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Ketogenic Diet Treatment of Defects in the Mitochondrial Malate Aspartate Shuttle and Pyruvate Carrier.


ABSTRACT: The mitochondrial malate aspartate shuttle system (MAS) maintains the cytosolic NAD+/NADH redox balance, thereby sustaining cytosolic redox-dependent pathways, such as glycolysis and serine biosynthesis. Human disease has been associated with defects in four MAS-proteins (encoded by MDH1, MDH2, GOT2, SLC25A12) sharing a neurological/epileptic phenotype, as well as citrin deficiency (SLC25A13) with a complex hepatopathic-neuropsychiatric phenotype. Ketogenic diets (KD) are high-fat/low-carbohydrate diets, which decrease glycolysis thus bypassing the mentioned defects. The same holds for mitochondrial pyruvate carrier (MPC) 1 deficiency, which also presents neurological deficits. We here describe 40 (18 previously unreported) subjects with MAS-/MPC1-defects (32 neurological phenotypes, eight citrin deficiency), describe and discuss their phenotypes and genotypes (presenting 12 novel variants), and the efficacy of KD. Of 13 MAS/MPC1-individuals with a neurological phenotype treated with KD, 11 experienced benefits-mainly a striking effect against seizures. Two individuals with citrin deficiency deceased before the correct diagnosis was established, presumably due to high-carbohydrate treatment. Six citrin-deficient individuals received a carbohydrate-restricted/fat-enriched diet and showed normalisation of laboratory values/hepatopathy as well as age-adequate thriving. We conclude that patients with MAS-/MPC1-defects are amenable to dietary intervention and that early (genetic) diagnosis is key for initiation of proper treatment and can even be lifesaving.

SUBMITTER: Bolsterli BK 

PROVIDER: S-EPMC9460686 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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Ketogenic Diet Treatment of Defects in the Mitochondrial Malate Aspartate Shuttle and Pyruvate Carrier.

Bölsterli Bigna K BK   Boltshauser Eugen E   Palmieri Luigi L   Spenger Johannes J   Brunner-Krainz Michaela M   Distelmaier Felix F   Freisinger Peter P   Geis Tobias T   Gropman Andrea L AL   Häberle Johannes J   Hentschel Julia J   Jeandidier Bruno B   Karall Daniela D   Keren Boris B   Klabunde-Cherwon Annick A   Konstantopoulou Vassiliki V   Kottke Raimund R   Lasorsa Francesco M FM   Makowski Christine C   Mignot Cyril C   O'Gorman Tuura Ruth R   Porcelli Vito V   Santer René R   Sen Kuntal K   Steinbrücker Katja K   Syrbe Steffen S   Wagner Matias M   Ziegler Andreas A   Zöggeler Thomas T   Mayr Johannes A JA   Prokisch Holger H   Wortmann Saskia B SB  

Nutrients 20220831 17


The mitochondrial malate aspartate shuttle system (MAS) maintains the cytosolic NAD+/NADH redox balance, thereby sustaining cytosolic redox-dependent pathways, such as glycolysis and serine biosynthesis. Human disease has been associated with defects in four MAS-proteins (encoded by <i>MDH1</i>, <i>MDH2</i>, <i>GOT2</i>, <i>SLC25A12</i>) sharing a neurological/epileptic phenotype, as well as citrin deficiency (<i>SLC25A13</i>) with a complex hepatopathic-neuropsychiatric phenotype. Ketogenic die  ...[more]

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