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首页> 外文期刊>Human Molecular Genetics >Frataxin interacts with Isu1 through a conserved tryptophan in its beta-sheet.
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Frataxin interacts with Isu1 through a conserved tryptophan in its beta-sheet.

机译:Frataxin通过其β-表中的保守色氨酸与Isu1相互作用。

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Friedreich's ataxia is a neurodegenerative disease caused by the low expression of frataxin, a mitochondrial iron-binding protein which plays an important, but non-essential, role in the formation of iron-sulfur (Fe/S) clusters. It has been shown that Yfh1, the yeast frataxin homologue, interacts functionally and physically with Isu1, the scaffold protein on which the Fe/S clusters are assembled. The large beta-sheet platform of frataxin is a good ligand candidate for this interaction. We have generated 12 yeast mutants in conserved residues of the beta-sheet protruding at the surface or buried in the protein core. The Q129A, I130A, W131A(F) and R141A mutations, which reside in surface exposed residues of the fourth and fifth beta-strands, result in severe cell growth inhibition on high-iron media and low aconitase activity, indicating that Fe/S cluster biosynthesis is impaired. The null phenotype of the I130A mutant results from the high instability of the protein, pointing that this buried residue is essential for folding. In contrast, Gln-129, Trp-131 and Arg-141 residues which are spatially closely clustered define a patch important for protein function. Co-immunoprecipitation experiments using cell extracts show that W131A, unlike W131F, is the sole mutation that strongly decreases the interaction with Isu1. Therefore, Trp-131, which is the only strictly conserved frataxin residue in all sequenced species, appears as a major contributor to the interaction with Isu1 through its surface-exposed aromatic side chain.
机译:弗里德赖希共济失调是一种神经退行性疾病,它是由frataxin(一种线粒体铁结合蛋白)的低表达引起的,它在铁-硫(Fe / S)簇的形成中起着重要但非必需的作用。已经显示,酵母frataxin同源物Yfh1与Isu1在功能上和物理上相互作用,Isu1是组装Fe / S簇的支架蛋白。 frataxin的大型β-sheet平台是这种相互作用的良好配体候选物。我们已经在表面突出或埋在蛋白核中的β-折叠的保守残基中生成了12个酵母突变体。 Q129A,I130A,W131A(F)和R141A突变位于第四和第五个β链的表面暴露残基中,导致对高铁培养基的严重细胞生长抑制作用和乌头酸酶活性低,表明Fe / S簇生物合成受损。 I130A突变体的无效表型是由于蛋白质的高度不稳定性所致,表明该隐蔽残基对于折叠至关重要。相反,在空间上紧密聚集的Gln-129,Trp-131和Arg-141残基定义了对蛋白质功能重要的补丁。使用细胞提取物进行的免疫共沉淀实验表明,与W131F不同,W131A是唯一一个强烈降低与Isu1相互作用的突变。因此,Trp-131是所有测序物种中唯一严格保留的frataxin残基,它似乎是通过表面暴露的芳香族侧链与Isu1相互作用的主要因素。

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