Literature DB >> 24106839

Conformation-selective inhibitors reveal differences in the activation and phosphate-binding loops of the tyrosine kinases Abl and Src.

Sanjay B Hari1, B Gayani K Perera, Pratistha Ranjitkar, Markus A Seeliger, Dustin J Maly.   

Abstract

Over the past decade, an increasingly diverse array of potent and selective inhibitors that target the ATP-binding sites of protein kinases have been developed. Many of these inhibitors, like the clinically approved drug imatinib (Gleevec), stabilize a specific catalytically inactive ATP-binding site conformation of their kinases targets. Imatinib is notable in that it is highly selective for its kinase target, Abl, over other closely related tyrosine kinases, such as Src. In addition, imatinib is highly sensitive to the phosphorylation state of Abl's activation loop, which is believed to be a general characteristic of all inhibitors that stabilize a similar inactive ATP-binding site conformation. In this report, we perform a systematic analysis of a diverse series of ATP-competitive inhibitors that stabilize a similar inactive ATP-binding site conformation as imatinib with the tyrosine kinases Src and Abl. In contrast to imatinib, many of these inhibitors have very similar potencies against Src and Abl. Furthermore, only a subset of this class of inhibitors is sensitive to the phosphorylation state of the activation loop of these kinases. In attempting to explain this observation, we have uncovered an unexpected correlation between Abl's activation loop and another flexible active site feature, called the phosphate-binding loop (p-loop). These studies shed light on how imatinib is able to obtain its high target selectivity and reveal how the conformational preference of flexible active site regions can vary between closely related kinases.

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Year:  2013        PMID: 24106839      PMCID: PMC3880807          DOI: 10.1021/cb400663k

Source DB:  PubMed          Journal:  ACS Chem Biol        ISSN: 1554-8929            Impact factor:   5.100


  45 in total

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Journal:  Bioorg Med Chem Lett       Date:  2000-09-18       Impact factor: 2.823

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  12 in total

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3.  Conformation-Selective Analogues of Dasatinib Reveal Insight into Kinase Inhibitor Binding and Selectivity.

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Journal:  ACS Chem Biol       Date:  2016-03-01       Impact factor: 5.100

4.  A Chemical Probe for Dark Kinase STK17B Derives Its Potency and High Selectivity through a Unique P-Loop Conformation.

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5.  Structural and Functional Analysis of the Allosteric Inhibition of IRE1α with ATP-Competitive Ligands.

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6.  What Makes a Kinase Promiscuous for Inhibitors?

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7.  Molecular Determinants Underlying Binding Specificities of the ABL Kinase Inhibitors: Combining Alanine Scanning of Binding Hot Spots with Network Analysis of Residue Interactions and Coevolution.

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8.  Survey of solution dynamics in Src kinase reveals allosteric cross talk between the ligand binding and regulatory sites.

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9.  Structural characterization of human Vaccinia-Related Kinases (VRK) bound to small-molecule inhibitors identifies different P-loop conformations.

Authors:  Rafael M Couñago; Charles K Allerston; Pavel Savitsky; Hatylas Azevedo; Paulo H Godoi; Carrow I Wells; Alessandra Mascarello; Fernando H de Souza Gama; Katlin B Massirer; William J Zuercher; Cristiano R W Guimarães; Opher Gileadi
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10.  A unique inhibitor binding site in ERK1/2 is associated with slow binding kinetics.

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