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Application of a Substrate-Mediated Selection with c-Src Tyrosine Kinase to a DNA-Encoded Chemical Library. | LitMetric

Application of a Substrate-Mediated Selection with c-Src Tyrosine Kinase to a DNA-Encoded Chemical Library.

Molecules

Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University Center for Cancer Research, Purdue University, West Lafayette, IN 47907, USA.

Published: July 2019

AI Article Synopsis

  • Protein kinases are targeted in many diseases, leading to the development of non-natural substrates for more effective inhibitors and improved detection methods.
  • A substrate-mediated selection process was used on a DNA-encoded chemical library to identify molecules that can be phosphorylated by the c-Src kinase, resulting in several promising substrates.
  • One lead compound not only acted as a substrate but also enhanced ATP hydrolysis and showed the ability to inhibit Src-dependent signaling in cell cultures, highlighting the potential of this method for discovering new synthetic kinase substrates.

Article Abstract

As aberrant activity of protein kinases is observed in many disease states, these enzymes are common targets for therapeutics and detection of activity levels. The development of non-natural protein kinase substrates offers an approach to protein substrate competitive inhibitors, a class of kinase inhibitors with promise for improved specificity. Also, kinase activity detection approaches would benefit from substrates with improved activity and specificity. Here, we apply a substrate-mediated selection to a peptidomimetic DNA-encoded chemical library for enrichment of molecules that can be phosphorylated by the protein tyrosine kinase, c-Src. Several substrates were identified and characterized for activity. A lead compound () showed both the ability to serve as a substrate and to promote ATP hydrolysis by the kinase. In inhibition assays, compounds displayed ICs ranging from of 8-100 µM. NMR analysis of bound to the c-Src:ATP complex was conducted to characterize the binding mode. An ester derivative of the lead compound demonstrated cellular activity with inhibition of Src-dependent signaling in cell culture. Together, the results show the potential for substrate-mediated selections of DNA-encoded libraries to discover molecules with functions other than simple protein binding and offer a new discovery method for development of synthetic tyrosine kinase substrates.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695731PMC
http://dx.doi.org/10.3390/molecules24152764DOI Listing

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