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Comparing Metastatic Clear Cell Renal Cell Carcinoma Model Established in Mouse Kidney and on Chicken Chorioallantoic Membrane
Published on: February 8, 2020
SMEK1 promotes clear cell renal cell carcinoma progression via EGFR tyrosine-kinase dependent pathway
Jue Wang1, Wenhao Bi2, Renguang Lv3
1Key Laboratory for Experimental Teratology of the Ministry of Education and Department of Medical Genetics, School of Basic Medical Sciences, Cheeloo College of Medicine, Shandong University, Jinan, Shandong, 250012, China; Institute of Medical Sciences, The Second Hospital of Shandong University, Cheeloo College of Medicine, Shandong University, Jinan, Shandong, 250033, China.
Abstract:
Studying the mechanisms underlying clear cell renal cell carcinoma (ccRCC), the most common subtype of kidney cancer, may address an unmet need in ccRCC-targeted drug research. Growing evidences indicate that protein phosphatase 4 (PP4) plays an important role in cancer biology. Here, we characterized the upregulation of PP4 core component SMEK1 in ccRCC using tissue microarrays and revealed that its high expression is closely associated with reduced patient survival. We then conducted cell function experiments and animal experiments to prove the tumor-promoting effect of SMEK1. Next, RNA-seq was performed to explore its underlying mechanism, and the results revealed that SMEK1-regulated genes were extensively involved in cell motility, and the canonical tyrosine kinase receptor EGFR was one of its targets. Moreover, we verified the regulatory effect of SMEK1 on EGFR and its downstream MAPK and AKT pathway through molecular experiments, in which erlotinib, a tyrosine kinase inhibitor, can partially block this regulation, demonstrating that SMEK1 mediates its effects dependent on the tyrosine kinase activity of EGFR. Mechanistically, SMEK1 bond to PRMT5 and facilitated PRMT5-mediated histone methylation to promote the transcription of EGFR. Furthermore, we studied the upstream regulators of SMEK1 and demonstrated that the transcription factor E2F1 could directly bind to the SMEK1 promoter by chromatin immunoprecipitation. Functionally, E2F1 could also induce ccRCC progression by manipulating the expression of SMEK1. Collectively, our findings demonstrate the overexpression of SMEK1 in ccRCC, and reveal a novel E2F1/SMEK1/PRMT5/EGFR-tyrosine-kinase-dependent pathway for ccRCC progression.
Insights
High expression of SMEK1, a protein phosphatase 4 component, promotes clear cell renal cell carcinoma (ccRCC) progression by regulating EGFR signaling. This discovery offers new avenues for ccRCC-targeted drug development.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Clear cell renal cell carcinoma (ccRCC) is the most common kidney cancer subtype, with limited targeted drug options.
- Protein phosphatase 4 (PP4) is implicated in cancer biology, but its specific roles in ccRCC require further elucidation.
- Understanding ccRCC mechanisms is crucial for developing effective targeted therapies.
Purpose of the Study:
- To investigate the role of SMEK1, a PP4 component, in ccRCC pathogenesis.
- To elucidate the molecular mechanisms by which SMEK1 influences ccRCC progression.
- To identify potential therapeutic targets within the E2F1/SMEK1/EGFR signaling axis.
Main Methods:
- Tissue microarrays were used to assess SMEK1 expression in ccRCC tissues.
- Cell function and animal experiments were conducted to evaluate SMEK1's tumor-promoting effects.
- RNA-sequencing (RNA-seq) and molecular experiments (including chromatin immunoprecipitation) were employed to determine the underlying mechanisms.
- Tyrosine kinase inhibitor (erlotinib) was used to assess pathway dependency.
Main Results:
- SMEK1 is upregulated in ccRCC and associated with reduced patient survival.
- SMEK1 promotes ccRCC progression by enhancing cell motility and regulating the EGFR pathway.
- SMEK1 interacts with PRMT5 to promote EGFR transcription via histone methylation.
- E2F1 directly binds to the SMEK1 promoter, driving ccRCC progression.
Conclusions:
- SMEK1 overexpression drives ccRCC progression through a novel E2F1/SMEK1/PRMT5/EGFR signaling pathway.
- SMEK1 is a potential therapeutic target for ccRCC.
- The identified pathway provides insights into ccRCC pathogenesis and drug development strategies.
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