Nuclear factors involved in mitochondrial translation cause a subgroup of combined respiratory chain deficiency

被引:54
作者
Kemp, John P. [2 ]
Smith, Paul M. [2 ]
Pyle, Angela [2 ,3 ]
Neeve, Vivienne C. M. [2 ,3 ]
Tuppen, Helen A. L. [2 ]
Schara, Ulrike [4 ]
Talim, Beril [5 ]
Topaloglu, Haluk [5 ]
Holinski-Feder, Elke [3 ]
Abicht, Angela [3 ]
Czermin, Birgit [3 ]
Lochmueller, Hanns
McFarland, Robert [2 ]
Chinnery, Patrick F. [2 ]
Chrzanowska-Lightowlers, Zofia M. A. [2 ]
Lightowlers, Robert N. [2 ]
Taylor, Robert W. [2 ]
Horvath, Rita [1 ,2 ,3 ]
机构
[1] Newcastle Univ, Inst Human Genet, Mitochondrial Res Grp, Newcastle Upon Tyne NE1 3BZ, Tyne & Wear, England
[2] Newcastle Univ, Inst Ageing & Hlth, Mitochondrial Res Grp, Newcastle Upon Tyne NE4 5PL, Tyne & Wear, England
[3] Ctr Med Genet, Munich, Germany
[4] Univ Essen Gesamthsch, Dept Paediat Neurol, Essen, Germany
[5] Hacettepe Univ, Paediat Pathol Unit, Dept Paediat, Ankara, Turkey
基金
英国生物技术与生命科学研究理事会; 英国医学研究理事会; 英国惠康基金;
关键词
mitochondrial translation; combined respiratory chain deficiency; early-onset encephalomyopathy; SIDEROBLASTIC ANEMIA-MLASA; C-OXIDASE DEFICIENCY; RNA-SYNTHETASE GENE; DNA DEPLETION; MOLECULAR-BASIS; MUTATION; DISEASE; MYOPATHY; LEUKOENCEPHALOPATHY; ENCEPHALOMYOPATHY;
D O I
10.1093/brain/awq320
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Mutations in several mitochondrial DNA and nuclear genes involved in mitochondrial protein synthesis have recently been reported in combined respiratory chain deficiency, indicating a generalized defect in mitochondrial translation. However, the number of patients with pathogenic mutations is small, implying that nuclear defects of mitochondrial translation are either underdiagnosed or intrauterine lethal. No comprehensive studies have been reported on large cohorts of patients with combined respiratory chain deficiency addressing the role of nuclear genes affecting mitochondrial protein synthesis to date. We investigated a cohort of 52 patients with combined respiratory chain deficiency without causative mitochondrial DNA mutations, rearrangements or depletion, to determine whether a defect in mitochondrial translation defines the pathomechanism of their clinical disease. We followed a combined approach of sequencing known nuclear genes involved in mitochondrial protein synthesis (EFG1, EFTu, EFTs, MRPS16, TRMU), as well as performing in vitro functional studies in 22 patient cell lines. The majority of our patients were children (< 15 years), with an early onset of symptoms < 1 year of age (65%). The most frequent clinical presentation was mitochondrial encephalomyopathy (63%); however, a number of patients showed cardiomyopathy (33%), isolated myopathy (15%) or hepatopathy (13%). Genomic sequencing revealed compound heterozygous mutations in the mitochondrial transfer ribonucleic acid modifying factor (TRMU) in a single patient only, presenting with early onset, reversible liver disease. No pathogenic mutation was detected in any of the remaining 51 patients in the other genes analysed. In vivo labelling of mitochondrial polypeptides in 22 patient cell lines showed overall (three patients) or selective (four patients) defects of mitochondrial translation. Immunoblotting for mitochondrial proteins revealed decreased steady state levels of proteins in some patients, but normal or increased levels in others, indicating a possible compensatory mechanism. In summary, candidate gene sequencing in this group of patients has a very low detection rate (1/52), although in vivo labelling of mitochondrial translation in 22 patient cell lines indicate that a nuclear defect affecting mitochondrial protein synthesis is responsible for about one-third of combined respiratory chain deficiencies (7/22). In the remaining patients, the impaired respiratory chain activity is most likely the consequence of several different events downstream of mitochondrial translation. Clinical classification of patients with biochemical analysis, genetic testing and, more importantly, in vivo labelling and immunoblotting of mitochondrial proteins show incoherent results, but a systematic review of these data in more patients may reveal underlying mechanisms, and facilitate the identification of novel factors involved in combined respiratory chain deficiency.
