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Utilization of the Soft Agar Colony Formation Assay to Identify Inhibitors of Tumorigenicity in Breast Cancer Cells
Published on: May 20, 2015
Discovery of small molecule inhibitors that effectively disrupt IQGAP1-Cdc42 interaction in breast cancer cells
Samar Sayedyahossein1,2, Jessica Smith1,3, Elena Barnaeva4
1Department of Laboratory Medicine, National Institutes of Health, Bethesda, MD, 20892, USA.
Abstract:
The small GTPase Cdc42 is an integral component of the cytoskeleton, and its dysregulation leads to pathophysiological conditions, such as cancer. Binding of Cdc42 to the scaffold protein IQGAP1 stabilizes Cdc42 in its active form. The interaction between Cdc42 and IQGAP1 enhances migration and invasion of cancer cells. Disrupting this association could impair neoplastic progression and metastasis; however, no effective means to achieve this has been described. Here, we screened 78,500 compounds using a homogeneous time resolved fluorescence-based assay to identify small molecules that disrupt the binding of Cdc42 to IQGAP1. From the combined results of the validation assay and counter-screens, we selected 44 potent compounds for cell-based experiments. Immunoprecipitation and cell viability analysis rendered four lead compounds, namely NCGC00131308, NCGC00098561, MLS000332963 and NCGC00138812, three of which inhibited proliferation and migration of breast carcinoma cells. Microscale thermophoresis revealed that two compounds bind directly to Cdc42. One compound reduced the amount of active Cdc42 in cells and effectively impaired filopodia formation. Docking analysis provided plausible models of the compounds binding to the hydrophobic pocket adjacent to the GTP binding site of Cdc42. In conclusion, we identified small molecules that inhibit binding between Cdc42 and IQGAP1, which could potentially yield chemotherapeutic agents.
Insights
Researchers identified small molecules that disrupt the interaction between Cdc42 and IQGAP1, a key factor in cancer progression. These compounds show potential for developing new cancer therapies by inhibiting cell proliferation and migration.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- The small GTPase Cdc42 is crucial for cytoskeleton regulation, and its aberrant activity is linked to cancer development.
- Cdc42's active state is stabilized by binding to the scaffold protein IQGAP1, promoting cancer cell migration and invasion.
Purpose of the Study:
- To identify small molecules capable of disrupting the Cdc42-IQGAP1 interaction.
- To evaluate the potential of these molecules as therapeutic agents against cancer metastasis.
Main Methods:
- High-throughput screening of 78,500 compounds using a homogeneous time-resolved fluorescence assay.
- Validation assays, counter-screens, immunoprecipitation, cell viability analysis, and microscale thermophoresis.
- Computational docking analysis to model compound binding to Cdc42.
Main Results:
- Identified 44 potent compounds that disrupt Cdc42-IQGAP1 binding.
- Four lead compounds were selected, with three inhibiting breast carcinoma cell proliferation and migration.
- Two compounds demonstrated direct binding to Cdc42; one reduced active Cdc42 and impaired filopodia formation.
Conclusions:
- Small molecules targeting the Cdc42-IQGAP1 interaction were successfully identified.
- These compounds represent promising candidates for the development of novel chemotherapeutic agents to combat cancer progression and metastasis.
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