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1.
Brain ; 135(Pt 1): 53-61, 2012 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-22232594

RESUMO

Human skeletal muscle respiratory chain defects restrict the ability of working muscle to extract oxygen from blood, and result in a hyperkinetic circulation during exercise in which oxygen delivery is excessive relative to oxygen uptake and oxygen levels within contracting muscle are abnormally high. To investigate the role of the muscle microcirculation in this anomalous circulatory response and possible implications for the regulation of muscle angiogenesis, we assessed muscle oxidative capacity during cycle exercise and determined capillary levels and distribution and vascular endothelial growth factor expression in quadriceps muscle biopsies in patients with mitochondrial myopathy attributable to heteroplasmic mitochondrial DNA mutations. We found that in patients with mitochondrial myopathy, muscle capillary levels were twice that of sedentary healthy subjects (3.0 ± 0.9% compared with 1.4 ± 0.3%, P < 0.001) despite the fact that oxygen utilization during peak cycle exercise was half that of control subjects (11.1 ± 4.0 ml/kg/min compared with 20.7 ± 7.9 ml/kg/min, P < 0.01); that capillary area was greatest in patients with the most severe muscle oxidative defects and was more than two times higher around muscle fibre segments with defective (i.e. cytochrome oxidase negative/succinic dehydrogenase-positive or 'ragged-red' fibres) compared with more preserved respiratory chain function; and that vascular endothelial growth factor expression paralleled capillary distribution. The increased muscle capillary levels in patients correlated directly (r(2) = 0.68, P < 0.05) with the severity of the mismatch between systemic oxygen delivery (cardiac output) and oxygen utilization during cycle exercise. Our results suggest that capillary growth is increased as a result of impaired muscle oxidative phosphorylation in mitochondrial myopathy, thus promoting increased blood flow to respiration-incompetent muscle fibres and a mismatch between oxygen delivery and utilization during exercise. Furthermore, the finding of high capillary levels despite elevated tissue oxygen levels during exercise in respiration-deficient muscle fibres implies that mitochondrial metabolism activates angiogenesis in skeletal muscle by a mechanism that is independent of hypoxia.


Assuntos
Capilares/fisiopatologia , Miopatias Mitocondriais/fisiopatologia , Músculo Esquelético/irrigação sanguínea , Músculo Esquelético/fisiopatologia , Consumo de Oxigênio/fisiologia , Adulto , Capilares/metabolismo , Exercício Físico/fisiologia , Feminino , Humanos , Masculino , Pessoa de Meia-Idade , Miopatias Mitocondriais/metabolismo , Músculo Esquelético/metabolismo , Fosforilação Oxidativa , Oxigênio/metabolismo
2.
Am J Hum Genet ; 82(3): 652-60, 2008 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-18304497

RESUMO

A myopathy with severe exercise intolerance and myoglobinuria has been described in patients from northern Sweden, with associated deficiencies of succinate dehydrogenase and aconitase in skeletal muscle. We identified the gene for the iron-sulfur cluster scaffold protein ISCU as a candidate within a region of shared homozygosity among patients with this disease. We found a single mutation in ISCU that likely strengthens a weak splice acceptor site, with consequent exon retention. A marked reduction of ISCU mRNA and mitochondrial ISCU protein in patient muscle was associated with a decrease in the iron regulatory protein IRP1 and intracellular iron overload in skeletal muscle, consistent with a muscle-specific alteration of iron homeostasis in this disease. ISCU interacts with the Friedreich ataxia gene product frataxin in iron-sulfur cluster biosynthesis. Our results therefore extend the range of known human diseases that are caused by defects in iron-sulfur cluster biogenesis.


Assuntos
Tolerância ao Exercício/genética , Proteínas Ferro-Enxofre/genética , Miopatias Mitocondriais/genética , Sítios de Splice de RNA/genética , Aconitato Hidratase/deficiência , Adulto , Idoso , Sequência de Aminoácidos , Sequência de Bases , Análise Mutacional de DNA , Homozigoto , Humanos , Mitocôndrias/enzimologia , Miopatias Mitocondriais/enzimologia , Dados de Sequência Molecular , Mutação , Linhagem , Polimorfismo de Nucleotídeo Único , RNA Mensageiro/metabolismo , Succinato Desidrogenase/deficiência , Suécia
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