引用
收藏
页码:183 / 195
页数:13
相关论文
共 41 条
[1]   Reanalysis and revision of the Cambridge reference sequence for human mitochondrial DNA [J].
Andrews, RM ;
Kubacka, I ;
Chinnery, PF ;
Lightowlers, RN ;
Turnbull, DM ;
Howell, N .
NATURE GENETICS, 1999, 23 (02) :147-147
[2]   The molecular basis for tissue specificity of the oxidative phosphorylation deficiencies in patients with mutations in the mitochondrial translation factor EFG1 [J].
Antonicka, Hana ;
Sasarman, Florin ;
Kennaway, Nancy G. ;
Shoubridge, Eric A. .
HUMAN MOLECULAR GENETICS, 2006, 15 (11) :1835-1846
[3]   Mutations in C12orf65 in Patients with Encephalomyopathy and a Mitochondrial Translation Defect [J].
Antonicka, Hana ;
Ostergaard, Elsebet ;
Sasarman, Florin ;
Weraarpachai, Woranontee ;
Wibrand, Flemming ;
Pedersen, Anne Marie B. ;
Rodenburg, Richard J. ;
van der Knaap, Marjo S. ;
Smeitink, Jan A. M. ;
Chrzanowska-Lightowlers, Zofia M. ;
Shoubridge, Eric A. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2010, 87 (01) :115-122
[4]   Late-onset mitochondrial DNA depletion:: DNA copy number, multiple deletions, and compensation [J].
Barthélémy, C ;
de Baulny, HO ;
Diaz, J ;
Cheval, MA ;
Frachon, P ;
Romero, N ;
Goutieres, F ;
Fardeau, M ;
Lombès, A .
ANNALS OF NEUROLOGY, 2001, 49 (05) :607-617
[5]   Missense mutation in pseudouridine synthase 1 (PUS1) causes mitochondrial myopathy and sideroblastic anemia (MLASA) [J].
Bykhovskaya, Y ;
Casas, K ;
Mengesha, E ;
Inbal, A ;
Fischel-Ghodsian, N .
AMERICAN JOURNAL OF HUMAN GENETICS, 2004, 74 (06) :1303-1308
[6]  
Chomyn A, 1996, Methods Enzymol, V264, P197, DOI 10.1016/S0076-6879(96)64020-8
[7]   Mutant mitochondrial elongation factor G1 and combined oxidative phosphorylation deficiency [J].
Coenen, MJH ;
Antonicka, H ;
Ugalde, C ;
Sasarman, F ;
Rossi, R ;
Heister, JGAMA ;
Newbold, RF ;
Trijbels, FJMF ;
van den Heuvel, LP ;
Shoubridge, EA ;
Smeitink, JAM .
NEW ENGLAND JOURNAL OF MEDICINE, 2004, 351 (20) :2080-2086
[8]   Mechanisms of disease: Mitochondrial respiratory-chain diseases [J].
DiMauro, S ;
Schon, EA .
NEW ENGLAND JOURNAL OF MEDICINE, 2003, 348 (26) :2656-2668
[9]   Deleterious mutation in the mitochondrial arginyl-transfer RNA synthetase gene is associated with pontocerebellar hypoplasia [J].
Edvardson, Simon ;
Shaag, Avraham ;
Kolesnikova, Olga ;
Gomori, John Moshe ;
Tarassov, Ivan ;
Einbinder, Tom ;
Saada, Ann ;
Elpeleg, Orly .
AMERICAN JOURNAL OF HUMAN GENETICS, 2007, 81 (04) :857-862
[10]   Nonsense mutation in pseudouridylate synthase 1 (PUS1) in two brothers affected by myopathy, lactic acidosis and sideroblastic anaemia (MLASA) [J].
Fernandez-Vizarra, Erika ;
Berardinelli, Angela ;
Valente, Lucia ;
Tiranti, Valeria ;
Zeviani, Massimo .
JOURNAL OF MEDICAL GENETICS, 2007, 44 (03) :173-180