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Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
Structure-based virtual screening for identification of potential CDC20 inhibitors and their therapeutic evaluation
Amiya Das1, Hitesh Kumar Sharma2, Viney Lather2
1Amity Institute of Molecular Medicine and Stem Cell Research, Amity University Uttar Pradesh, Sector 125, Noida, 201313 India.
Abstract:
Cell division cycle 20 (CDC20), a critical partner of anaphase promoting complex (APC/C), is indispensably required for metaphase-to-anaphase transition. CDC20 overexpression in TNBC breast cancer patients has been found to be correlated with poor prognosis, hence, we aimed to target CDC20 for TNBC therapeutics. In silico molecular docking of large-scale chemical libraries (phytochemicals/synthetic drugs) against CDC20 protein structure identified five synthetic drugs and four phytochemicals as potential hits interacting with CDC20 active site. The molecular selection was done based on docking scores, binding interactions, binding energies and MM/GBSA scores. Further, we analysed ADME profiles for all the hits and identified lidocaine, an aminoamide anaesthetic group of synthetic drug, with high drug-likeness properties. We explored the anti-tumorigenic effects of lidocaine on MDA-MB-231 TNBC breast cancer cells, which resulted in increased growth inhibition in dose-dependent manner. The molecular mechanism behind the cell viability defect mediated by lidocaine was found to be induction of G2/M cell cycle arrest and cellular apoptosis. Notably, lidocaine treatment of TNBC cells also resulted in downregulation of CDC20 gene expression. Thus, this study identifies lidocaine as a potential anti-neoplastic agent for TNBC cells emphasizing CDC20 as a suitable therapeutic target for breast cancer.
Supplementary Information:
The online version contains supplementary material available at 10.1007/s13205-023-03554-7.
Insights
Lidocaine shows potential as a therapeutic agent for triple-negative breast cancer (TNBC) by inhibiting cell growth and downregulating CDC20. This study highlights CDC20 as a viable target for TNBC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Cell division cycle 20 (CDC20) is essential for cell cycle progression and its overexpression correlates with poor prognosis in triple-negative breast cancer (TNBC).
- Targeting CDC20 presents a promising therapeutic strategy for TNBC.
Purpose of the Study:
- To identify potential therapeutic agents targeting CDC20 for TNBC.
- To investigate the anti-tumorigenic effects and molecular mechanisms of lidocaine in TNBC cells.
Main Methods:
- In silico molecular docking of chemical libraries against CDC20.
- ADME profiling of identified drug candidates.
- In vitro anti-cancer assays on MDA-MB-231 TNBC cells.
- Cell cycle analysis and apoptosis assays.
- Quantitative real-time PCR for CDC20 gene expression analysis.
Main Results:
- Molecular docking identified several synthetic drugs and phytochemicals interacting with CDC20; lidocaine exhibited favorable drug-likeness.
- Lidocaine demonstrated dose-dependent inhibition of TNBC cell growth.
- Lidocaine induced G2/M cell cycle arrest and apoptosis in TNBC cells.
- Lidocaine treatment led to the downregulation of CDC20 gene expression.
Conclusions:
- Lidocaine is identified as a potential anti-neoplastic agent for TNBC.
- CDC20 is confirmed as a suitable therapeutic target for breast cancer treatment.
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