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乳铁蛋白与铁:结合与释放的结构及动力学方面

Lactoferrin and iron: structural and dynamic aspects of binding and release.

作者信息

Baker Heather M, Baker Edward N

机构信息

School of Biological Sciences, University of Auckland, Auckland, New Zealand.

出版信息

Biometals. 2004 Jun;17(3):209-16. doi: 10.1023/b:biom.0000027694.40260.70.

Abstract

Lactoferrin (Lf) has long been recognized as a member of the transferrin family of proteins and an important regulator of the levels of free iron in the body fluids of mammals. Its ability to bind ferric iron with high affinity (KD approximately 10(-20) M) and to retain it to low pH gives the protein bacteriostatic and antioxidant properties. This ability can be well understood in terms of its three dimensional (3D) structure. The molecule is folded into two homologous lobes (N- and C-lobes) with each lobe binding a single Fe3+ ion in a deep cleft between two domains. The iron sites are highly conserved, and highly favorable for iron binding. Iron binding and release are associated with large conformational changes in which the protein adopts either open or closed states. Comparison of available apolactoferrin structures suggests that iron binding is dependent on the dynamics of the open state. What triggers release of the tightly bound iron, however, and why lactoferrin retains iron to much lower pH than its serum homologue, transferrin, has been the subject of much speculation. Comparisons of structural and functional data on lactoferrins and transferrins now suggest that the key factor comes from cooperative interactions between the two lobes of the molecule, mediated by two alpha-helices.

摘要

乳铁蛋白(Lf)长期以来一直被认为是转铁蛋白家族的成员,也是哺乳动物体液中游离铁水平的重要调节剂。它以高亲和力(解离常数KD约为10^(-20) M)结合三价铁并在低pH值下保持铁的能力赋予了该蛋白抑菌和抗氧化特性。从其三维(3D)结构角度可以很好地理解这种能力。该分子折叠成两个同源结构域(N端和C端结构域),每个结构域在两个结构域之间的深裂缝中结合一个Fe3+离子。铁结合位点高度保守,非常有利于铁的结合。铁的结合和释放与大的构象变化相关,在此过程中蛋白质采取开放或闭合状态。对现有的脱铁乳铁蛋白结构的比较表明,铁的结合取决于开放状态的动力学。然而,是什么触发了紧密结合的铁的释放,以及为什么乳铁蛋白比其血清同源物转铁蛋白在更低的pH值下保留铁,一直是许多推测的主题。现在对乳铁蛋白和转铁蛋白的结构和功能数据的比较表明,关键因素来自分子的两个结构域之间由两个α螺旋介导的协同相互作用。

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