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Amide Coupling Reaction for the Synthesis of Bispyridine-based Ligands and Their Complexation to Platinum as Dinuclear Anticancer Agents
Published on: May 28, 2014
Cisplatin Protein Binding Partners and Their Relevance for Platinum Drug Sensitivity
Sophie Möltgen1, Eleonora Piumatti1, Giuseppe M Massafra1
1Department of Clinical Pharmacy, Institute of Pharmacy, University of Bonn, 53113 Bonn, Germany.
Abstract:
Cisplatin is a widely used drug in the treatment of various solid tumors, such as ovarian cancer. However, while the acquired resistance significantly limits the success of therapy, some tumors, such as colorectal cancer, are intrinsically insensitive to cisplatin. Only a small amount of intracellular platinum binds to the target-genomic DNA. The fate of the remaining drug is largely obscure. This work aimed to identify the cytosolic protein binding partners of cisplatin in ovarian and colorectal cancer cells and to evaluate their relevance for cell sensitivity to cisplatin and oxaliplatin. Using the fluorescent cisplatin analog BODIPY-cisplatin, two-dimensional gel electrophoresis, and mass spectrometry, we identified the protein binding partners in A2780 and cisplatin-resistant A2780cis ovarian carcinoma, as well as in HCT-8 and oxaliplatin-resistant HCT-8ox colorectal cell lines. Vimentin, only identified in ovarian cancer cells; growth factor receptor-bound protein 2, only identified in colorectal cancer cells; and glutathione-S-transferase π, identified in all four cell lines, were further investigated. The effect of pharmacological inhibition and siRNA-mediated knockdown on cytotoxicity was studied to assess the relevance of these binding partners. The silencing of glutathione-S-transferase π significantly sensitized intrinsically resistant HCT-8 and HCT-8ox cells to cisplatin, suggesting a possible involvement of the protein in the resistance of colorectal cancer cells to the drug. The inhibition of vimentin with FiVe1 resulted in a significant sensitization of A2780 and A2780cis cells to cisplatin, revealing new possibilities for improving the chemosensitivity of ovarian cancer cells.
Insights
Researchers identified key proteins that bind to cisplatin in ovarian and colorectal cancer cells. Targeting glutathione-S-transferase π and vimentin may improve chemotherapy effectiveness for cisplatin-resistant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cisplatin is a vital chemotherapy drug for solid tumors, but intrinsic or acquired resistance limits its efficacy.
- The intracellular fate and binding partners of cisplatin beyond genomic DNA are not fully understood.
- Understanding these interactions is crucial for overcoming treatment resistance.
Purpose of the Study:
- To identify cytosolic protein binding partners of cisplatin in ovarian and colorectal cancer cells.
- To evaluate the role of these binding partners in cellular sensitivity to cisplatin and oxaliplatin.
- To explore novel therapeutic strategies for overcoming cisplatin resistance.
Main Methods:
- Utilized a fluorescent cisplatin analog (BODIPY-cisplatin) for detection.
- Employed two-dimensional gel electrophoresis and mass spectrometry to identify protein binding partners.
- Investigated the functional relevance through pharmacological inhibition and siRNA-mediated knockdown of identified proteins.
Main Results:
- Identified specific protein binding partners including vimentin (ovarian cancer), growth factor receptor-bound protein 2 (colorectal cancer), and glutathione-S-transferase π (both).
- Silencing glutathione-S-transferase π sensitized intrinsically resistant colorectal cancer cells to cisplatin.
- Inhibiting vimentin sensitized ovarian cancer cells to cisplatin.
Conclusions:
- Glutathione-S-transferase π is implicated in colorectal cancer cell resistance to cisplatin.
- Vimentin is a potential therapeutic target for enhancing chemosensitivity in ovarian cancer.
- These findings offer new avenues for improving cisplatin-based cancer therapies.
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