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Updated: Jan 15, 2026

RhoC GTPase Activation Assay
Published on: August 22, 2010
RCC2 and CD24 cooperate to modulate prostate cancer progression through vimentin ubiquitination and β-catenin
Xuelian Cui1, Yicun Wang1, Chao Zhang1
1Department of Genetics and.
Abstract:
CD24 promotes prostate cancer progression and metastasis by disrupting the ARF-NPM interaction and impairing p53 signaling. However, the mechanisms underlying CD24-driven metastasis remain unclear. This study identifies a novel interaction between CD24 and Regulator of Chromosome Condensation 2 (RCC2), a protein involved in cell proliferation and migration. IHC analysis of prostate adenocarcinoma samples showed frequent coexpression of CD24 (49%) and RCC2 (82%) with a positive correlation between coexpression of CD24 (49%) and RCC2 (82%). Functional assays revealed complex roles: RCC2 KO suppressed proliferation but increased migration and invasion, while CD24 KO reduced both proliferation and migration. Dual KO of CD24 and RCC2 further inhibited proliferation but had varied effects on migration. In mouse xenografts, RCC2 KO increased lung metastasis without significantly affecting primary tumor growth, while CD24 KO reduced both tumor growth and metastasis. Mechanistically, RCC2 controls migration by promoting ubiquitination and degradation of vimentin, affecting cytoskeletal dynamics. In contrast, CD24 targets RCC2 for degradation, thereby regulating β-catenin signaling. Notably, RCC2 KO enhances β-catenin activity by suppressing inhibitors AXIN2 and APC, whereas CD24 KO inhibits this pathway. These findings reveal a regulatory loop where CD24 and RCC2 reciprocally control proliferation and metastasis, positioning the CD24-RCC2 axis as a promising therapeutic target in prostate cancer.
Insights
This study reveals that CD24 and Regulator of Chromosome Condensation 2 (RCC2) interact to control prostate cancer growth and spread. Targeting this CD24-RCC2 pathway may offer new therapeutic strategies for prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- CD24 is known to promote prostate cancer progression and metastasis.
- The precise mechanisms by which CD24 drives metastasis are not fully understood.
- CD24 impacts the ARF-NPM interaction and p53 signaling pathways.
Purpose of the Study:
- To investigate the novel interaction between CD24 and Regulator of Chromosome Condensation 2 (RCC2).
- To elucidate the roles of CD24 and RCC2 in prostate cancer proliferation and metastasis.
- To identify the molecular mechanisms underlying the CD24-RCC2 axis in prostate cancer.
Main Methods:
- Immunohistochemistry (IHC) analysis of prostate adenocarcinoma samples.
- Functional assays including knockout (KO) of CD24 and RCC2.
- Mouse xenograft models to assess tumor growth and metastasis.
- Analysis of protein degradation, signaling pathways (e.g., β-catenin), and cytoskeletal dynamics.
Main Results:
- CD24 and RCC2 are frequently coexpressed in prostate cancer.
- RCC2 KO suppressed proliferation but increased migration; CD24 KO reduced both.
- CD24 targets RCC2 for degradation, influencing β-catenin signaling.
- RCC2 promotes migration via vimentin degradation; CD24 regulates RCC2 stability.
Conclusions:
- CD24 and RCC2 form a regulatory axis that reciprocally controls prostate cancer proliferation and metastasis.
- The CD24-RCC2 interaction impacts key signaling pathways like β-catenin and cytoskeletal dynamics.
- The CD24-RCC2 axis represents a potential therapeutic target for prostate cancer treatment.
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