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首页> 外文期刊>Journal of Molecular Biology >Structural Basis of Novel Iron-Uptake Route and Reaction Intermediates in Ferritins from Gram-Negative Bacteria
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Structural Basis of Novel Iron-Uptake Route and Reaction Intermediates in Ferritins from Gram-Negative Bacteria

机译:来自革兰氏阴性细菌的新型熨烫途径和反应中间体的结构基础

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Iron and oxygen chemistry is mediated by iron proteins for many biological functions. Carboxylate-bridged diiron enzymes including ferritin have the common mechanism of oxygen activation via peroxodiferric intermediates. However, the route for iron uptake and the structural identification of intermediates still remain incomplete. The 4-fold symmetry channel of Helicobacter pylori ferritin was previously proposed as the iron-uptake route in eubacteria, but the amino acid residues at the 4-fold channel are not highly conserved. Here, we show evidence for a short path for iron uptake from His93 on the surface to the ferroxidase center in H. pylori ferritin and Escherichia coli ferritin. The amino acid residues along this path are highly conserved in Gram-negative bacteria and some archaea, and the mutants containing S20A and H93L showed significantly decreased iron oxidation. Surprisingly, the E. coli ferritin S20A crystal structure showed oxygen binding and side-on, symmetric mu-eta(2):eta(2) peroxodiferric and oxodiferric intermediates. The results provide the structural basis for understanding the chemical nature of intermediates in iron oxidation in bacteria and some of archaea. (C) 2016 Elsevier Ltd. All rights reserved.
机译:铁和氧化学由铁蛋白介导进行许多生物学功能。包括铁蛋白的羧酸盐桥接二氧酶具有通过过氧杂化中间体的氧活化的共同机制。然而,用于熨斗吸收的途径和中间体的结构鉴定仍然是不完整的。先前提出了幽门螺杆菌铁蛋白的4倍对称通道作为释放的熨烫途径,但4倍通道的氨基酸残基不受高度保守。在这里,我们显示了从H.幽门螺杆菌和大肠杆菌铁蛋白的表面中心到苯胺酶中心的铁酶中心从HIS93的熨斗吸收的短路的证据。沿着该途径的氨基酸残基在革兰氏阴性细菌中高度保守,并且一些古亚亚颗粒,并且含有S20A和H93L的突变体显示出显着降低的铁氧化。令人惊讶的是,大肠杆菌铁蛋白S20A晶体结构显示氧合含量和侧面,对称的MU-ETA(2):ETA(2)过氧化物和氧化过氧二种中间体。结果为了解细菌中铁氧化中间体的化学性质和一些古代古代的结构基础。 (c)2016 Elsevier有限公司保留所有权利。

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