Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors

Water networks within kinase inhibitor design and more widely within drug discovery are generally poorly understood. The successful targeting of these networks prospectively has great promise for all facets of inhibitor design, including potency and selectivity for the target. Herein, we describe th...

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Главные авторы: Asquith, CRM, Tizzard, GJ, Bennett, JM, Wells, CI, Elkins, JM, Willson, TM, Poso, A, Laitinen, T
Формат: Journal article
Язык:English
Опубликовано: Wiley 2020
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author Asquith, CRM
Tizzard, GJ
Bennett, JM
Wells, CI
Elkins, JM
Willson, TM
Poso, A
Laitinen, T
author_facet Asquith, CRM
Tizzard, GJ
Bennett, JM
Wells, CI
Elkins, JM
Willson, TM
Poso, A
Laitinen, T
author_sort Asquith, CRM
collection OXFORD
description Water networks within kinase inhibitor design and more widely within drug discovery are generally poorly understood. The successful targeting of these networks prospectively has great promise for all facets of inhibitor design, including potency and selectivity for the target. Herein, we describe the design and testing of a targeted library of 4‐anilinoquin(az)olines for use as inhibitors of cyclin G‐associated kinase (GAK). GAK cellular target engagement assays, ATP binding‐site modelling and extensive water mapping provide a clear route to access potent inhibitors for GAK and beyond.
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spelling oxford-uuid:ca9c935c-18c1-4345-9d95-b4879e8d726a2022-03-27T07:08:40ZTargeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitorsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:ca9c935c-18c1-4345-9d95-b4879e8d726aEnglishSymplectic ElementsWiley2020Asquith, CRMTizzard, GJBennett, JMWells, CIElkins, JMWillson, TMPoso, ALaitinen, TWater networks within kinase inhibitor design and more widely within drug discovery are generally poorly understood. The successful targeting of these networks prospectively has great promise for all facets of inhibitor design, including potency and selectivity for the target. Herein, we describe the design and testing of a targeted library of 4‐anilinoquin(az)olines for use as inhibitors of cyclin G‐associated kinase (GAK). GAK cellular target engagement assays, ATP binding‐site modelling and extensive water mapping provide a clear route to access potent inhibitors for GAK and beyond.
spellingShingle Asquith, CRM
Tizzard, GJ
Bennett, JM
Wells, CI
Elkins, JM
Willson, TM
Poso, A
Laitinen, T
Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors
title Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors
title_full Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors
title_fullStr Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors
title_full_unstemmed Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors
title_short Targeting the water network in cyclin G-associated kinase (GAK) with 4-anilino-quin(az)oline inhibitors
title_sort targeting the water network in cyclin g associated kinase gak with 4 anilino quin az oline inhibitors
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