Berner I, Winkelmann G
Universität Tübingen, Federal Republic of Germany.
Biol Met. 1990;2(4):197-202. doi: 10.1007/BF01141359.
Iron deprivation of Erwinia herbicola (Enterobacter agglomerans) induces the biosynthesis of six high-Mr outer-membrane proteins and large amounts of ferrioxamine E. Mutagenesis with N-methyl-N'-nitro-N-nitrosoguanidine and selection with ferrimycin A yielded mutants of E. herbicola K4 (wild type), defective in the expression of a 76-kDa outer-membrane protein, as determined by SDS/polyacrylamide gel electrophoresis. While in bioassays wild-type cells showed growth promotion in the presence of ferrioxamines (B, D1, D2, E, G), enterobactin, citrate, ferrichrome and coprogen, these mutants failed to respond to ferrioxamines. Moreover, experiments with 55Fe-labelled siderophores confirmed that iron transport mediated by ferrioxamine E and B in the mutants was completely inhibited, whereas iron transport by other hydroxamate siderophores, such as ferrichrome and coprogen was unaffected. The results are evidence that the 76-kDa protein in the outer membrane represents the receptor protein (FoxA) for ferrioxamines in E. herbicola.
剥夺草本欧文氏菌(成团肠杆菌)的铁会诱导6种高分子量外膜蛋白的生物合成以及大量铁载体E的合成。用N-甲基-N'-硝基-N-亚硝基胍诱变并选用铁霉素A进行筛选,得到了草本欧文氏菌K4(野生型)的突变体,通过SDS/聚丙烯酰胺凝胶电泳测定,该突变体在表达一种76 kDa外膜蛋白方面存在缺陷。在生物测定中,野生型细胞在铁载体(B、D1、D2、E、G)、肠杆菌素、柠檬酸盐、高铁色素和粪生绿素存在的情况下表现出生长促进作用,而这些突变体对铁载体没有反应。此外,用55Fe标记的铁载体进行的实验证实,突变体中铁载体E和B介导的铁转运被完全抑制,而其他异羟肟酸铁载体(如高铁色素和粪生绿素)介导的铁转运不受影响。结果证明,外膜中的76 kDa蛋白代表了草本欧文氏菌中铁载体的受体蛋白(FoxA)。