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Crystal structure of plant ferritin reveals a novel metal binding site that functions as a transit site for metal transfer in ferritin.植物铁蛋白的晶体结构揭示了一个新的金属结合位点,该位点在铁蛋白中作为金属转移的过渡位点发挥作用。
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2
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The universal mechanism for iron translocation to the ferroxidase site in ferritin, which is mediated by the well conserved transit site.铁蛋白中铁向亚铁氧化酶部位转移的普遍机制是通过高度保守的转运部位介导的。
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4
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Biochem J. 1992 Dec 15;288 ( Pt 3)(Pt 3):931-9. doi: 10.1042/bj2880931.
6
Structural Basis of Novel Iron-Uptake Route and Reaction Intermediates in Ferritins from Gram-Negative Bacteria.革兰氏阴性菌铁蛋白中新型铁摄取途径和反应中间体的结构基础
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The crystal structure of ferritin from Chlorobium tepidum reveals a new conformation of the 4-fold channel for this protein family.嗜温绿菌铁蛋白的晶体结构揭示了该蛋白家族四重通道的一种新构象。
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8
Influence of site-directed modifications on the formation of iron cores in ferritin.位点定向修饰对铁蛋白中铁核形成的影响。
J Mol Biol. 1991 Oct 20;221(4):1443-52. doi: 10.1016/0022-2836(91)90944-2.
9
Phosphate accelerates displacement of Fe(III) by Fe(II) in the ferroxidase center of Pyrococcus furiosus ferritin.磷酸盐促进了 Pyrococcus furiosus 铁蛋白铁氧还蛋白中心的 Fe(III)被 Fe(II)取代。
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10
Evidence that residues exposed on the three-fold channels have active roles in the mechanism of ferritin iron incorporation.有证据表明,暴露在三重通道上的残基在铁蛋白铁掺入机制中发挥着积极作用。
Biochem J. 1996 Jul 15;317 ( Pt 2)(Pt 2):467-73. doi: 10.1042/bj3170467.

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本文引用的文献

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Processing of X-ray diffraction data collected in oscillation mode.振荡模式下收集的X射线衍射数据的处理。
Methods Enzymol. 1997;276:307-26. doi: 10.1016/S0076-6879(97)76066-X.
2
Protein association and dissociation regulated by ferric ion: a novel pathway for oxidative deposition of iron in pea seed ferritin.铁离子调控的蛋白质缔合与解离:豌豆种子铁蛋白中铁氧化沉积的新途径。
J Biol Chem. 2009 Jun 19;284(25):16743-16751. doi: 10.1074/jbc.M109.011528. Epub 2009 Apr 27.
3
GATED PORES IN THE FERRITIN PROTEIN NANOCAGE.铁蛋白蛋白质纳米笼中的门控孔道。
Inorganica Chim Acta. 2008 Mar 3;361(4):868-874. doi: 10.1016/j.ica.2007.08.025.
4
Two different H-type subunits from pea seed (Pisum sativum) ferritin that are responsible for fast Fe(II) oxidation.来自豌豆种子(豌豆)铁蛋白的两种不同的H型亚基,它们负责快速氧化亚铁离子。
Biochimie. 2009 Feb;91(2):230-9. doi: 10.1016/j.biochi.2008.09.008. Epub 2008 Oct 17.
5
Ferritins: a family of molecules for iron storage, antioxidation and more.铁蛋白:一类用于铁储存、抗氧化等功能的分子家族。
Biochim Biophys Acta. 2009 Jul;1790(7):589-99. doi: 10.1016/j.bbagen.2008.09.004. Epub 2008 Sep 26.
6
A novel ferritin gene, SferH-5, reveals heterogeneity of the 26.5-kDa subunit of soybean (Glycine max) seed ferritin.一种新的铁蛋白基因SferH-5揭示了大豆(Glycine max)种子铁蛋白26.5 kDa亚基的异质性。
FEBS Lett. 2007 Dec 22;581(30):5796-802. doi: 10.1016/j.febslet.2007.11.049. Epub 2007 Nov 26.
7
Construction of homo- and heteropolymers of plant ferritin subunits using an in vitro protein expression system.利用体外蛋白质表达系统构建植物铁蛋白亚基的同聚物和杂聚物。
Protein Expr Purif. 2007 Dec;56(2):237-46. doi: 10.1016/j.pep.2007.07.011. Epub 2007 Aug 26.
8
High-resolution X-ray structures of human apoferritin H-chain mutants correlated with their activity and metal-binding sites.人脱铁铁蛋白H链突变体的高分辨率X射线结构与其活性和金属结合位点的相关性
J Mol Biol. 2007 Jan 12;365(2):440-52. doi: 10.1016/j.jmb.2006.10.010. Epub 2006 Oct 7.
9
Crystal structure of a secreted insect ferritin reveals a symmetrical arrangement of heavy and light chains.一种分泌型昆虫铁蛋白的晶体结构揭示了重链和轻链的对称排列。
J Mol Biol. 2005 Jun 10;349(3):558-69. doi: 10.1016/j.jmb.2005.03.074. Epub 2005 Apr 12.
10
Coot: model-building tools for molecular graphics.Coot:分子图形的模型构建工具。
Acta Crystallogr D Biol Crystallogr. 2004 Dec;60(Pt 12 Pt 1):2126-32. doi: 10.1107/S0907444904019158. Epub 2004 Nov 26.

