82 and higher CD44v8-10/U2AF2 correlate with poorer melanoma survival, indicating therapeutic potential.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Melanoma's lethality stems from early metastasis.
- CD44 variant (CD44v) is highly expressed in metastatic melanoma.
- Mechanisms regulating CD44 alternative splicing in melanoma are poorly understood.
Purpose of the Study:
- Investigate CD44 expression in melanocytic lesions.
- Elucidate the role of CD82 and U2AF2 in melanoma progression.
- Determine the prognostic and therapeutic implications of CD44 splicing in melanoma.
Main Methods:
- Analysis of CD44 expression in melanocytic lesions.
- In vivo and in vitro assays to study CD82 and U2AF2 interactions.
- Assessment of patient survival based on CD44v8-10 and U2AF2 levels.
Main Results:
- CD44v8-10 and U2AF2 expression increase with melanoma progression.
- CD82 expression decreases in metastatic melanoma.
- Higher CD44v8-10/U2AF2 levels correlate with shorter patient survival.
- CD82 inhibits CD44v8-10 production; U2AF2 mediates splicing.
- CD82 overexpression suppresses U2AF2 activity.
Conclusions:
- CD82 inhibits U2AF2-mediated CD44 alternative splicing, impacting melanoma aggressiveness.
- CD82's role in regulating CD44 splicing offers potential prognostic and therapeutic strategies for melanoma.
- Targeting the CD82-U2AF2-CD44v8-10 axis may impede melanoma metastasis.
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