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  3. Deficiency of ECHS1 causes mitochondrial encephalopathy with cardiac involvement.
 

Deficiency of ECHS1 causes mitochondrial encephalopathy with cardiac involvement.

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BORIS DOI
10.7892/boris.70165
Date of Publication
May 2015
Publication Type
Article
Division/Institute

Universitätsklinik fü...

Departement Klinische...

Departement für Chemi...

Universitätsinstitut ...

Contributor
Haack, Tobias B
Jackson, Christopher
Universitätsinstitut für Klinische Chemie (UKC)
Murayama, Kei
Kremer, Laura S
Schaller, Andréorcid-logo
Universitätsklinik für Kinderheilkunde
Kotzaeridou, Urania
de Vries, Maaike C
Schottmann, Gudrun
Santra, Saikat
Büchner, Boriana
Wieland, Thomas
Graf, Elisabeth
Freisinger, Peter
Eggimann, Seila
Departement für Chemie und Biochemie (DCB)
Ohtake, Akira
Okazaki, Yasushi
Kohda, Masakazu
Kishita, Yoshihito
Tokuzawa, Yoshimi
Sauer, Sascha
Memari, Yasin
Kolb-Kokocinski, Anja
Durbin, Richard
Hasselmann, Oswald
Cremer, Kirsten
Albrecht, Beate
Wieczorek, Dagmar
Engels, Hartmut
Hahn, Dagmar Karen
Departement Klinische Forschung, Forschungsgruppe Endokrinologie / Diabetologie / Metabolik (Pädiatrie)
Zink, Alexander M
Alston, Charlotte L
Taylor, Robert W
Rodenburg, Richard J
Trollmann, Regina
Sperl, Wolfgang
Strom, Tim M
Hoffmann, Georg F
Mayr, Johannes A
Meitinger, Thomas
Bolognini, Ramonaorcid-logo
Universitätsklinik für Kinderheilkunde
Schuelke, Markus
Nuoffer, Jean-Marcorcid-logo
Departement Klinische Forschung, Forschungsgruppe Endokrinologie / Diabetologie / Metabolik (Pädiatrie)
Kölker, Stefan
Prokisch, Holger
Klopstock, Thomas
Subject(s)

600 - Technology::610...

500 - Science::570 - ...

500 - Science::540 - ...

Series
Annals of Clinical and Translational Neurology
ISSN or ISBN (if monograph)
2328-9503
Publisher
Wiley
Language
English
Publisher DOI
10.1002/acn3.189
PubMed ID
26000322
Description
OBJECTIVE

Short-chain enoyl-CoA hydratase (ECHS1) is a multifunctional mitochondrial matrix enzyme that is involved in the oxidation of fatty acids and essential amino acids such as valine. Here, we describe the broad phenotypic spectrum and pathobiochemistry of individuals with autosomal-recessive ECHS1 deficiency.

METHODS

Using exome sequencing, we identified ten unrelated individuals carrying compound heterozygous or homozygous mutations in ECHS1. Functional investigations in patient-derived fibroblast cell lines included immunoblotting, enzyme activity measurement, and a palmitate loading assay.

RESULTS

Patients showed a heterogeneous phenotype with disease onset in the first year of life and course ranging from neonatal death to survival into adulthood. The most prominent clinical features were encephalopathy (10/10), deafness (9/9), epilepsy (6/9), optic atrophy (6/10), and cardiomyopathy (4/10). Serum lactate was elevated and brain magnetic resonance imaging showed white matter changes or a Leigh-like pattern resembling disorders of mitochondrial energy metabolism. Analysis of patients' fibroblast cell lines (6/10) provided further evidence for the pathogenicity of the respective mutations by showing reduced ECHS1 protein levels and reduced 2-enoyl-CoA hydratase activity. While serum acylcarnitine profiles were largely normal, in vitro palmitate loading of patient fibroblasts revealed increased butyrylcarnitine, unmasking the functional defect in mitochondrial β-oxidation of short-chain fatty acids. Urinary excretion of 2-methyl-2,3-dihydroxybutyrate - a potential derivative of acryloyl-CoA in the valine catabolic pathway - was significantly increased, indicating impaired valine oxidation.

INTERPRETATION

In conclusion, we define the phenotypic spectrum of a new syndrome caused by ECHS1 deficiency. We speculate that both the β-oxidation defect and the block in l-valine metabolism, with accumulation of toxic methacrylyl-CoA and acryloyl-CoA, contribute to the disorder that may be amenable to metabolic treatment approaches.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/134114
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FileFile TypeFormatSizeLicensePublisher/Copright statementContent
ECHS1.pdfAdobe PDF415.47 KBpublishedOpen
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