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树状微杆菌 Dps 蛋白的铁转运结构与机制。

Structure and mechanism of iron translocation by a Dps protein from Microbacterium arborescens.

机构信息

Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology, Hans-Knöll-Strasse 8, D-07745 Jena, Germany.

出版信息

J Biol Chem. 2011 Oct 7;286(40):34872-82. doi: 10.1074/jbc.M111.246108. Epub 2011 Jul 16.

Abstract

Dps (DNA protection during starvation) enzymes are a major class of dodecameric proteins that bacteria use to detoxify their cytosol through the uptake of reactive iron species. In the stationary growth phase of bacteria, Dps enzymes are primarily used to protect DNA by biocrystallization. To characterize the wild type Dps protein from Microbacterium arborescens that displays additional catalytic functions (amide hydrolysis and synthesis), we determined the crystal structure to a resolution of 2.05 Å at low iron content. The structure shows a single iron at the ferroxidase center coordinated by an oxo atom, one water molecule, and three ligating residues. An iron-enriched protein structure was obtained at 2 Å and shows the stepwise uptake of two hexahydrated iron atoms moving along channels at the 3-fold axis before a restriction site inside the channels requires removal of the hydration sphere. Supporting biochemical data provide insight into the regulation of this acylamino acid hydrolase. Moreover, the peroxidase activity of the protein was determined. The influence of iron and siderophores on the expression of acylamino acid hydrolase was monitored during several stages of cell growth. Altogether our data provide an interesting view of an unusual Dps-like enzyme evolutionarily located apart from the large Dps sequence clusters.

摘要

Dps(饥饿期 DNA 保护)酶是一类主要的十二聚体蛋白,细菌通过摄取反应性铁物种来使细胞质解毒。在细菌的静止生长阶段,Dps 酶主要通过生物结晶化来保护 DNA。为了表征具有额外催化功能(酰胺水解和合成)的 Microbacterium arborescens 野生型 Dps 蛋白,我们在低铁含量下将其晶体结构解析到 2.05 Å 的分辨率。结构显示铁氧化酶中心的单个铁由一个氧原子、一个水分子和三个配位残基配位。在 2 Å 处获得富含铁的蛋白质结构,并显示两个六水合铁原子沿着 3 倍轴的通道移动,然后在通道内的限制位点要求去除水合球之前,需要去除水合球。支持的生化数据提供了对这种酰基氨基酸水解酶调节的深入了解。此外,还测定了该蛋白的过氧化物酶活性。在细胞生长的几个阶段,监测铁和铁载体对酰基氨基酸水解酶表达的影响。总的来说,我们的数据提供了一个有趣的视角,展示了一种不寻常的 Dps 样酶的进化位置远离大型 Dps 序列簇。

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