首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >The impact of mitochondrial tRNA mutations on the amount of ATP synthase differs in the brain compared to other tissues
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The impact of mitochondrial tRNA mutations on the amount of ATP synthase differs in the brain compared to other tissues

机译:与其他组织相比,大脑中线粒体tRNA突变对ATP合酶量的影响有所不同

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The impact of point mutations in mitochondrial tRNA genes on the amount and stability of respiratory chain complexes and ATP synthase (OXPHOS) has been broadly characterized in cultured skin fibroblasts, skeletal muscle samples, and mitochondrial cybrids. However, less is known about how these mutations affect other tissues, especially the brain. We have compared OXPHOS protein deficiency patterns in skeletal muscle mitochondria of patients with Leigh (8363G > A), MERRF (8344A > G), and MELAS (3243A > G) syndromes. Both mutations that affect mt-tRNA(Lys) (8363G > A, 8344A > G) resulted in severe combined deficiency of complexes I and IV, compared to an isolated severe defect of complex I in the 3243A > G sample (mt-tRNA(Leu(UUR))). Furthermore, we compared obtained patterns with those found in the heart, frontal cortex, and liver of 8363G > A and 3243A > G patients. In the frontal cortex mitochondria of both patients, the patterns of OXPHOS deficiencies differed substantially from those observed in other tissues, and this difference was particularly striking for ATP synthase. Surprisingly, in the frontal cortex of the 3243A > G patient, whose ATP synthase level was below the detection limit, the assembly of complex IV, as inferred from 2D-PAGE immunoblotting, appeared to be hindered by some factor other than the availability of mtDNA-encoded subunits. (c) 2008 Elsevier B.V. All rights reserved.
机译:线粒体tRNA基因中的点突变对呼吸链复合物和ATP合酶(OXPHOS)的数量和稳定性的影响已在培养的皮肤成纤维细胞,骨骼肌样品和线粒体细胞中得到广泛表征。但是,对于这些突变如何影响其他组织(尤其是大脑)的了解还很少。我们比较了Leigh(8363G> A),MERRF(8344A> G)和MELAS(3243A> G)综合征患者的骨骼肌线粒体中OXPHOS蛋白缺乏模式。与在3243A> G样品中分离出的复合物I的严重严重缺陷相比,两种影响mt-tRNA(Lys)的突变(8363G> A,8344A> G)均导致复合物I和IV的严重联合缺乏。 Leu(UUR))。此外,我们将获得的模式与8363G> A和3243A> G患者在心脏,额叶皮层和肝脏中发现的模式进行了比较。在这两名患者的额叶皮质线粒体中,OXPHOS缺陷的模式与其他组织中观察到的显着不同,并且这种差异对于ATP合酶尤为突出。令人惊讶的是,在3243A> G患者的额皮质中,其ATP合酶水平低于检测极限,由2D-PAGE免疫印迹推断,复合物IV的组装似乎受到除mtDNA可用性以外的某些因素的阻碍。编码的子单元。 (c)2008 Elsevier B.V.保留所有权利。

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