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The Use of Reverse Phase Protein Arrays RPPA to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
Biochemical and clinical effects of RPS20 expression in renal clear cell carcinoma
Cheng Shen1, Zhan Chen1, Yong Zhang1
1Department of Urology, The Second Affiliated Hospital of Nantong University, Nantong, Jiangsu 226001, P.R. China.
Abstract:
Renal cell carcinoma (RCC) remains one of the most lethal urinary tumors in East Asia despite great advancements in treatment strategies in recent years. Ribosomal protein S20 (RPS20) is considered a new oncogene; however, little information is available on its expression, regulation and biological function in patients with RCC. In the present study, 43 pairs of human RCC and neighboring normal renal tissues were examined for protein expression and immunohistochemistry examination of RPS20. Lentiviral transduction was also employed to create RPS20 knockdown cell lines for downstream cellular experiments. MTT, flow cytometry, wound healing, colony formation and invasion assays were used to examine how RPS20 affected kidney renal clear cell carcinoma (KIRC) cell behavior. Western blotting was used to detect cycle‑related proteins (CDK4 and cyclin D1), Wnt‑related proteins (N‑cadherin and E‑cadherin) and signaling proteins [phosphorylated (p)‑AKT and p‑ERK]. The functions of RPS20 in vivo were examined in 786‑O cells with RPS20 knockdown. RPS20 was significantly overexpressed in tumor tissues compared with its expression in the corresponding normal tissues. RPS20 expression was linked to tumor stage, differentiation grade, tumor size and lymph node metastasis, and it had an independent prognostic value in KIRC. Since RCC cell proliferation, migration and invasion were suppressed when RPS20 was knocked down, the formation of renal tumors in vivo was markedly slowed down. In RPS20 knockdown cell lines, CDK4, cyclin D1 and E‑cadherin were downregulated, while N‑cadherin expression was increased. RPS20 was also observed to be involved in controlling the activation of the ERK and mTOR signaling pathways. In summary, the present study showed that RPS20 increased cell proliferation in RCC by activating the AKT‑mTOR and ERK‑MAPK signaling pathways, which suggests that RPS20 may be a therapeutic and prognostic target for RCC.
Insights
Ribosomal protein S20 (RPS20) is overexpressed in kidney renal clear cell carcinoma (KIRC), promoting tumor growth and metastasis. Targeting RPS20 may offer a new therapeutic strategy for KIRC patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Renal cell carcinoma (RCC) is a lethal malignancy, particularly in East Asia.
- Ribosomal protein S20 (RPS20) is a potential oncogene with limited research in RCC.
- Understanding RPS20's role is crucial for developing novel RCC treatments.
Purpose of the Study:
- To investigate the expression, regulation, and biological function of RPS20 in kidney renal clear cell carcinoma (KIRC).
- To determine the prognostic value of RPS20 in KIRC.
- To explore RPS20's impact on KIRC cell behavior and signaling pathways.
Main Methods:
- Examined RPS20 protein expression in 43 RCC and normal tissue pairs using immunohistochemistry.
- Utilized lentiviral transduction to create RPS20 knockdown KIRC cell lines.
- Performed MTT, flow cytometry, wound healing, colony formation, and invasion assays.
- Analyzed cell cycle, Wnt, AKT, and ERK signaling proteins via Western blotting.
- Assessed RPS20's in vivo function using a xenograft model.
Main Results:
- RPS20 was significantly overexpressed in RCC tissues compared to normal tissues.
- RPS20 expression correlated with tumor stage, grade, size, and lymph node metastasis, showing independent prognostic value.
- RPS20 knockdown suppressed KIRC cell proliferation, migration, and invasion, and slowed tumor growth in vivo.
- RPS20 knockdown downregulated CDK4, cyclin D1, and E-cadherin, while upregulating N-cadherin.
- RPS20 activated AKT-mTOR and ERK-MAPK signaling pathways.
Conclusions:
- RPS20 is significantly overexpressed in KIRC and serves as an independent prognostic marker.
- RPS20 promotes KIRC cell proliferation, migration, and invasion by activating AKT-mTOR and ERK-MAPK pathways.
- RPS20 represents a potential therapeutic and prognostic target for KIRC.
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