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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Quantitative proteomics in Friedreich's ataxia B-lymphocytes: A valuable approach to decipher the biochemical events responsible for pathogenesis
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Quantitative proteomics in Friedreich's ataxia B-lymphocytes: A valuable approach to decipher the biochemical events responsible for pathogenesis

机译:Friedreich Ataxia B淋巴细胞的定量蛋白质组学:解读负责发病机制的生物化学事件的宝贵方法

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摘要

Friedreich's ataxia (FRDA) represents the most frequent type of autosomal-recessively inherited ataxia and is caused by the deficiency of frataxin, a mitochondrial protein. It is known that frataxin-deficiency leads to alterations in cellular and mitochondrial iron metabolism and impacts in the cell physiology at several levels. Frataxin is thought to play a role in iron sulfur cluster biogenesis and heme synthesis. Currently, cellular antioxidant defense is dysregulated when frataxin is deficient, which exacerbates oxidative damage in FRDA. Moreover, alterations in lipid metabolism have been observed in several models of the disease.
机译:Friedreich的Ataxia(FRDA)代表了最常见的常规 - 隐性继承的共济失调,并且是由Frataxin的缺陷,线粒体蛋白质引起的。 众所周知,缺乏缺乏症导致细胞和线粒体铁代谢的改变,以及细胞生理学的影响几个水平。 弗拉其辛被认为在铁硫簇生物发生和血红素合成中发挥作用。 目前,当Frataxin缺陷时,细胞抗氧化剂防御能够加剧FRDA中的氧化损伤。 此外,已经在疾病的几种模型中观察到脂质代谢的改变。

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