Succinyl-CoA:3-oxoacid coenzyme A transferase (SCOT) deficiency: A rare and potentially fatal metabolic disease.

Osama A Obaid, Jörn Oliver Sass, Sabrina Mackinnon, Ute Spiekerkoetter, Melanie Walter, Corinne Gemperle-Britschgi, Raina Yamamoto, Lisa Stübbe, Eissa Ali Faqeih, Sarah C Grünert, Ali AlAsmari, Wyatt W Yue, Natalie Weinhold, Sylvia Roloff, Christina Pontes, Allan Lund, Anke Schumann, William Foster

Journal: Biochimie 2021;183():55-62

PMID: 33596448

Abstract

Succinyl-CoA:3-oxoacid coenzyme A transferase deficiency (SCOTD) is a rare autosomal recessive disorder of ketone body utilization caused by mutations in OXCT1. We performed a systematic literature search and evaluated clinical, biochemical and genetic data on 34 previously published and 10 novel patients with SCOTD. Structural mapping and in silico analysis of protein variants is also presented. All patients presented with severe ketoacidotic episodes. Age at first symptoms ranged from 36 h to 3 years (median 7 months). About 70% of patients manifested in the first year of life, approximately one quarter already within the neonatal period. Two patients died, while the remainder (95%) were alive at the time of the report. Almost all the surviving patients (92%) showed normal psychomotor development and no neurologic abnormalities. A total of 29 missense mutations are reported. Analysis of the published crystal structure of the human SCOT enzyme, paired with both sequence-based and structure-based methods to predict variant pathogenicity, provides insight into the biochemical consequences of the reported variants. Pathogenic variants cluster in SCOT protein regions that affect certain structures of the protein. The described pathogenic variants can be viewed in an interactive map of the SCOT protein at https://michelanglo.sgc.ox.ac.uk/r/oxct. This comprehensive data analysis provides a systematic overview of all cases of SCOTD published to date. Although SCOTD is a rather benign disorder with often favourable outcome, metabolic crises can be life-threatening or even fatal. As the diagnosis can only be made by enzyme studies or mutation analyses, SCOTD may be underdiagnosed.

Copyright © 2021. Published by Elsevier B.V.

Address: Department of General Paediatrics, Adolescent Medicine and Neonatology, Medical Center - University of Freiburg, Faculty of Medicine, Freiburg, Germany. Electronic address: [email protected].; Nuffield Department of Medicine, University of Oxford, Oxford, United Kingdom.; Department of General Paediatrics, Adolescent Medicine and Neonatology, Medical Center - University of Freiburg, Faculty of Medicine, Freiburg, Germany.; Department of Paediatrics, Department of Clinical Genetics, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.; Centre for Paediatrics and Adolescent Medicine, Heidelberg University Hospital, Heidelberg, Germany.; Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, Berlin Institute of Health, Center for Chronically Sick Children, Berlin, Germany.; Children's Specialist Hospital, King Fahad Medical City, Riyadh, Saudi Arabia.; MVZ Dr. Eberhard & Partner Dortmund GbR (ÜBAG), Dortmund, Germany.; University Children's Hospital, Clinical Chemistry & Biochemistry and Children's Research Center, Zürich, Switzerland.; Nuffield Department of Medicine, University of Oxford, Oxford, United Kingdom. Electronic address: [email protected].; Research Group Inborn Errors of Metabolism, Department of Natural Sciences & Institute for Functional Gene Analytics (IFGA), Bonn-Rhein-Sieg University of Applied Sciences, Rheinbach, Germany. Electronic address: [email protected].
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