A covalent fragment-based approach was used to develop IDH1-C269 selective inhibitors which prevent the key regulatory segment from forming an α-helix required for catalytic competency, and provide structurally validated inhibitors for further development.
Abstract
Isocitrate dehydrogenase 1 (IDH1) catalyses the interconversion of isocitrate and α-ketoglutarate and is overexpressed in several cancers, supporting tumour survival and treatment resistance. Inhibitors targeting the oncogenic mutant forms of IDH1 also inhibit the wild-type (WT) protein, but lose substantial potency due to greater competition with native substrates (isocitrate and Mg2+). We hypothesised that a covalent inhibitor may be more effective at overcoming the higher substrate affinity of wild-type IDH1. Here, a covalent fragment-based approach was used to develop IDH1-C269 selective inhibitors which prevent the key regulatory segment from forming an α-helix required for catalytic competency. Following the identification of C269-selective fragments, we used X-ray crystallography to characterise IDH1-fragment bound complexes and guide structure-based design efforts. Inspired by the unexpected detection of bound isocitrate molecule in an X-ray crystal structure, fragment expansion yielded a series of compounds exploiting both an adjacent site and a unique water-mediated hydrogen bonding network. This series achieved strong potency (reaching IC50 = 47.5 nM, a 155-fold improvement in potency relative to the original fragment), retained activity in the presence of competing Mg2+, showed selectivity against IDH2 and reduced NADPH concentrations in a relevant PDAC cell model. Together, these findings present a mechanistic rationale for the covalent targeting of wild-type IDH1 and provide structurally validated inhibitors for further development. Graphical Abstract
Isocitrate dehydrogenase (IDH) enzymes convert isocitrate to α-ketoglutarate. When IDH1 or IDH2 is mutated, the enzyme gains a new function, and the oncometabolite D-2-hydroxyglutarate (D-2-HG) accumulates. Its epigenetic and metabolic effects depend on the tumor context. This review classifies mutant IDH inhibitors by...
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