首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gram-positive siderophore-shuttle with iron-exchange from Fe-siderophore to apo-siderophore by Bacillus cereus YxeB
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Gram-positive siderophore-shuttle with iron-exchange from Fe-siderophore to apo-siderophore by Bacillus cereus YxeB

机译:蜡状芽孢杆菌YxeB将铁从铁铁载体转变为脱辅铁铁载体的革兰氏阳性铁载体穿梭

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摘要

Small molecule iron-chelators, siderophores, are very important in facilitating the acquisition of Fe(III), an essential element for pathogenic bacteria. Many Gram-negative outer-membrane transporters and Gram-positive lipoprotein siderophore-binding proteins have been characterized, and the binding ability of outer-membrane transporters and siderophore-binding proteins for Fe-siderophores has been determined. However, there is little information regarding the binding ability of these proteins for apo-siderophores, the iron-free chelators. Here we report that Bacillus cereus YxeB facilitates iron-exchange from Fe-siderophore to apo-siderophore bound to the protein, the first Gram-positive siderophore-shuttle system. YxeB binds ferrioxamine B (FO, Fe-siderophore)/desferrioxamine B (DFO, apo-siderophore) in vitro. Disc-diffusion assays and growth assays using the yxeB mutant reveal that YxeB is responsible for importing the FO. Cr-DFO (a FO analog) is bound by YxeB in vitro and B. cereus imports or binds Cr-DFO in vivo. In vivo uptake assays using Cr-DFO and FO and growth assays using DFO and Cr-DFO show that B. cereus selectively imports and uses FO when DFO is present. Moreover, in vitro competition assays using Cr-DFO and FO clearly demonstrate that YxeB binds only FO, not Cr-DFO, when DFO is bound to the protein. Iron-exchange from FO to DFO bound to YxeB must occur when DFO is initially bound by YxeB. Because the metal exchange rate is generally first order in replacement ligand concentration, protein binding of the apo-siderophore acts to dramatically enhance the iron exchange rate, a key component of the Gram-positive siderophore-shuttle mechanism.
机译:小分子铁螯合剂铁载体在促进铁(III)的获取方面非常重要,铁(III)是致病细菌的必需元素。已经表征了许多革兰氏阴性外膜转运蛋白和革兰氏阳性脂蛋白铁载体结合蛋白,并且测定了外膜转运蛋白和铁载体结合蛋白与Fe-铁载体的结合能力。但是,关于这些蛋白质与脱铁螯合剂apo-铁载体的结合能力的信息很少。在这里,我们报告蜡样芽孢杆菌YxeB促进铁交换从铁铁载体到载脂铁铁载体绑定到蛋白质,第一个革兰氏阳性铁载体穿梭系统。在体外,YxeB结合亚铁胺B(FO,铁-铁载体)/去铁胺B(DFO,脱铁-铁载体)。使用yxeB突变体的椎间盘扩散测定法和生长测定法表明,YxeB负责导入FO。 Cr-DFO(一种FO类似物)在体外与YxeB结合,蜡状芽孢杆菌在体内导入或结合Cr-DFO。使用Cr-DFO和FO的体内摄取测定以及使用DFO和Cr-DFO的生长测定表明蜡状芽孢杆菌在存在DFO时选择性地导入和使用FO。此外,使用Cr-DFO和FO进行的体外竞争分析清楚地表明,当DFO与蛋白质结合时,YxeB仅结合FO,而不结合Cr-DFO。当DFO最初受YxeB约束时,必须发生从FO到绑定到YxeB的DFO的铁交换。因为金属交换速率通常是置换配体浓度中的第一阶,所以载脂铁-铁载体的蛋白质结合可显着提高铁交换速率,铁交换速率是革兰氏阳性铁载体-穿梭机制的关键组成部分。

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