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来自耐辐射球菌的Dps的小角X射线散射结构研究突出了可移动N端延伸的构象。

SAXS Structural Studies of Dps from Deinococcus radiodurans Highlights the Conformation of the Mobile N-Terminal Extensions.

作者信息

Santos Sandra P, Cuypers Maxime G, Round Adam, Finet Stephanie, Narayanan Theyencheri, Mitchell Edward P, Romão Célia V

机构信息

ITQB-NOVA, Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Avenida da República, 2780-157 Oeiras, Portugal.

ESRF- The European Synchrotron, CS40220, 38043 Grenoble Cedex 9, France.

出版信息

J Mol Biol. 2017 Mar 10;429(5):667-687. doi: 10.1016/j.jmb.2017.01.008. Epub 2017 Jan 11.

Abstract

The radiation-resistant bacterium Deinococcus radiodurans contains two DNA-binding proteins from starved cells (Dps): Dps1 (DR2263) and Dps2 (DRB0092). These are suggested to play a role in DNA interaction and manganese and iron storage. The proteins assemble as a conserved dodecameric structure with structurally uncharacterised N-terminal extensions. In the case of DrDps1, these extensions have been proposed to be involved in DNA interactions, while in DrDps2, their function has yet to be established. The reported data reveal the relative position of the N-terminal extensions to the dodecameric sphere in solution for both Dps. The low-resolution small angle X-ray scattering (SAXS) results show that the N-terminal extensions protrude from the spherical shell of both proteins. The SAXS envelope of a truncated form of DrDps1 without the N-terminal extensions appears as a dodecameric sphere, contrasting strongly with the protrusions observed in the full-length models. The effect of iron incorporation into DrDps2 was investigated by static and stopped-flow SAXS measurements, revealing dynamic structural changes upon iron binding and core formation, as reflected by a quick alteration of its radius of gyration. The truncated and full-length versions of DrDps were also compared on the basis of their interaction with DNA to analyse functional roles of the N-terminal extensions. DrDps1 N-terminal protrusions appear to be directly involved with DNA, whilst those from DrDps2 are indirectly associated with DNA binding. Furthermore, detection of DrDps2 in the D. radiodurans membrane fraction suggests that the N-terminus of the protein interacts with the membrane.

摘要

耐辐射细菌耐辐射球菌含有两种来自饥饿细胞的DNA结合蛋白(Dps):Dps1(DR2263)和Dps2(DRB0092)。这些蛋白被认为在DNA相互作用以及锰和铁的储存中发挥作用。这些蛋白组装成具有结构未明确的N端延伸的保守十二聚体结构。就DrDps1而言,这些延伸被认为参与DNA相互作用,而对于DrDps2,其功能尚未确定。所报道的数据揭示了两种Dps在溶液中N端延伸相对于十二聚体球体的相对位置。低分辨率小角X射线散射(SAXS)结果表明,N端延伸从两种蛋白质的球壳中突出。没有N端延伸的截短形式的DrDps1的SAXS包络呈现为十二聚体球体,与全长模型中观察到的突出部分形成强烈对比。通过静态和停流SAXS测量研究了铁掺入DrDps2的影响,揭示了铁结合和核心形成时的动态结构变化,这通过其回转半径的快速改变得以体现。还基于它们与DNA的相互作用比较了截短和全长形式的DrDps,以分析N端延伸的功能作用。DrDps1的N端突出似乎直接参与DNA作用,而DrDps2的N端突出与DNA结合间接相关。此外,在耐辐射球菌膜组分中检测到DrDps2表明该蛋白的N端与膜相互作用。

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