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首页> 外文期刊>American Journal of Physiology >Decreased affinity for oxygen of cytochrome-c oxidase in Leigh syndrome caused by SURF1 mutations.
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Decreased affinity for oxygen of cytochrome-c oxidase in Leigh syndrome caused by SURF1 mutations.

机译:SURF1突变引起的Leigh综合征中细胞色素C氧化酶对氧的亲和力降低。

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Mutations in the gene SURF1 prevent synthesis of cytochrome-c oxidase (COX)-specific assembly protein and result in a fatal neurological disorder, Leigh syndrome. Because this severe COX deficiency presents with barely detectable changes of cellular respiratory rates under normoxic conditions, we analyzed the respiratory response to low oxygen in cultured fibroblasts harboring SURF1 mutations with high-resolution respirometry. The oxygen kinetics was quantified by the partial pressure of oxygen (PO2) at half-maximal respiration rate (P50) in intact coupled cells and in digitonin-permeabilized uncoupled cells. In both cases, the P50 in patients was elevated 2.1- and 3.3-fold, respectively, indicating decreased affinity of COX for oxygen. These results suggest that at physiologically low intracellular PO2, the depressed oxygen affinity may lead in vivo to limitations of respiration, resulting in impaired energy provision in Leigh syndrome patients.
机译:SURF1基因中的突变阻止了细胞色素C氧化酶(COX)特异性装配蛋白的合成,并导致致命的神经系统疾病Leigh综合征。因为这种严重的COX缺乏症在常氧条件下几乎无法检测到细胞呼吸速率的变化,所以我们用高分辨率呼​​吸测定法分析了含有SURF1突变的培养成纤维细胞对低氧的呼吸反应。氧动力学通过完整偶联细胞和洋地黄素透化未偶联细胞中最大呼吸频率(P50)一半时的氧气分压(PO2)进行定量。在两种情况下,患者的P50分别升高2.1倍和3.3倍,表明COX对氧气的亲和力降低。这些结果表明,在生理上较低的细胞内PO2浓度下,降低的氧亲和力可能会导致体内呼吸受限,从而导致Leigh综合征患者的能量供应受损。

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