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猪链球菌类Dps过氧化物抗性蛋白Dpr中铁的掺入需要在铁氧化酶中心具有流动性,并导致形成类水铁矿核心。

Iron incorporation in Streptococcus suis Dps-like peroxide resistance protein Dpr requires mobility in the ferroxidase center and leads to the formation of a ferrihydrite-like core.

作者信息

Kauko Anni, Pulliainen Arto T, Haataja Sauli, Meyer-Klaucke Wolfram, Finne Jukka, Papageorgiou Anastassios C

机构信息

Turku Centre for Biotechnology, University of Turku and Abo Akademi University, BioCity, Turku, Finland.

出版信息

J Mol Biol. 2006 Nov 17;364(1):97-109. doi: 10.1016/j.jmb.2006.08.061. Epub 2006 Aug 26.

Abstract

The Dps-like peroxide resistance protein (Dpr) is a dodecameric protein that protects the human and swine pathogen Streptococcus suis from hydrogen peroxide by removing free Fe2+ from the cytosol. Subsequent oxidation of iron by Dpr results in the deposition of Fe3+ inside the protein's central cavity. Structural changes that occur in the ferroxidase center were studied by X-ray crystallography after soaking Dpr crystals with Fe2+ in the presence of sodium dithionite. Twelve iron-binding sites were identified with each site formed by residues Asp74 and Glu78 from one subunit, and Asp63, His47 and His59 from a 2-fold symmetry-related subunit. Compared to the iron-free Dpr, Asp74 and Glu78 were found to be the most flexible amino acid residues and able to adopt a variety of conformations in different subunits. The crystal structure of an Asp74Ala Dpr mutant soaked with a Fe2+ -solution revealed variations in the Asp63 position and no iron bound to the ferroxidase center. These results indicate an intrinsic flexibility in the active site that may be important for the catalytic reaction and subsequent nucleation events. Two iron cores with remarkably different features were identified in Dpr using X-ray absorption spectroscopy. Purified Dpr was found to have a small-size iron core with only approximately 16 iron atoms/dodecamer forming a ferritin-like ferrihydrite structure. Because of its size, this core represents the smallest iron core identified so far in ferritins and other Dps-like proteins. A large-size core (approximately 180 iron atoms/dodecamer) formed after incubating the protein with a ferrous solution shows differences in iron coordination compared to the small size core. Characterization of the two iron cores in Dpr could provide insights into nucleation events and the mechanism of iron core growth in the Dps family of proteins.

摘要

类Dps过氧化物抗性蛋白(Dpr)是一种十二聚体蛋白,通过从胞质溶胶中去除游离的Fe2+来保护人类和猪病原体猪链球菌免受过氧化氢的侵害。随后,Dpr对铁的氧化导致Fe3+沉积在蛋白质的中央腔内。在用连二亚硫酸钠存在下用Fe2+浸泡Dpr晶体后,通过X射线晶体学研究了铁氧化酶中心发生的结构变化。鉴定出12个铁结合位点,每个位点由一个亚基的Asp74和Glu78残基以及一个2倍对称相关亚基的Asp63、His47和His59形成。与无铁的Dpr相比,发现Asp74和Glu78是最灵活的氨基酸残基,并且能够在不同亚基中采用多种构象。用Fe2+溶液浸泡的Asp74Ala Dpr突变体的晶体结构显示Asp63位置有变化,并且没有铁与铁氧化酶中心结合。这些结果表明活性位点具有内在的灵活性,这可能对催化反应和随后的成核事件很重要。使用X射线吸收光谱法在Dpr中鉴定出两个具有明显不同特征的铁芯。发现纯化的Dpr具有一个小尺寸的铁芯,每个十二聚体中只有大约16个铁原子形成类似铁蛋白的水铁矿结构核。由于其尺寸,这个铁芯代表了迄今为止在铁蛋白和其他类Dps蛋白中鉴定出的最小铁芯。在用亚铁溶液孵育蛋白质后形成的大尺寸铁芯(每个十二聚体约180个铁原子)与小尺寸铁芯相比,在铁配位方面存在差异。对Dpr中两个铁芯的表征可以为Dps家族蛋白质的成核事件和铁芯生长机制提供见解。

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