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首页> 外文期刊>BioMetals >EfeO-cupredoxins: major new members of the cupredoxin superfamily with roles in bacterial iron transport
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EfeO-cupredoxins: major new members of the cupredoxin superfamily with roles in bacterial iron transport

机译:EfeO-铜氧还蛋白:铜氧还蛋白超家族的主要新成员,在细菌铁运输中发挥作用

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摘要

The EfeUOB system of Escherichia coli is a tripartite, low pH, ferrous iron transporter. It resembles the high-affinity iron transporter (Ftr1p-Fet3p) of yeast in that EfeU is homologous to Ftr1p, an integral-membrane iron-permease. However, EfeUOB lacks an equivalent of the Fet3p component—the multicopper oxidase with three cupredoxin-like domains. EfeO and EfeB are periplasmic but their precise roles are unclear. EfeO consists primarily of a C-terminal peptidase-M75 domain with a conserved ‘HxxE’ motif potentially involved in metal binding. The smaller N-terminal domain (EfeO-N) is predicted to be cupredoxin (Cup) like, suggesting a previously unrecognised similarity between EfeO and Fet3p. Our structural modelling of the E. coli EfeO Cup domain identifies two potential metal-binding sites. Site I is predicted to bind Cu2+ using three conserved residues (C41 and 103, and E66) and M101. Of these, only one (C103) is conserved in classical cupredoxins where it also acts as a Cu ligand. Site II most probably binds Fe3+ and consists of four well conserved surface Glu residues. Phylogenetic analysis indicates that the EfeO-Cup domains form a novel Cup family, designated the ‘EfeO-Cup’ family. Structural modelling of two other representative EfeO-Cup domains indicates that different subfamilies employ distinct ligand sets at their proposed metal-binding sites. The ~100 efeO homologues in the bacterial sequence databases are all associated with various iron-transport related genes indicating a common role for EfeO-Cup proteins in iron transport, supporting a new copper-iron connection in biology. Keywords Iron transport - Homology modelling - Cupredoxin - Electron transfer - GRID prediction - Metal binding site - DUF451 - Peptidase-M75
机译:大肠杆菌的EfeUOB系统是三方,低pH值的亚铁转运体。它与酵母的高亲和力铁转运蛋白(Ftr1p-Fet3p)相似,因为EfeU与完整膜铁通透酶Ftr1p同源。但是,EfeUOB缺少Fet3p组分的等效物-具有三个类似氧化铜的结构域的多铜氧化酶。 EfeO和EfeB是周质的,但其确切作用尚不清楚。 EfeO主要由C端肽酶M75结构域组成,带有保守的“ HxxE”基序,可能与金属结合。较小的N末端结构域(EfeO-N)预计为铜氧还蛋白(Cup),表明EfeO和Fet3p之间以前未被认识的相似性。我们对大肠杆菌EfeO杯结构域的结构建模确定了两个潜在的金属结合位点。使用三个保守的残基(C41和103,以及E66)和M101预测位点I与Cu 2 + 结合。其中,在传统的铜氧还蛋白中,只有一个(C103)是保守的,在铜氧化还用作铜配体中。位点II最有可能结合Fe 3 + ,由四个保存良好的表面Glu残基组成。系统发育分析表明,EfeO-Cup域构成了一个新的Cup家族,称为“ EfeO-Cup”家族。其他两个代表性的EfeO-Cup域的结构模型表明,不同的亚家族在其提议的金属结合位点采用不同的配体集。细菌序列数据库中约100个efeO同源物均与各种铁运输相关基因相关,表明EfeO-Cup蛋白在铁运输中具有共同作用,支持生物学中的新铜铁连接。关键词铁运输-同源性建模-铜氧还蛋白-电子转移-GRID预测-金属结合位点-DUF451-肽酶-M75

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