Proteomic investigation of cultivated fibroblasts from patients with mitochondrial short-chain acyl-CoA dehydrogenase deficiency

被引:26
作者
Edhager, Anders V. [1 ]
Stenbroen, Vibeke [1 ]
Nielsen, Nadia Sukusu [1 ]
Bross, Peter [1 ]
Olsen, Rikke K. J. [1 ]
Gregersen, Niels [1 ]
Palmfeldt, Johan [1 ]
机构
[1] Aarhus Univ Hosp, Res Unit Mol Med, DK-8000 Aarhus, Denmark
关键词
Proteomics; SCAD; Fibroblasts; Mitochondria; Protein analysis; Mass spectrometry; COENZYME-A DEHYDROGENASE; ADENYLATE KINASE 4; ETHYLMALONIC ACIDURIA; STRESS-RESPONSE; BETA-OXIDATION; PROTEIN; GENE; IDENTIFICATION; EXPRESSION; CELLS;
D O I
10.1016/j.ymgme.2014.01.007
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Short-chain acyl-CoA dehydrogenase (SCAD) deficiency is a rare inherited autosomal recessive disorder with not yet well established mechanisms of disease. In the present study, the mitochondrial proteome of five symptomatic patients homozygous for missense variations in the SCAD gene ACADS was investigated in an extensive large-scale proteomic study to map protein perturbations linked to the disease. Fibroblast cultures of patient cells homozygous for either c.319C>T/p.Arg107Cys (n = 2) or c.1138C>T/p.Arg380Trp (n = 3) in ACADS, and healthy controls (normal human dermal fibroblasts), were studied. The mitochondrial proteome derived from these cultures was analyzed by label free proteomics using high mass accuracy nanoliquid chromatography tandem mass spectrometry (nanoLC-MS/MS). More than 300 mitochondrial proteins were identified and quantified. Thirteen proteins had significant alteration in protein levels in patients carrying variation c.319C>T in ACADS compared to controls and they belonged to various pathways, such as the antioxidant system and amino acid metabolism. Twenty-two proteins were found significantly altered in patients carrying variation c.1138C>T which included proteins associated with fatty acid beta-oxidation, amino acid metabolism and protein quality control system. Three proteins were found significantly regulated in both patient groups: adenylate kinase 4 (AK4), nucleoside diphosphate kinase A (NME1) and aldehyde dehydrogenase family 4 member Al (ALDH4A1). Proteins AK4 and NME1 deserve further investigation because of their involvement in energy reprogramming, cell survival and proliferation with relevance for SCAD deficiency and related metabolic disorders. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:360 / 368
页数:9
相关论文
共 50 条
  • [31] A new case of short-chain acyl-CoA dehydrogenase deficiency:: clinical, biochemical, genetic and 1H-NMR spectroscopic studies
    Battisti, C.
    Forte, F.
    Molinelli, M.
    Funghini, S.
    Pasquini, E.
    Tassini, M.
    Dotti, M. T.
    Federico, A.
    NEUROLOGICAL SCIENCES, 2007, 28 (06) : 328 - 330
  • [32] A new case of short-chain acyl-CoA dehydrogenase deficiency: clinical, biochemical, genetic and 1H-NMR spectroscopic studies
    C. Battisti
    F. Forte
    M. Molinelli
    S. Funghini
    E. Pasquini
    M. Tassini
    M. T. Dotti
    A. Federico
    Neurological Sciences, 2007, 28 : 328 - 330
  • [33] Short chain acyl-CoA dehydrogenase deficiency and short-term high-fat diet perturb mitochondrial energy metabolism and transcriptional control of lipid-handling in liver
    Ghosh, Sujoy
    Kruger, Claudia
    Wicks, Shawna
    Simon, Jacob
    Kumar, K. Ganesh
    Johnson, William D.
    Mynatt, Randall L.
    Noland, Robert C.
    Richards, Brenda K.
    NUTRITION & METABOLISM, 2016, 13
  • [34] Biochemical, molecular, and clinical characteristics of children with short chain acyl-CoA dehydrogenase deficiency detected by newborn screening in California
    Gallant, Natalie M.
    Leydiker, Karen
    Tang, Hao
    Feuchtbaum, Lisa
    Lorey, Fred
    Puckett, Rebecca
    Deignan, Joshua L.
    Neidich, Julie
    Dorrani, Naghmeh
    Chang, Erica
    Barshop, Bruce A.
    Cederbaum, Stephen D.
    Abdenur, Jose E.
    Wang, Raymond Y.
    MOLECULAR GENETICS AND METABOLISM, 2012, 106 (01) : 55 - 61
  • [35] A single acyl-CoA dehydrogenase is required for catabolism of isoleucine, valine and short-chain fatty acids in Aspergillus nidulans
    Maggio-Hall, Lori A.
    Lyne, Paul
    Wolff, Jon A.
    Keller, Nancy P.
    FUNGAL GENETICS AND BIOLOGY, 2008, 45 (03) : 180 - 189
  • [36] Efficacy of bezafibrate for preventing myopathic attacks in patients with very long-chain acyl-CoA dehydrogenase deficiency
    Shiraishi, Hideaki
    Yamada, Kenji
    Egawa, Kiyoshi
    Ishige, Mika
    Ochi, Fumihiro
    Watanabe, Asami
    Kawakami, Sanae
    Kuzume, Kazuyo
    Watanabe, Kenji
    Sameshima, Koji
    Nakamagoe, Kiyotaka
    Tamaoka, Akira
    Asahina, Naoko
    Yokoshiki, Saki
    Kobayashi, Keiko
    Miyakoshi, Takashi
    Oba, Koji
    Isoe, Toshiyuki
    Hayashi, Hiroshi
    Yamaguchi, Seiji
    Sato, Norihiro
    BRAIN & DEVELOPMENT, 2021, 43 (02) : 214 - 219
  • [37] Adult presentations of medium-chain acyl-CoA dehydrogenase deficiency (MCADD)
    Lang, T. F.
    JOURNAL OF INHERITED METABOLIC DISEASE, 2009, 32 (06) : 675 - 683
  • [38] Medium-chain Acyl-COA dehydrogenase deficiency: Pathogenesis, diagnosis, and treatment
    Mason, Emily
    Hindmarch, Charles C. T.
    Dunham-Snary, Kimberly J.
    ENDOCRINOLOGY DIABETES & METABOLISM, 2023, 6 (01)
  • [39] Medium chain acyl-CoA dehydrogenase deficiency: Human genome epidemiology review
    Wang, SS
    Fernhoff, PM
    Hannon, WH
    Khoury, MJ
    GENETICS IN MEDICINE, 1999, 1 (07) : 332 - 339
  • [40] Coenzyme A and Short-Chain Acyl-CoA Species in Control and Ischemic Rat Brain
    Joseph Deutsch
    Stanley I. Rapoport
    Thad A. Rosenberger
    Neurochemical Research, 2002, 27 : 1577 - 1582