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Drosophila melanogaster frataxin: protein crystal and predicted solution structure with identification of the iron-binding regions

机译:果蝇黑腹果蝇 frataxin:蛋白质晶体和预测溶液结构,鉴定铁结合区域

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摘要

Friedreich's ataxia (FRDA) is a hereditary cardiodegenerative and neurodegenerative disease that affects 1 in 50 000 Americans. FRDA arises from either a cellular inability to produce sufficient quantities or the production of a nonfunctional form of the protein frataxin, a key molecule associated with mitochondrial iron-sulfur cluster biosynthesis. Within the mitochondrial ironsulfur cluster (ISC) assembly pathway, frataxin serves as an allosteric regulator for cysteine desulfurase, the enzyme that provides sulfur for 2Fe-2S cluster assembly. Frataxin is a known iron-binding protein and is also linked to the delivery of ferrous ions to the scaffold protein, the ISC molecule responsible for the direct assembly of 2Fe-2S clusters. The goal of this report is to provide structural details of the Drosophila melanogaster frataxin ortholog (Dfh), using both X-ray crystallography and nuclear magnetic resonance (NMR) spectroscopy, in order to provide the foundational insight needed to understand the structure-function correlation of the protein. Additionally, NMR iron(II) titrations were used to provide metal contacts on the protein to better understand how it binds iron and aids its delivery to the ISC scaffold protein. Here, the structural and functional similarities of Dfh to its orthologs are also outlined. Structural data show that bacterial, yeast, human and Drosophila frataxins are structurally similar, apart from a structured C-terminus in Dfh that is likely to aid in protein stability. The iron-binding location on helix 1 and strand 1 of Dfh is also conserved across orthologs.
机译:cardiodegenerative和神经退行性疾病影响1 50 000美国人。从细胞无法生产足够的数量或生产非功能性蛋白质frataxin形式,一个关键分子与线粒体有关iron-sulfur集群生物合成。线粒体ironsulfur集群(ISC)组装通路,frataxin作为变构半胱氨酸desulfurase调节器,酶提供硫[2 fe-2s)集群组装。蛋白质和也与交付ISC亚铁离子脚手架蛋白负责的直接组装分子(2 fe-2s)集群。提供结构性果蝇的细节腹frataxin直接同源(干扰),同时使用x射线晶体学和核磁共振(核磁共振)光谱,以提供需要了解的基本见解结构相关的蛋白质。此外,核磁共振铁(II)滴定在蛋白质提供金属接触更好地了解它结合铁和艾滋病交付ISC脚手架蛋白。结构和功能的相似性干扰并简要介绍了其直接同源。表明,细菌,酵母,人类和果蝇frataxins结构相似,除了一个结构化的糖可能的干扰帮助蛋白质的稳定性。位置1和链螺旋1干扰也在直接同源守恒。

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