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The chemical form of mitochondrial iron in Friedreich's ataxia

机译:弗里德里希共济失调中线粒体铁的化学形式

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Friedreich's ataxia (FRDA) results from cellular damage caused by a deficiency in the mitochondrial matrix protein frataxin. To address the effect of frataxin deficiency on mitochondrial iron chemistry, the heavy mitochondrial fraction (HMF) was isolated from primary fibroblasts from FRDA affected and unaffected individuals. X-ray absorption spectroscopy was used to characterize the chemical form of iron. Near K-edge spectra were fitted with a series of model iron compounds to determine the proportion of each iron species. Most of the iron in both affected and unaffected fibroblasts was ferrihydrite. The iron K-edge from unaffected HMFs were best fitted with poorly organized ferrihydrite modeled by frataxin whereas HMFs from affected cells were best fitted with highly organized ferrihydrite modeled by ferritin. Both had several minor iron species but these did not differ consistently with disease. Since the iron K-edge spectra of ferritin and frataxin are very similar, we present additional evidence for the presence of ferritin-bound iron in HMF. The predominant ferritin subunit in HMFs from affected cells resembled mitochondrial ferritin (MtFt) in size and antigenicity. Western blotting of native gels showed that HMF from affected cells had 3-fold more holoferritin containing stainable iron. We conclude that most of the iron in fibroblast HMF from both affected and unaffected cells is ferrihydrite but only FRDA affected cells mineralize significant iron in mitochondrial ferritin.
机译:Friedreich共济失调(FRDA)是由线粒体基质蛋白frataxin缺乏引起的细胞损伤引起的。为了解决frataxin缺乏对线粒体铁化学的影响,从受FRDA影响和未患病的个体的原代成纤维细胞中分离了重度线粒体级分(HMF)。 X射线吸收光谱法用于表征铁的化学形式。将近K边缘光谱与一系列模型铁化合物拟合以确定每种铁物种的比例。受影响和未受影响的成纤维细胞中的大多数铁都是水铁矿。未受影响的HMFs的铁K边缘最适合以Frataxin建模的组织较差的亚铁水合物,而受影响细胞的HMFs则最适合以铁蛋白为模型的高度组织化的亚铁水合物。两者都有几种微量的铁,但它们与疾病并不一致。由于铁蛋白和frataxin的铁K边缘光谱非常相似,因此我们为HMF中存在铁蛋白结合的铁提供了更多证据。来自受影响细胞的HMF中主要的铁蛋白亚基在大小和抗原性方面类似于线粒体铁蛋白(MtFt)。天然凝胶的Western印迹显示,受影响细胞的HMF含有可染铁的全铁蛋白多3倍。我们得出的结论是,成纤维细胞HMF中受影响和未受影响的细胞中的大多数铁都是水铁矿,但是只有FRDA受影响的细胞才能使线粒体铁蛋白中的大量铁矿化。

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