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PMID: 17336115 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Systems analysis of energy metabolism elucidates the affected respiratory chain complex in Leigh's syndrome.

Molecular genetics and metabolism ·Vol. 91 ·No. 1 ·2007-05-00 ·Pages 15-22

Vo TD, Paul Lee WN, Palsson BO

Abstract

Leigh's syndrome is a complex neurological disease with little known correlation between causes and symptoms. Mutations in pyruvate dehydrogenase and electron transport chain complexes have been associated with this syndrome, although the identification of affected enzymes is difficult, if not impossible, with non-invasive clinical tests. In this study, isotopomer analysis is used to characterize the metabolic phenotype of normal and Leigh's syndrome fibroblasts (GM01503), thereby identifying affected enzymes in the diseased cells. Fibroblasts are grown with DMEM media enriched with (13)C labeled glucose. Amino acids from media and proteins as well as lactate are analyzed with GC-MS to identify their label distributions. A computational model accounting for all major pathways in fibroblast metabolism (including 430 metabolites and 508 reactions) is built to determine the metabolic steady states of the normal and Leigh's cell lines based on measured substrate uptake and secretion rates and isotopomer data. Results show that (i) Leigh's syndrome affected cells have slower metabolism than control fibroblasts as evidenced by their overall slower substrate utilization and lower secretion of end products; (ii) intracellular fluxes predicted by the models, some of which are validated by biochemical studies published in the literature, show that the respiratory chain in Leigh's affected cells can produce ATP at a similar rate as the controls, but with a more restricted flux range; and (iii) mutations causing the defects observed in the Leigh's cells are likely to be in succinate cytochrome c reductase.

MeSH Terms
Carbon Isotopes Cell Line Electron Transport/genetics Electron Transport Complex II/genetics,metabolism Energy Metabolism/genetics Fibroblasts/enzymology,metabolism Humans Leigh Disease/genetics,metabolism Metabolic Networks and Pathways Mutation Pyruvate Dehydrogenase Complex/metabolism Succinate Cytochrome c Oxidoreductase/genetics Trace Elements/metabolism
Chemicals
Carbon Isotopes Pyruvate Dehydrogenase Complex Trace Elements Succinate Cytochrome c Oxidoreductase Electron Transport Complex II
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Vo Thuy D
Department of Bioengineering, University of California, San Diego, CA 92093, USA.
Paul Lee W N
Palsson Bernhard O
Article Info
Journal
Molecular genetics and metabolism
Abbr.
Mol Genet Metab
ISSN
1096-7192
Published
2007-05-00
Epub
2007-00-01
Pages
15-22
Language
English
Region
United States
NLM ID
9805456
Subset
IM
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