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人铁调节蛋白1作为胞质乌头酸酶的晶体结构。

Crystal structure of human iron regulatory protein 1 as cytosolic aconitase.

作者信息

Dupuy Jérôme, Volbeda Anne, Carpentier Philippe, Darnault Claudine, Moulis Jean-Marc, Fontecilla-Camps Juan Carlos

机构信息

Laboratoire de Cristallographie et de Cristallogenèse des Protéines, Institut de Biologie Structurale JP Ebel, CEA/CNRS/Université Joseph Fourier, 38027 Grenoble Cedex 1, France.

出版信息

Structure. 2006 Jan;14(1):129-39. doi: 10.1016/j.str.2005.09.009.

Abstract

Iron regulatory proteins (IRPs) control the translation of proteins involved in iron uptake, storage and utilization by binding to specific noncoding sequences of the corresponding mRNAs known as iron-responsive elements (IREs). This strong interaction assures proper iron homeostasis in animal cells under iron shortage. Conversely, under iron-replete conditions, IRP1 binds a [4Fe-4S] cluster and functions as cytosolic aconitase. Regulation of the balance between the two IRP1 activities is complex, and it does not depend only on iron availability. Here, we report the crystal structure of human IRP1 in its aconitase form. Comparison with known structures of homologous enzymes reveals well-conserved folds and active site environments with significantly different surface shapes and charge distributions. The specific features of human IRP1 allow us to propose a tentative model of an IRP1-IRE complex that agrees with a range of previously obtained data.

摘要

铁调节蛋白(IRPs)通过与相应mRNA的特定非编码序列(称为铁反应元件,IREs)结合,控制参与铁摄取、储存和利用的蛋白质的翻译。这种强相互作用确保了动物细胞在铁缺乏情况下铁稳态的正常维持。相反,在铁充足的条件下,IRP1结合一个[4Fe-4S]簇并作为胞质乌头酸酶发挥作用。调节IRP1两种活性之间的平衡很复杂,并且不仅仅取决于铁的可用性。在这里,我们报道了人IRP1乌头酸酶形式的晶体结构。与同源酶的已知结构进行比较,发现其折叠和活性位点环境高度保守,但表面形状和电荷分布有显著差异。人IRP1的这些特定特征使我们能够提出一个与一系列先前获得的数据相符的IRP1-IRE复合物的初步模型。

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