Haas Hubertus, Schoeser Michelle, Lesuisse Emmanuel, Ernst Joachim F, Parson Walther, Abt Beate, Winkelmann Günther, Oberegger Harald
Department of Molecular Biology, University of Innsbruck, Austria.
Biochem J. 2003 Apr 15;371(Pt 2):505-13. doi: 10.1042/BJ20021685.
The filamentous ascomycete Aspergillus nidulans produces three major siderophores: fusigen, triacetylfusarinine C, and ferricrocin. Biosynthesis and uptake of iron from these siderophores, as well as from various heterologous siderophores, is repressed by iron and this regulation is mediated in part by the transcriptional repressor SREA. Recently we have characterized a putative siderophore-transporter-encoding gene ( mirA ). Here we present the characterization of two further SREA- and iron-regulated paralogues (mirB and mirC ), including the chromosomal localization and the complete exon/intron structure. Expression of mirA and mirB in a Saccharomyces cerevisiae strain, which lacks high affinity iron transport systems, showed that MIRA transports specifically the heterologous siderophore enterobactin and that MIRB transports exclusively the native siderophore triacetylfusarinine C. Construction and analysis of an A. nidulans mirA deletion mutant confirmed the substrate specificity of MIRA. Phylogenetic analysis of the available sequences suggests that the split of the species A. nidulans and S. cerevisiae predates the divergence of the paralogous Aspergillus siderophore transporters.
fusigen、三乙酰铁载体C和铁曲霉红素。铁会抑制从这些铁载体以及各种异源铁载体中合成和摄取铁,这种调节部分由转录抑制因子SREA介导。最近,我们对一个假定的铁载体转运蛋白编码基因(mirA)进行了表征。在此,我们展示了另外两个受SREA和铁调节的旁系同源基因(mirB和mirC)的表征,包括染色体定位和完整的外显子/内含子结构。在缺乏高亲和力铁转运系统的酿酒酵母菌株中对mirA和mirB的表达进行研究,结果表明MIRA特异性转运异源铁载体肠杆菌素,而MIRB仅转运天然铁载体三乙酰铁载体C。对构巢曲霉mirA缺失突变体的构建和分析证实了MIRA的底物特异性。对现有序列的系统发育分析表明,构巢曲霉和酿酒酵母物种的分化早于曲霉属铁载体转运蛋白旁系同源基因的分歧。