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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The first crystal structure of class III superoxide reductase from Treponema pallidum
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The first crystal structure of class III superoxide reductase from Treponema pallidum

机译:梅毒螺旋体第III类超氧化物还原酶的第一个晶体结构

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Superoxide reductase (SOR) is a metalloprotein containing a non-heme iron centre, responsible for the scavenging of superoxide radicals in the cell. The crystal structure of Treponema pallidum (Tp) SOR was determined using soft X-rays and synchrotron radiation. Crystals of the oxidized form were obtained using poly(ethylene glycol) and MgCl2 and diffracted beyond 1.55 angstrom resolution. The overall architecture is very similar to that of other known SORs but TpSOR contains an N-terminal domain in which the desulforedoxin-type Fe centre, found in other SORs, is absent. This domain conserves the beta-barrel topology with an overall arrangement very similar to that of other SOR proteins where the centre is present. The absence of the iron ion and its ligands, however, causes a decrease in the cohesion of the domain and some disorder is observed, particularly in the region where the metal would be harboured. The C-terminal domain exhibits the characteristic immunoglobulin-like fold and harbours the Fe(His)(4)(Cys) active site. The five ligands of the iron centre are well conserved despite some disorder observed for one of the four molecules in the asymmetric unit. The participation of a glutamate as the sixth ligand of some of the iron centres in Pyrococcus furiosus SOR was not observed in TpSOR. A possible explanation is that either X-ray photoreduction occurred or there was a mixture of redox states at the start of data collection. In agreement with earlier proposals, details in the TpSOR structure also suggest that Lys49 might be involved in attraction of superoxide to the active site.
机译:超氧化物还原酶(SOR)是一种含有非血红素铁中心的金属蛋白,负责清除细胞中的超氧化物自由基。使用软X射线和同步加速器辐射确定了梅毒螺旋体(Tp)SOR的晶体结构。使用聚(乙二醇)和MgCl 2获得氧化形式的晶体,并衍射超过1.55埃的分辨率。总体结构与其他已知SOR非常相似,但TpSOR包含一个N末端域,其中不存在在其他SOR中发现的脱硫毒素型Fe中心。该结构域以与存在该中心的其他SOR蛋白非常相似的总体布局保护着β-桶形拓扑。但是,不存在铁离子及其配体会导致结构域的内聚力降低,并且会观察到一些无序现象,特别是在将要捕获金属的区域。 C末端域展现出特征性的免疫球蛋白样折叠,并具有Fe(His)(4)(Cys)活性位点。尽管对于不对称单元中的四个分子之一观察到一些无序,但铁中心的五个配体是非常保守的。在TpSOR中未观察到谷氨酸作为激烈热球菌SOR中某些铁中心的第六配体的参与。可能的解释是,在数据收集开始时发生了X射线光还原或存在混合的氧化还原状态。与早期的提议一致,TpSOR结构中的细节也表明Lys49可能参与了超氧化物对活性位点的吸引。

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