植物铁蛋白的晶体结构揭示了一个新的金属结合位点,该位点在铁蛋白中作为金属转移的过渡位点发挥作用。

Crystal structure of plant ferritin reveals a novel metal binding site that functions as a transit site for metal transfer in ferritin.

机构信息

From the Laboratory of Food Quality Design and Development, Division of Agronomy and Horticultural Science, Graduate School of Agriculture, Kyoto University, Gokasho, Uji, Kyoto 611-0011.

the Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Electric Power Industry, 1646 Abiko, Abiko, Chiba 270-1194, Japan.

出版信息

J Biol Chem. 2010 Feb 5;285(6):4049-4059. doi: 10.1074/jbc.M109.059790. Epub 2009 Dec 9.

DOI:10.1074/jbc.M109.059790
PMID:20007325
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2823546/
Abstract

Ferritins are important iron storage and detoxification proteins that are widely distributed in living kingdoms. Because plant ferritin possesses both a ferroxidase site and a ferrihydrite nucleation site, it is a suitable model for studying the mechanism of iron storage in ferritin. This article presents for the first time the crystal structure of a plant ferritin from soybean at 1.8-A resolution. The soybean ferritin 4 (SFER4) had a high structural similarity to vertebrate ferritin, except for the N-terminal extension region, the C-terminal short helix E, and the end of the BC-loop. Similar to the crystal structures of other ferritins, metal binding sites were observed in the iron entry channel, ferroxidase center, and nucleation site of SFER4. In addition to these conventional sites, a novel metal binding site was discovered intermediate between the iron entry channel and the ferroxidase site. This site was coordinated by the acidic side chain of Glu(173) and carbonyl oxygen of Thr(168), which correspond, respectively, to Glu(140) and Thr(135) of human H chain ferritin according to their sequences. A comparison of the ferroxidase activities of the native and the E173A mutant of SFER4 clearly showed a delay in the iron oxidation rate of the mutant. This indicated that the glutamate residue functions as a transit site of iron from the 3-fold entry channel to the ferroxidase site, which may be universal among ferritins.

摘要

铁蛋白是一种重要的铁储存和解毒蛋白,广泛分布于各个生物领域。由于植物铁蛋白具有亚铁氧化酶活性中心和磁铁矿成核位点,因此它是研究铁蛋白中铁储存机制的理想模型。本文首次报道了大豆植物铁蛋白(SFER4)的晶体结构,分辨率为 1.8Å。SFER4 与脊椎动物铁蛋白具有高度的结构相似性,除了 N 端延伸区、C 端短螺旋 E 和 BC 环末端。与其他铁蛋白的晶体结构相似,在 SFER4 的铁进入通道、亚铁氧化酶中心和成核位点观察到金属结合位点。除了这些常规位点外,还发现了一个位于铁进入通道和亚铁氧化酶中心之间的新的金属结合位点。该位点由 Glu(173)的酸性侧链和 Thr(168)的羰基氧配位,根据其序列,分别对应于人 H 链铁蛋白中的 Glu(140)和 Thr(135)。SFER4 的天然酶和 E173A 突变体的亚铁氧化酶活性比较清楚地表明,突变体的铁氧化速率延迟。这表明谷氨酸残基作为铁从三配位进入通道到亚铁氧化酶中心的转运位点,这可能在所有铁蛋白中都是普遍存在的。