Page William J, Kwon Elena, Cornish Anthony S, Tindale Anne E
Department of Biological Sciences, University of Alberta, Edmonton, AB, Canada T6G 2E9.
FEMS Microbiol Lett. 2003 Nov 21;228(2):211-6. doi: 10.1016/S0378-1097(03)00753-5.
The csbX gene of Azotobacter vinelandii was regulated in an iron-repressible manner from a divergent promoter upstream of the catecholate siderophore biosynthesis (csb) operon and was predicted to encode an efflux pump of the major facilitator superfamily. Other proteins that were most similar to CsbX were encoded by genes found in the catecholate siderophore biosynthesis operons of Aeromonas hydrophila and Stigmatella aurantiaca. Inactivation of csbX resulted in 57-100% decrease in the amount of catecholates released when compared to the wild-type in iron-limited medium. CsbX was most important for the export of the high affinity chelator protochelin with the majority of the catecholates released by csbX mutants being the protochelin intermediates azotochelin and aminochelin.
棕色固氮菌的csbX基因由儿茶酚型铁载体生物合成(csb)操纵子上游的一个反向启动子以铁抑制方式调控,预计编码一个主要易化子超家族的外排泵。与CsbX最相似的其他蛋白质由嗜水气单胞菌和橙黄粘球菌儿茶酚型铁载体生物合成操纵子中的基因编码。与铁限制培养基中的野生型相比,csbX失活导致儿茶酚类物质释放量减少57%-100%。CsbX对高亲和力螯合剂原螯菌素的输出最为重要,csbX突变体释放的大部分儿茶酚类物质是原螯菌素中间体偶氮螯菌素和氨基螯菌素。