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Updated: Mar 31, 2026

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
In silico identification of putative bifunctional Plk1 inhibitors by integrative virtual screening and structural
Shagufta Shafique1, Nousheen Bibi1, Sajid Rashid1
1National Center for Bioinformatics, Faculty of Biological Sciences, Quaid-i-Azam University Islamabad, Pakistan.
Abstract:
Polo like kinase (Plk1) is a master regulator of cell cycle and considered as next generation antimitotic target in human. As Plk1 predominantly expresses in the dividing cells with a much higher expression in cancerous cells, it serves as a discriminative target for cancer therapeutics. Here we implied a novel and promising integrative strategy to identify "bifunctional" Plk1 inhibitors that compete simultaneously with ATP and substrate for their binding sites. We integrated structure-based virtual screening (SBVS) and molecular dynamics simulations with emphasis on unique structural properties of Plk1. Through screening of 20,000 compounds, nearly ~2000 hits were enriched and subjected to SBVS against ATP and substrate binding sites of Plk1. Subsequently, on the basis of their binding abilities to Plk1 kinase and polo box domains, filtration of candidate hits resulted in the isolation of 26 compounds. By exclusion of close analogs or isomers, 10 unique compounds were selected for detailed study. A representative compound was subjected to molecular dynamics simulation assay to have deep structural insights and to gauge critical structural crunch for inhibitor binding against kinase and polo box domains. Our integrative approach may complement high-throughput screening and identify bifunctional Plk1 inhibitors that may contribute in selective targeting of Plk1 to elicit desired biological process.
Insights
Researchers identified novel bifunctional Polo-like kinase 1 (Plk1) inhibitors using an integrated computational strategy. These inhibitors target both ATP and substrate binding sites, offering a promising approach for selective cancer therapeutics.
Area of Science:
- Biochemistry
- Molecular Biology
- Medicinal Chemistry
Background:
- Polo-like kinase 1 (Plk1) is a critical cell cycle regulator.
- Plk1 is overexpressed in many cancers, making it a promising therapeutic target.
- Targeting Plk1 aims to develop novel antimitotic cancer drugs.
Purpose of the Study:
- To develop a novel integrative strategy for identifying bifunctional Plk1 inhibitors.
- To discover compounds that simultaneously bind to Plk1's ATP and substrate sites.
- To explore unique structural properties of Plk1 for inhibitor design.
Main Methods:
- Structure-based virtual screening (SBVS) of 20,000 compounds.
- Molecular dynamics simulations to analyze inhibitor binding.
- Filtration based on binding affinity to Plk1 kinase and polo box domains.
Main Results:
- Approximately 2000 initial hits were identified from virtual screening.
- 26 compounds were isolated based on binding abilities.
- 10 unique compounds were selected for further detailed study.
- A representative compound underwent molecular dynamics simulation for structural insights.
Conclusions:
- The integrative approach successfully identified potential bifunctional Plk1 inhibitors.
- These inhibitors show promise for selective Plk1 targeting in cancer therapy.
- This strategy complements high-throughput screening for drug discovery.
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