Shaik Md Munan, Cendron Laura, Salamina Marco, Ruzzene Maria, Zanotti Giuseppe
Department of Biomedical Sciences, University of Padua, Viale G. Colombo 3, 35131, Padua, Italy.
Mol Microbiol. 2014 Feb;91(4):724-35. doi: 10.1111/mmi.12487. Epub 2014 Jan 7.
In Gram-negative bacteria, nickel uptake is guaranteed by multiple and complex systems that operate at the membrane and periplasmic level. Helicobacter pylori employs other yet uncharacterized systems to import the nickel required for the maturation of key enzymes, such as urease and hydrogenase. H. pylori CeuE protein (HP1561), previously annotated as the periplasmic component of an ATP-binding cassette (ABC)-type transporter apparatus responsible of haem/siderophores or other Fe(III)-complexes uptake, has been recently proposed to be on the contrary involved in nickel/cobalt acquisition. In this work, the crystal structure of H. pylori CeuE has been determined at 1.65 Å resolution using the single anomalous dispersion (SAD) method. It comprises two structurally similar globular domains, each consisting of a central five-stranded β-sheet surrounded by α-helices, an arrangement commonly classified as a Rossmann-like fold. Structurally, H. pylori CeuE belongs to the class III periplasmic substrate-binding protein. Both crystallographic data and fluorescence binding assays allow to exclude a role of the protein in the transport of Vitamin B12, enterobactin, haem and isolated Ni(2+) ions. On the contrary, the crystal structure and plasmon resonance studies about CeuE/Ni-(l-His)2 complex indicate that in H. pylori nickel transport is supported by CeuE protein and requires the presence of a natural nickelophore, analogously to what has been recently demonstrated for NikA from Escherichia coli.
在革兰氏阴性菌中,镍的摄取由在细胞膜和周质水平起作用的多个复杂系统来保证。幽门螺杆菌利用其他尚未明确的系统来导入关键酶(如脲酶和氢化酶)成熟所需的镍。幽门螺杆菌CeuE蛋白(HP1561),先前被注释为负责摄取血红素/铁载体或其他铁(III)复合物的ATP结合盒(ABC)型转运体装置的周质成分,最近有人提出它反而参与镍/钴的获取。在这项工作中;利用单波长反常散射(SAD)方法,以1.65 Å的分辨率测定了幽门螺杆菌CeuE的晶体结构。它由两个结构相似的球状结构域组成,每个结构域由一个中央的五链β折叠片层和周围的α螺旋组成,这种排列通常被归类为类Rossmann折叠。从结构上看,幽门螺杆菌CeuE属于III类周质底物结合蛋白。晶体学数据和荧光结合试验都排除了该蛋白在维生素B12、肠杆菌素、血红素和游离Ni(2+)离子转运中的作用。相反,关于CeuE/Ni-(l-His)2复合物的晶体结构和表面等离子体共振研究表明,在幽门螺杆菌中,镍的转运由CeuE蛋白支持,并且需要天然镍载体的存在,这与最近对大肠杆菌NikA的研究结果类似。