Structure-Guided Design of Highly Selective and Potent Covalent Inhibitors of ERK1/2

Richard A. Ward(AstraZeneca (United Kingdom)), Nicola Colclough(AstraZeneca (United Kingdom)), Mairi Challinor(AstraZeneca (United Kingdom)), J.E. Debreczeni(AstraZeneca (United Kingdom)), Kay Eckersley(AstraZeneca (United Kingdom)), Gary Fairley(AstraZeneca (United Kingdom)), Lyman J. Feron(AstraZeneca (United Kingdom)), Vikki Flemington(AstraZeneca (United Kingdom)), M. A. Graham(AstraZeneca (United Kingdom)), Ryan Greenwood(AstraZeneca (United Kingdom)), Philip Hopcroft(AstraZeneca (United Kingdom)), Tina Howard(AstraZeneca (United Kingdom)), Michael J. James(AstraZeneca (United Kingdom)), Clifford D. Jones(AstraZeneca (United Kingdom)), Christopher R. Jones(AstraZeneca (United Kingdom)), Jonathan Renshaw(AstraZeneca (United Kingdom)), Karen Roberts(AstraZeneca (United Kingdom)), Lindsay Snow(AstraZeneca (United Kingdom)), Michael Tonge(AstraZeneca (United Kingdom)), Kay T. Yeung(AstraZeneca (United Kingdom))
Journal of Medicinal Chemistry
May 15, 2015
Cited by 105Open Access
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Abstract

The RAS/RAF/MEK/ERK signaling pathway has been targeted with a number of small molecule inhibitors in oncology clinical development across multiple disease indications. Importantly, cell lines with acquired resistance to B-RAF and MEK inhibitors have been shown to maintain sensitivity to ERK1/2 inhibition by small molecule inhibitors. There are a number of selective, noncovalent ERK1/2 inhibitors reported along with the promiscuous hypothemycin (and related analogues) that act via a covalent mechanism of action. This article reports the identification of multiple series of highly selective covalent ERK1/2 inhibitors informed by structure-based drug design (SBDD). As a starting point for these covalent inhibitors, reported ERK1/2 inhibitors and a chemical series identified via high-throughput screening were exploited. These approaches resulted in the identification of selective covalent tool compounds for potential in vitro and in vivo studies to assess the risks and or benefits of targeting this pathway through such a mechanism of action.


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