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Identification of Inhibitors of Tubulin Polymerization Using a CRISPR-Edited Cell Line with Endogenous Fluorescent
Harutyun Khachatryan1, Bartlomiej Olszowy1, Carlos A Barrero1
1Department of Pharmaceutical Sciences, Moulder Center for Drug Discovery, School of Pharmacy, Temple University, Philadelphia, PA 19140, USA.
Abstract:
Tubulin is a protein that plays a critical role in maintaining cellular structure and facilitating cell division. Inhibiting tubulin polymerization has been shown to be an effective strategy for inhibiting the proliferation of cancer cells. In the past, identifying compounds that could inhibit tubulin polymerization has required the use of in vitro assays utilizing purified tubulin or immunofluorescence of fixed cells. This study presents a novel approach for identifying tubulin polymerization inhibitors using a CRISPR-edited cell line that expresses fluorescently tagged β-tubulin and a nuclear protein, enabling the visualization of tubulin polymerization dynamics via high-content imaging analysis (HCI). The cells were treated with known tubulin polymerization inhibitors, colchicine, and vincristine, and the resulting phenotypic changes indicative of tubulin polymerization inhibition were confirmed using HCI. Furthermore, a library of 429 kinase inhibitors was screened, resulting in the identification of three compounds (ON-01910, HMN-214, and KX2-391) that inhibit tubulin polymerization. Live cell tracking analysis confirmed that compound treatment leads to rapid tubulin depolymerization. These findings suggest that CRISPR-edited cells with fluorescently tagged endogenous β-tubulin can be utilized to screen large compound libraries containing diverse chemical families for the identification of novel tubulin polymerization inhibitors.
Insights
Researchers developed a new method using CRISPR-edited cells to find tubulin polymerization inhibitors. This approach efficiently identifies potential cancer drugs by visualizing tubulin dynamics in live cells.
Area of Science:
- Cell Biology
- Biochemistry
- Drug Discovery
Background:
- Tubulin is crucial for cell structure and division.
- Inhibiting tubulin polymerization is a strategy against cancer.
- Traditional methods for identifying inhibitors are limited.
Purpose of the Study:
- To develop a novel, high-content imaging-based method for identifying tubulin polymerization inhibitors.
- To screen a kinase inhibitor library for novel compounds targeting tubulin.
Main Methods:
- Utilized CRISPR-edited cells expressing fluorescently tagged β-tubulin and a nuclear protein.
- Employed high-content imaging analysis (HCI) for visualizing tubulin dynamics.
- Screened a library of 429 kinase inhibitors.
Main Results:
- Validated the HCI method with known inhibitors (colchicine, vincristine).
- Identified three novel tubulin polymerization inhibitors: ON-01910, HMN-214, and KX2-391.
- Confirmed rapid tubulin depolymerization upon compound treatment via live cell tracking.
Conclusions:
- CRISPR-edited cells with fluorescently tagged tubulin offer an efficient platform for inhibitor screening.
- This method facilitates the discovery of novel tubulin polymerization inhibitors from diverse compound libraries.
- The identified compounds represent potential leads for developing new anti-cancer therapeutics.
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