Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1

Cancer linked isocitrate dehydrogenase (IDH) 1 variants, notably R132H IDH1, manifest a ‘gain-of-function’ to reduce 2-oxoglutarate to 2-hydroxyglutarate. High-throughput screens have enabled clinically useful R132H IDH1 inhibitors, mostly allosteric binders at the dimer interface. We report investi...

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Main Authors: Liu, S, Abboud, MI, John, T, Mikhailov, V, Hvinden, I, Walsby-Tickle, J, Schofield, CJ, Liu, X, Pettinati, I, Cadoux-Hudson, T, McCullagh, JSO
Format: Journal article
Language:English
Published: Springer Nature 2021
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author Liu, S
Abboud, MI
John, T
Mikhailov, V
Hvinden, I
Walsby-Tickle, J
Schofield, CJ
Liu, X
Pettinati, I
Cadoux-Hudson, T
McCullagh, JSO
author_facet Liu, S
Abboud, MI
John, T
Mikhailov, V
Hvinden, I
Walsby-Tickle, J
Schofield, CJ
Liu, X
Pettinati, I
Cadoux-Hudson, T
McCullagh, JSO
author_sort Liu, S
collection OXFORD
description Cancer linked isocitrate dehydrogenase (IDH) 1 variants, notably R132H IDH1, manifest a ‘gain-of-function’ to reduce 2-oxoglutarate to 2-hydroxyglutarate. High-throughput screens have enabled clinically useful R132H IDH1 inhibitors, mostly allosteric binders at the dimer interface. We report investigations on roles of divalent metal ions in IDH substrate and inhibitor binding that rationalise this observation. Mg2+/Mn2+ ions enhance substrate binding to wt IDH1 and R132H IDH1, but with the former manifesting lower Mg2+/Mn2+ KMs. The isocitrate-Mg2+ complex is the preferred wt IDH1 substrate; with R132H IDH1, separate and weaker binding of 2-oxoglutarate and Mg2+ is preferred. Binding of R132H IDH1 inhibitors at the dimer interface weakens binding of active site Mg2+ complexes; their potency is affected by the Mg2+ concentration. Inhibitor selectivity for R132H IDH1 over wt IDH1 substantially arises from different stabilities of wt and R132H IDH1 substrate-Mg2+ complexes. The results reveal the importance of substrate-metal ion complexes in wt and R132H IDH1 catalysis and the basis for selective R132H IDH1 inhibition. Further studies on roles of metal ion complexes in TCA cycle and related metabolism, including from an evolutionary perspective, are of interest.
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spelling oxford-uuid:b02fb207-6a68-43e9-9aa8-9aaa8a4f1ce72022-03-27T03:54:48ZRoles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:b02fb207-6a68-43e9-9aa8-9aaa8a4f1ce7EnglishSymplectic ElementsSpringer Nature2021Liu, SAbboud, MIJohn, TMikhailov, VHvinden, IWalsby-Tickle, JSchofield, CJLiu, XPettinati, ICadoux-Hudson, TMcCullagh, JSOCancer linked isocitrate dehydrogenase (IDH) 1 variants, notably R132H IDH1, manifest a ‘gain-of-function’ to reduce 2-oxoglutarate to 2-hydroxyglutarate. High-throughput screens have enabled clinically useful R132H IDH1 inhibitors, mostly allosteric binders at the dimer interface. We report investigations on roles of divalent metal ions in IDH substrate and inhibitor binding that rationalise this observation. Mg2+/Mn2+ ions enhance substrate binding to wt IDH1 and R132H IDH1, but with the former manifesting lower Mg2+/Mn2+ KMs. The isocitrate-Mg2+ complex is the preferred wt IDH1 substrate; with R132H IDH1, separate and weaker binding of 2-oxoglutarate and Mg2+ is preferred. Binding of R132H IDH1 inhibitors at the dimer interface weakens binding of active site Mg2+ complexes; their potency is affected by the Mg2+ concentration. Inhibitor selectivity for R132H IDH1 over wt IDH1 substantially arises from different stabilities of wt and R132H IDH1 substrate-Mg2+ complexes. The results reveal the importance of substrate-metal ion complexes in wt and R132H IDH1 catalysis and the basis for selective R132H IDH1 inhibition. Further studies on roles of metal ion complexes in TCA cycle and related metabolism, including from an evolutionary perspective, are of interest.
spellingShingle Liu, S
Abboud, MI
John, T
Mikhailov, V
Hvinden, I
Walsby-Tickle, J
Schofield, CJ
Liu, X
Pettinati, I
Cadoux-Hudson, T
McCullagh, JSO
Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
title Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
title_full Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
title_fullStr Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
title_full_unstemmed Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
title_short Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
title_sort roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1
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