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ETF-QO Mutants Uncoupled Fatty Acid ß-Oxidation and Mitochondrial Bioenergetics Leading to Lipid Pathology.
Chokchaiwong, Suphannee; Kuo, Yung-Ting; Hsu, Sung-Po; Hsu, Yi-Ching; Lin, Shih-Hsiang; Zhong, Wen-Bin; Lin, Yung-Feng; Kao, Shu-Huei.
Afiliação
  • Chokchaiwong S; College of Medical Science and Technology, Taipei Medical University, Taipei 11031, Taiwan. d609105003@tmu.edu.tw.
  • Kuo YT; School of Medical Laboratory Science and Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 11031, Taiwan. d609105003@tmu.edu.tw.
  • Hsu SP; Department of Pediatrics, School of Medicine, College of Medicine, Taipei Medical University, Taipei 11031, Taiwan. pedkuoyt@s.tmu.edu.tw.
  • Hsu YC; Department of Pediatrics, Shuang Ho Hospital, Taipei Medical University, New Taipei 23561, Taiwan. pedkuoyt@s.tmu.edu.tw.
  • Lin SH; Department of Physiology, School of Medicine, College of Medicine, Taipei Medical University, Taipei 11031, Taiwan. sphsu@tmu.edu.tw.
  • Zhong WB; Graduate Institute of Medical Sciences, College of Medicine, Taipei Medical University, Taipei 11031, Taiwan. sphsu@tmu.edu.tw.
  • Lin YF; School of Medical Laboratory Science and Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 11031, Taiwan. yichinghsu@tmu.edu.tw.
  • Kao SH; School of Medical Laboratory Science and Biotechnology, College of Medical Science and Technology, Taipei Medical University, Taipei 11031, Taiwan. gege1202@gmail.com.
Cells ; 8(2)2019 01 31.
Article em En | MEDLINE | ID: mdl-30709034
ABSTRACT
The electron-transfer flavoprotein dehydrogenase gene (ETFDH) that encodes the ETF-ubiquinone oxidoreductase (ETF-QO) has been reported to be the major cause of multiple acyl-CoA dehydrogenase deficiency (MADD). ETF-QO is an electron carrier that mainly functions in mitochondrial fatty acid ß-oxidation and the delivery of electrons to the ubiquinone pool in the mitochondrial respiratory chain. A high frequency of c.250G>A has been found in Taiwanese patients with late-onset MADD. We postulated that the ETFDH c.250G>A mutation may concomitantly impair fatty acid ß-oxidation and mitochondrial function. Using MADD patient-derived lymphoblastoid cells and specifically overexpressed ETFDH c.92C>T, c.250G>A, or coexisted c.92C>T and c.250G>A (c.92C>T + c.250G>A) mutated lymphoblastoid cells, we addressed the genotype-phenotype relationship of ETFDH variation in the pathogenesis of MADD. The decreased adenosine triphosphate synthesis, dissipated mitochondrial membrane potentials, reduced mitochondrial bioenergetics, and increased neutral lipid droplets and lipid peroxides were found in the MADD patient-derived lymphoblastoid cells. Riboflavin and/or coenzyme Q10 supplementation rescued cells from lipid droplet accumulation. All three mutant types, c.92C>T, c.250G>A, or c.92C>T + c.250G>A, had increased lipid droplet accumulation after treatment with palmitic acid. These results help to clarify the molecular pathogenesis of MADD as a result of the high frequency of the ETFDH c.250G>A and c.92C>T mutations.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Flavoproteínas Transferidoras de Elétrons / Complexo I de Transporte de Elétrons / Metabolismo Energético / Ácidos Graxos / Lipídeos / Mitocôndrias / Mutação Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Flavoproteínas Transferidoras de Elétrons / Complexo I de Transporte de Elétrons / Metabolismo Energético / Ácidos Graxos / Lipídeos / Mitocôndrias / Mutação Idioma: En Ano de publicação: 2019 Tipo de documento: Article