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铁蛋白中铁矿化的机制:一种模式并不适用于所有情况。

Mechanisms of iron mineralization in ferritins: one size does not fit all.

作者信息

Bradley Justin M, Moore Geoffrey R, Le Brun Nick E

机构信息

School of Chemistry, Centre for Molecular and Structural Biochemistry, University of East Anglia, Norwich, NR4 7TJ, UK.

出版信息

J Biol Inorg Chem. 2014 Aug;19(6):775-85. doi: 10.1007/s00775-014-1136-3. Epub 2014 Apr 19.

Abstract

Significant progress has been made in recent years toward understanding the processes by which an iron mineral is deposited within members of the ferritin family of 24mer iron storage proteins, enabled by high-resolution structures together with spectroscopic and kinetic studies. These suggest common characteristics that are shared between ferritins, namely, a highly symmetric arrangement of subunits that provides a protein coat around a central cavity in which the mineral is formed, channels through the coat that facilitate ingress and egress of ions, and catalytic sites, called ferroxidase centers, that drive Fe(2+) oxidation. They also reveal significant variations in both structure and mechanism amongst ferritins. Here, we describe three general types of structurally distinct ferroxidase center and the mechanisms of mineralization that they are associated with. The highlighted variation leads us to conclude that there is no universal mechanism by which ferritins function, but instead there exists several distinct mechanisms of ferritin iron mineralization.

摘要

近年来,在理解铁矿物质沉积于24聚体铁储存蛋白铁蛋白家族成员的过程方面取得了重大进展,这得益于高分辨率结构以及光谱学和动力学研究。这些研究揭示了铁蛋白之间共有的一些特征,即亚基高度对称排列,围绕形成矿物质的中央腔形成蛋白质外壳;穿过外壳的通道,便于离子进出;还有称为铁氧化酶中心的催化位点,驱动Fe(2+)氧化。研究还揭示了不同铁蛋白在结构和机制上的显著差异。在此,我们描述了三种结构上不同的铁氧化酶中心的一般类型以及它们所关联的矿化机制。这种显著的差异使我们得出结论,铁蛋白发挥功能不存在通用机制,而是存在几种不同的铁蛋白铁矿化机制。

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