Havukainen Heli, Haataja Sauli, Kauko Anni, Pulliainen Arto T, Salminen Annika, Haikarainen Teemu, Finne Jukka, Papageorgiou Anastassios C
Turku Centre for Biotechnology, University of Turku, Turku 20521, Finland.
Protein Sci. 2008 Sep;17(9):1513-21. doi: 10.1110/ps.036236.108. Epub 2008 Jun 13.
Streptococcus suis Dpr is an iron-binding protein involved in oxidative stress resistance. It belongs to the bacterial Dps protein family whose members form dodecameric assemblies. Previous studies have shown that zinc and terbium inhibit iron incorporation in Listeria innocua Dps protein. In order to gain structural insights into the inhibitory effect of zinc and terbium, the crystal structures of Streptococcus suis Dpr complexes with these ions were determined at 1.8 A and 2.1 A, respectively. Both ions were found to bind at the ferroxidase center and in the same location as iron. In addition, a novel zinc-binding site formed by His40 and His44 was identified. Both His residues were found to be present within all known Streptococcus suis Dpr variants and in Streptococcus pneumoniae, Streptococcus gordonii, and Streptococcus sanguinis Dpr proteins. Amino acid sequence alignment of Dpr with other Dps family members revealed that His44 is highly conserved, in contrast to His40. The inhibitory effect of zinc and terbium on iron oxidation in Dpr was studied in vitro, and it was found that both ions at concentrations >0.2 mM almost completely abolish iron binding. These results provide a structural basis for the inhibitory effect of zinc and terbium in the Dps family of proteins, and suggest a potential role of the Dps proteins in zinc detoxification mechanisms involving the second zinc-binding site.
猪链球菌Dpr是一种参与抗氧化应激的铁结合蛋白。它属于细菌Dps蛋白家族,其成员形成十二聚体组装体。先前的研究表明,锌和铽会抑制无害李斯特菌Dps蛋白中铁的掺入。为了深入了解锌和铽的抑制作用的结构基础,分别在1.8 Å和2.1 Å分辨率下测定了猪链球菌Dpr与这些离子的复合物的晶体结构。发现这两种离子都结合在铁氧化酶中心,且与铁的结合位置相同。此外,还鉴定了一个由His40和His44形成的新的锌结合位点。发现所有已知的猪链球菌Dpr变体以及肺炎链球菌、戈登链球菌和血链球菌的Dpr蛋白中都存在这两个组氨酸残基。Dpr与其他Dps家族成员的氨基酸序列比对显示,与His40不同,His44高度保守。在体外研究了锌和铽对Dpr中铁氧化的抑制作用,发现浓度>0.2 mM的这两种离子几乎完全消除了铁的结合。这些结果为锌和铽在Dps蛋白家族中的抑制作用提供了结构基础,并提示了Dps蛋白在涉及第二个锌结合位点的锌解毒机制中的潜在作用。