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从异羟肟酸离子螯合物进行铁转运过程中的异羟肟酸识别。

Hydroxamate recognition during iron transport from hydroxamate-ion chelates.

作者信息

Haydon A H, Davis W B, Arceneaux J E, Byers B R

出版信息

J Bacteriol. 1973 Sep;115(3):912-8. doi: 10.1128/jb.115.3.912-918.1973.

Abstract

Kinetics of radioactive iron transport from three structurally different secondary hydroxamate-iron chelates (schizokinen-iron, produced by Bacillus megaterium ATCC 19213; Desferal-iron, produced by an actinomycete; and aerobactin-iron, produced by Aerobacter aerogenes 62-1) revealed that B. megaterium SK11 (a mutant which cannot synthesize schizokinen) has a specific transport system for utilization of ferric hydroxamates with a recognition capacity based on the chemical structure of the hydroxamate. Both Desferal and schizokinen enhanced iron uptake in this organism; however, Desferal-iron delivered only one-sixth the level of iron incorporated from the schizokinen-iron chelate. Desferal-iron did not generate the rapid rates of iron transport noted with schizokinen-iron at elevated iron concentrations. Assays containing large excesses of either iron-free Desferal or iron-free schizokinen suggested that the iron-free hydroxamate may compete with the ferric hydroxamate for acceptance by the transport system although the system has greater affinity for the iron chelate. Aerobactin-iron did not stimulate iron uptake in B. megaterium SK11 and aerobactin inhibited growth of this organism, indicating that B. megaterium SK11 cannot efficiently process the aerobactin-iron chelate.

摘要

对三种结构不同的次生异羟肟酸铁螯合物(巨大芽孢杆菌ATCC 19213产生的裂殖菌素铁、一种放线菌产生的去铁胺铁以及产气气杆菌62-1产生的气杆菌素铁)的放射性铁转运动力学研究表明,巨大芽孢杆菌SK11(一种无法合成裂殖菌素的突变体)具有一种特定的转运系统,用于利用基于异羟肟酸化学结构识别能力的高铁异羟肟酸盐。去铁胺和裂殖菌素均能增强该生物体对铁的摄取;然而,去铁胺铁从裂殖菌素铁螯合物中摄取的铁量仅为其六分之一。在高铁浓度下,去铁胺铁不会产生裂殖菌素铁所具有的快速铁转运速率。含有大量过量的无铁去铁胺或无铁裂殖菌素的实验表明,无铁异羟肟酸可能会与高铁异羟肟酸盐竞争被转运系统接受,尽管该系统对铁螯合物具有更高的亲和力。气杆菌素铁不会刺激巨大芽孢杆菌SK11摄取铁,并且气杆菌素会抑制该生物体的生长,这表明巨大芽孢杆菌SK11无法有效处理气杆菌素铁螯合物。

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