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Structure-guided discovery of cyclin-dependent kinase inhibitors

✍ Scribed by Thierry O. Fischmann; Alan Hruza; José S. Duca; Lata Ramanathan; Todd Mayhood; William T. Windsor; Hung V. Le; Timothy J. Guzi; Michael P. Dwyer; Kamil Paruch; Ronald J. Doll; Emma Lees; David Parry; Wolfgang Seghezzi; Vincent Madison


Publisher
Wiley (John Wiley & Sons)
Year
2008
Tongue
English
Weight
380 KB
Volume
89
Category
Article
ISSN
0006-3525

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✦ Synopsis


Abstract

CDK2 inhibitors containing the related bicyclic heterocycles pyrazolopyrimidines and imidazopyrazines were discovered through high‐throughput screening. Crystal structures of inhibitors with these bicyclic cores and two more related ones show that all but one have a common binding mode featuring two hydrogen bonds (H‐bonds) to the backbone of the kinase hinge region. Even though ab initio computations indicated that the imidazopyrazine core would bind more tightly to the hinge, pyrazolopyrimidines gain an advantage in potency through participation of N4 in an H‐bond network involving two catalytic residues and bridging water molecules. Further insight into inhibitor/CDK2 interactions was gained from analysis of additional crystal structures. Significant gains in potency were obtained by optimizing the fit of hydrophobic substituents to the gatekeeper region of the ATP binding site. The most potent inhibitors have good selectivity. © 2007 Wiley Periodicals, Inc. Biopolymers 89: 372–379, 2008.

This article was originally published online as an accepted preprint. The “Published Online” date corresponds to the preprint version. You can request a copy of the preprint by emailing the Biopolymers editorial office at [email protected]


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