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3-D Cell Culture System for Studying Invasion and Evaluating Therapeutics in Bladder Cancer
Published on: September 13, 2018
Proteomics analysis of bladder cancer invasion: Targeting EIF3D for therapeutic intervention
Agnieszka Latosinska1,2, Marika Mokou1,3, Manousos Makridakis1
1Biotechnology Division, Biomedical Research Foundation, Academy of Athens, Athens, Greece.
Abstract:
Patients with advanced bladder cancer have poor outcomes, indicating a need for more efficient therapeutic approaches. This study characterizes proteomic changes underlying bladder cancer invasion aiming for the better understanding of disease pathophysiology and identification of drug targets. High resolution liquid chromatography coupled to tandem mass spectrometry analysis of tissue specimens from patients with non-muscle invasive (NMIBC, stage pTa) and muscle invasive bladder cancer (MIBC, stages pT2+) was conducted. Comparative analysis identified 144 differentially expressed proteins between analyzed groups. These included proteins previously associated with bladder cancer and also additional novel such as PGRMC1, FUCA1, BROX and PSMD12, which were further confirmed by immunohistochemistry. Pathway and interactome analysis predicted strong activation in muscle invasive bladder cancer of pathways associated with protein synthesis e.g. eIF2 and mTOR signaling. Knock-down of eukaryotic translation initiation factor 3 subunit D (EIF3D) (overexpressed in muscle invasive disease) in metastatic T24M bladder cancer cells inhibited cell proliferation, migration, and colony formation in vitro and decreased tumor growth in xenograft models. By contrast, knocking down GTP-binding protein Rheb (which is upstream of EIF3D) recapitulated the effects of EIF3D knockdown in vitro, but not in vivo. Collectively, this study represents a comprehensive analysis of NMIBC and MIBC providing a resource for future studies. The results highlight EIF3D as a potential therapeutic target.
Insights
This study reveals key protein changes in bladder cancer invasion, identifying eukaryotic translation initiation factor 3 subunit D (EIF3D) as a promising therapeutic target for advanced disease.
Area of Science:
- Oncology
- Proteomics
- Molecular Biology
Background:
- Advanced bladder cancer presents significant therapeutic challenges.
- Understanding the molecular mechanisms of bladder cancer invasion is crucial for developing new treatments.
Purpose of the Study:
- To characterize proteomic alterations in bladder cancer invasion.
- To identify potential therapeutic targets for muscle-invasive bladder cancer (MIBC).
Main Methods:
- High-resolution liquid chromatography-tandem mass spectrometry (LC-MS/MS) on NMIBC and MIBC tissues.
- Immunohistochemistry validation of differentially expressed proteins.
- Pathway and interactome analysis.
- In vitro and in vivo functional studies of EIF3D and Rheb.
Main Results:
- 144 differentially expressed proteins identified between NMIBC and MIBC.
- Novel proteins like PGRMC1, FUCA1, BROX, and PSMD12 implicated in bladder cancer.
- Activation of protein synthesis pathways (eIF2, mTOR) in MIBC.
- EIF3D knockdown inhibited cancer cell proliferation, migration, and tumor growth.
Conclusions:
- This study provides a comprehensive proteomic resource for bladder cancer research.
- Eukaryotic translation initiation factor 3 subunit D (EIF3D) is a potential therapeutic target for advanced bladder cancer.
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