Biochemical and molecular diagnosis of mitochondrial respiratory chain disorders.

David R Thorburn, Canny Sugiana, Renato Salemi, Denise M Kirby, Lisa Worgan, Akira Ohtake, Michael T Ryan
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引用次数: 107

Abstract

Biochemical diagnosis of mitochondrial respiratory chain disorders requires caution to avoid misdiagnosis of secondary enzyme defects, and can be improved by the use of conservative diagnostic criteria. Pathogenic mutations causing mitochondrial disorders have now been identified in more than 30 mitochondrial DNA (mtDNA) genes encoding respiratory chain subunits, ribosomal- and t-RNAs. mtDNA mutations appear to be responsible for most adult patients with mitochondrial disease and approximately a quarter of paediatric patients. A family history suggesting maternal inheritance is the exception rather than the norm for children with mtDNA mutations, many of whom have de novo mutations. Prenatal diagnosis and pre-implantation genetic diagnosis can be offered to some women at risk of transmitting a mtDNA mutation, particularly those at lower recurrence risk. Mutations in more than 30 nuclear genes, including those encoding for respiratory chain subunits and assembly factors, have now been shown to cause mitochondrial disorders, creating difficulties in prioritising which genes should be studied by mutation analysis in individual patients. A number of approaches offer promise to guide the choice of candidate genes, including Blue Native-PAGE immunoblotting and microarray expression analysis.

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线粒体呼吸链疾病的生化和分子诊断。
线粒体呼吸链疾病的生化诊断需要谨慎,避免继发性酶缺陷的误诊,并且可以通过使用保守的诊断标准来改善。目前已经在30多个线粒体DNA (mtDNA)基因编码呼吸链亚基、核糖体和t- rna中发现了导致线粒体疾病的致病性突变。线粒体dna突变似乎是大多数线粒体疾病成年患者和约四分之一的儿科患者的病因。家族史表明,对于mtDNA突变的儿童来说,母亲遗传是例外,而不是常态,他们中的许多人都有新生突变。产前诊断和植入前遗传学诊断可以提供给一些有mtDNA突变遗传风险的妇女,特别是那些复发风险较低的妇女。超过30个核基因的突变,包括那些编码呼吸链亚基和组装因子的基因,现在已经被证明会导致线粒体疾病,这给在个体患者的突变分析中优先研究哪些基因带来了困难。许多方法为指导候选基因的选择提供了希望,包括Blue Native-PAGE免疫印迹和微阵列表达分析。
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Temperature dependence of diffusion in model and live cell membranes characterized by imaging fluorescence correlation spectroscopy. Searching for a successful HDL-based treatment strategy. Identification of cis-regulatory variations in the IL6R gene through the inheritance assessment of allelic transcription. CD1d favors MHC neighborhood, GM1 ganglioside proximity and low detergent sensitive membrane regions on the surface of B lymphocytes. Retraction notice to "Transcriptional regulation of the AT1 receptor gene in immortalized human trophoblast cells."[Biochim. Biophys. Acta 1680 (2004) 158-170].
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