Cancer-associated mutation and beyond: The emerging biology of isocitrate dehydrogenases in human disease.

Tommasini-Ghelfi, Serena; Murnan, Kevin; Kouri, Fotini M; Mahajan, Akanksha S; May, Jasmine L; Stegh, Alexander H · Sci Adv · 2019

review · Level V

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Abstract

Isocitrate dehydrogenases (IDHs) are critical metabolic enzymes that catalyze the oxidative decarboxylation of isocitrate to α-ketoglutarate (αKG), NAD(P)H, and CO<sub>2</sub>. IDHs epigenetically control gene expression through effects on αKG-dependent dioxygenases, maintain redox balance and promote anaplerosis by providing cells with NADPH and precursor substrates for macromolecular synthesis, and regulate respiration and energy production through generation of NADH. Cancer-associated mutations in <i>IDH1</i> and <i>IDH2</i> represent one of the most comprehensively studied mechanisms of IDH pathogenic effect. Mutant enzymes produce (<i>R</i>)-2-hydroxyglutarate, which in turn inhibits αKG-dependent dioxygenase function, resulting in a global hypermethylation phenotype, increased tumor cell multipotency, and malignancy. Recent studies identified wild-type IDHs as critical regulators of normal organ physiology and, when transcriptionally induced or down-regulated, as contributing to cancer and neurodegeneration, respectively. We describe how mutant and wild-type enzymes contribute on molecular levels to disease pathogenesis, and discuss efforts to pharmacologically target IDH-controlled metabolic rewiring.

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