Literature DB >> 16044424

Secondary metabolic effects in complex I deficiency.

Nayla Esteitie1, Reetta Hinttala, Rolf Wibom, Helene Nilsson, Nicole Hance, Karin Naess, Kristina Teär-Fahnehjelm, Ulrika von Döbeln, Kari Majamaa, Nils-Göran Larsson.   

Abstract

The objective of this study was to investigate clinical, biochemical, and genetic features in 7 probands (a total of 11 patients) with nicotine-amide adenine dinucleotide (NADH) dehydrogenase (complex I) deficiency. We screened the mitochondrial DNA for mutations and found pathogenic mutations in complex I genes (mitochondrial NADH dehydrogenase subunit (MTND) genes) in three probands. The 10191T>C mutation in MTND3 and the 14487T>C mutation in MTND6 were present in two probands with Leigh's-like and Leigh's syndrome, respectively. Four siblings with a syndrome consisting of encephalomyopathy with hearing impairment, optic nerve atrophy, and cardiac involvement had the 11778G>A mutation in MTND4, previously associated with Leber hereditary optic neuropathy. These findings demonstrate that mutations in MTND genes are relatively frequent in patients with complex I deficiency. Biochemical measurements of respiratory chain function in muscle mitochondria showed that all patients had a moderate decrease of the mitochondrial adenosine triphosphate production rate. Interestingly, the complex I deficiency caused secondary metabolic alterations with decreased oxaloacetate-induced inhibition of succinate dehydrogenase (complex II) and excretion of Krebs cycle intermediates in the urine. Our results thus suggest that altered regulation of metabolism may play an important role in the pathogenesis of complex I deficiency.

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Year:  2005        PMID: 16044424     DOI: 10.1002/ana.20570

Source DB:  PubMed          Journal:  Ann Neurol        ISSN: 0364-5134            Impact factor:   10.422


  17 in total

1.  ROS-triggered phosphorylation of complex II by Fgr kinase regulates cellular adaptation to fuel use.

Authors:  Rebeca Acín-Pérez; Isabel Carrascoso; Francesc Baixauli; Marta Roche-Molina; Ana Latorre-Pellicer; Patricio Fernández-Silva; María Mittelbrunn; Francisco Sanchez-Madrid; Acisclo Pérez-Martos; Clifford A Lowell; Giovanni Manfredi; José Antonio Enríquez
Journal:  Cell Metab       Date:  2014-05-22       Impact factor: 27.287

2.  Analysis of mitochondrial DNA sequences in patients with isolated or combined oxidative phosphorylation system deficiency.

Authors:  R Hinttala; R Smeets; J S Moilanen; C Ugalde; J Uusimaa; J A M Smeitink; K Majamaa
Journal:  J Med Genet       Date:  2006-05-31       Impact factor: 6.318

3.  Isoflurane differentially modulates mitochondrial reactive oxygen species production via forward versus reverse electron transport flow: implications for preconditioning.

Authors:  Naoyuki Hirata; Yon Hee Shim; Danijel Pravdic; Nicole L Lohr; Philip F Pratt; Dorothee Weihrauch; Judy R Kersten; David C Warltier; Zeljko J Bosnjak; Martin Bienengraeber
Journal:  Anesthesiology       Date:  2011-09       Impact factor: 7.892

4.  Analysis by two-dimensional Blue Native/SDS-PAGE of membrane protein alterations in rat soleus muscle after hindlimb unloading.

Authors:  Davide Basco; Grazia Paola Nicchia; Jean-François Desaphy; Diana Conte Camerino; Antonio Frigeri; Maria Svelto
Journal:  Eur J Appl Physiol       Date:  2010-08-24       Impact factor: 3.078

5.  Respiratory chain complex I deficiency caused by mitochondrial DNA mutations.

Authors:  Helen Swalwell; Denise M Kirby; Emma L Blakely; Anna Mitchell; Renato Salemi; Canny Sugiana; Alison G Compton; Elena J Tucker; Bi-Xia Ke; Phillipa J Lamont; Douglass M Turnbull; Robert McFarland; Robert W Taylor; David R Thorburn
Journal:  Eur J Hum Genet       Date:  2011-03-02       Impact factor: 4.246

6.  Mice lacking TR4 nuclear receptor develop mitochondrial myopathy with deficiency in complex I.

Authors:  Su Liu; Yi-Fen Lee; Samuel Chou; Hideo Uno; Gonghui Li; Paul Brookes; Michael P Massett; Qiao Wu; Lu-Min Chen; Chawnshang Chang
Journal:  Mol Endocrinol       Date:  2011-05-26

Review 7.  Long survival in patients with leigh syndrome and the m.10191T>C mutation in MT-ND3 : a case report and review of the literature.

Authors:  Rebecca J Levy; Purificación Gutierrez Ríos; Hasan O Akman; Monica Sciacco; Darryl C De Vivo; Salvatore DiMauro
Journal:  J Child Neurol       Date:  2013-11-27       Impact factor: 1.987

8.  Substrate-dependent modulation of oxidative phosphorylation in isolated mitochondria following in vitro hypoxia and reoxygenation injury.

Authors:  Daisuke Maruyama; Naoyuki Hirata; Ryo Miyashita; Ryoichi Kawaguchi; Michiaki Yamakage
Journal:  Exp Clin Cardiol       Date:  2013

9.  Mutations in the mitochondrial tRNA Ser(AGY) gene are associated with deafness, retinal degeneration, myopathy and epilepsy.

Authors:  Helen A L Tuppen; Karin Naess; Nancy G Kennaway; Mazhor Al-Dosary; Nicole Lesko; John W Yarham; Helene Bruhn; Rolf Wibom; Inger Nennesmo; Richard G Weleber; Emma L Blakely; Robert W Taylor; Robert McFarland
Journal:  Eur J Hum Genet       Date:  2012-02-29       Impact factor: 4.246

10.  Near-identical segregation of mtDNA heteroplasmy in blood, muscle, urinary epithelium, and hair follicles in twins with optic atrophy, ptosis, and intractable epilepsy.

Authors:  Achilles Spyropoulos; Mark Manford; Rita Horvath; Charlotte L Alston; Patrick Yu-Wai-Man; Langping He; Robert W Taylor; Patrick F Chinnery
Journal:  JAMA Neurol       Date:  2013-12       Impact factor: 18.302

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