Mutations in MDH2, Encoding a Krebs Cycle Enzyme, Cause Early-Onset Severe Encephalopathy

MDH2 encodes mitochondrial malate dehydrogenase (MDH), which is essential for the conversion of malate to oxaloacetate as part of the proper functioning of the Krebs cycle. We report bi-allelic pathogenic mutations in MDH2 in three unrelated subjects presenting with early-onset generalized hypotonia...

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Published inAmerican journal of human genetics Vol. 100; no. 1; pp. 151 - 159
Main Authors Ait-El-Mkadem, Samira, Dayem-Quere, Manal, Gusic, Mirjana, Chaussenot, Annabelle, Bannwarth, Sylvie, François, Bérengère, Genin, Emmanuelle C., Fragaki, Konstantina, Volker-Touw, Catharina L.M., Vasnier, Christelle, Serre, Valérie, van Gassen, Koen L.I., Lespinasse, Françoise, Richter, Susan, Eisenhofer, Graeme, Rouzier, Cécile, Mochel, Fanny, De Saint-Martin, Anne, Abi Warde, Marie-Thérèse, de Sain-van der Velde, Monique G.M., Jans, Judith J.M., Amiel, Jeanne, Avsec, Ziga, Mertes, Christian, Haack, Tobias B., Strom, Tim, Meitinger, Thomas, Bonnen, Penelope E., Taylor, Robert W., Gagneur, Julien, van Hasselt, Peter M., Rötig, Agnès, Delahodde, Agnès, Prokisch, Holger, Fuchs, Sabine A., Paquis-Flucklinger, Véronique
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 05.01.2017
Cell Press
Elsevier (Cell Press)
Elsevier
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Summary:MDH2 encodes mitochondrial malate dehydrogenase (MDH), which is essential for the conversion of malate to oxaloacetate as part of the proper functioning of the Krebs cycle. We report bi-allelic pathogenic mutations in MDH2 in three unrelated subjects presenting with early-onset generalized hypotonia, psychomotor delay, refractory epilepsy, and elevated lactate in the blood and cerebrospinal fluid. Functional studies in fibroblasts from affected subjects showed both an apparently complete loss of MDH2 levels and MDH2 enzymatic activity close to null. Metabolomics analyses demonstrated a significant concomitant accumulation of the MDH substrate, malate, and fumarate, its immediate precursor in the Krebs cycle, in affected subjects’ fibroblasts. Lentiviral complementation with wild-type MDH2 cDNA restored MDH2 levels and mitochondrial MDH activity. Additionally, introduction of the three missense mutations from the affected subjects into Saccharomyces cerevisiae provided functional evidence to support their pathogenicity. Disruption of the Krebs cycle is a hallmark of cancer, and MDH2 has been recently identified as a novel pheochromocytoma and paraganglioma susceptibility gene. We show that loss-of-function mutations in MDH2 are also associated with severe neurological clinical presentations in children.
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PMCID: PMC5223029
These authors contributed equally to this work
ISSN:0002-9297
1537-6605
DOI:10.1016/j.ajhg.2016.11.014