Rodionov Dmitry A, Hebbeln Peter, Gelfand Mikhail S, Eitinger Thomas
The Burnham Institute, 10901 N. Torrey Pines Road, La Jolla, CA 92037, USA.
J Bacteriol. 2006 Jan;188(1):317-27. doi: 10.1128/JB.188.1.317-327.2006.
The transition metals nickel and cobalt, essential components of many enzymes, are taken up by specific transport systems of several different types. We integrated in silico and in vivo methods for the analysis of various protein families containing both nickel and cobalt transport systems in prokaryotes. For functional annotation of genes, we used two comparative genomic approaches: identification of regulatory signals and analysis of the genomic positions of genes encoding candidate nickel/cobalt transporters. The nickel-responsive repressor NikR regulates many nickel uptake systems, though the NikR-binding signal is divergent in various taxonomic groups of bacteria and archaea. B(12) riboswitches regulate most of the candidate cobalt transporters in bacteria. The nickel/cobalt transporter genes are often colocalized with genes for nickel-dependent or coenzyme B(12) biosynthesis enzymes. Nickel/cobalt transporters of different families, including the previously known NiCoT, UreH, and HupE/UreJ families of secondary systems and the NikABCDE ABC-type transporters, showed a mosaic distribution in prokaryotic genomes. In silico analyses identified CbiMNQO and NikMNQO as the most widespread groups of microbial transporters for cobalt and nickel ions. These unusual uptake systems contain an ABC protein (CbiO or NikO) but lack an extracytoplasmic solute-binding protein. Experimental analysis confirmed metal transport activity for three members of this family and demonstrated significant activity for a basic module (CbiMN) of the Salmonella enterica serovar Typhimurium transporter.
过渡金属镍和钴是许多酶的重要组成成分,可通过几种不同类型的特定转运系统被摄取。我们整合了计算机模拟和体内实验方法,以分析原核生物中包含镍和钴转运系统的各种蛋白质家族。对于基因的功能注释,我们使用了两种比较基因组学方法:鉴定调控信号和分析编码候选镍/钴转运蛋白的基因的基因组位置。镍响应阻遏蛋白NikR调节许多镍摄取系统,尽管NikR结合信号在细菌和古细菌的不同分类群中存在差异。维生素B12核糖开关调节细菌中的大多数候选钴转运蛋白。镍/钴转运蛋白基因通常与镍依赖性或辅酶B12生物合成酶的基因共定位。不同家族的镍/钴转运蛋白,包括先前已知的二级系统的NiCoT、UreH和HupE/UreJ家族以及NikABCDE ABC型转运蛋白,在原核生物基因组中呈镶嵌分布。计算机模拟分析确定CbiMNQO和NikMNQO是最广泛存在的微生物钴和镍离子转运蛋白组。这些不同寻常的摄取系统包含一个ABC蛋白(CbiO或NikO),但缺乏胞外溶质结合蛋白。实验分析证实了该家族三个成员的金属转运活性,并证明了鼠伤寒沙门氏菌血清型Typhimurium转运蛋白的一个基本模块(CbiMN)具有显著活性。