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Identification of Kinase-substrate Pairs Using High Throughput Screening
Published on: August 29, 2015
The Substrate-Activity-Screening methodology applied to receptor tyrosine kinases: a proof-of-concept study
Julien Chapelat1, Frédéric Berst, Andreas L Marzinzik
1Novartis Institutes for BioMedical Research, Novartis Campus, CH-4002 Basel, Switzerland.
Abstract:
Protein kinases are widely recognized as important therapeutic targets due to their involvement in signal transduction pathways. These pathways are tightly controlled and regulated, notably by the ability of kinases to selectively phosphorylate a defined set of substrates. A wide variety of disorders can arise as a consequence of abnormal kinase-mediated phosphorylation and numerous kinase inhibitors have earned their place as key components of the modern pharmacopeia. Although "traditional" kinase inhibitors typically act by preventing the interaction between the kinase and ATP, thus stopping substrate phosphorylation, an alternative approach consists in disrupting the protein-protein interaction between the kinase and its downstream partners. In order to facilitate the identification of potential chemical starting points for substrate-site inhibition approaches, we desired to investigate the application of Substrate Activity Screening to kinases. We herein report a proof-of-concept study demonstrating, on a model tyrosine kinase, that the key requirements of this methodology can be met. Namely, using peptides as model substrates, we show that a simple ADP-accumulation assay can be used to monitor substrate efficiency and that efficiency can be optimized in a modular manner. More importantly, we demonstrate that structure-efficiency relationships translate into structure-activity relationships upon conversion of the substrates into inhibitors.
Insights
This study introduces Substrate Activity Screening for kinases, a novel method to develop inhibitors targeting protein-protein interactions. It enables modular optimization of substrate efficiency, leading to effective kinase inhibitors.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Protein kinases regulate cellular signaling through phosphorylation.
- Dysregulated kinase activity is implicated in various diseases.
- Kinase inhibitors are crucial therapeutics, traditionally targeting ATP binding.
Purpose of the Study:
- To explore Substrate Activity Screening for kinase inhibitor discovery.
- To demonstrate a proof-of-concept for substrate-site inhibition approaches.
- To identify chemical starting points for novel kinase inhibitors.
Main Methods:
- Utilized peptides as model substrates for a tyrosine kinase.
- Employed an ADP-accumulation assay to monitor substrate efficiency.
- Investigated modular optimization of substrate efficiency.
Main Results:
- Demonstrated the feasibility of Substrate Activity Screening for kinases.
- Showed that substrate efficiency can be modularly optimized.
- Established a link between structure-efficiency and structure-activity relationships for inhibitors.
Conclusions:
- Substrate Activity Screening is a viable method for kinase research.
- This approach facilitates the development of inhibitors targeting kinase-protein interactions.
- The study provides a foundation for designing novel kinase-targeted therapies.

