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解铁载体-穿梭蛋白,来自蜡样芽胞杆菌 YxeB 的铁载体交换,从 Fe-铁载体到 apo-铁载体。

Gram-positive siderophore-shuttle with iron-exchange from Fe-siderophore to apo-siderophore by Bacillus cereus YxeB.

机构信息

Department of Chemistry, University of California, Berkeley, CA 94720-1460, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Aug 20;110(34):13821-6. doi: 10.1073/pnas.1304235110. Epub 2013 Aug 7.

Abstract

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.

摘要

小分子铁螯合剂( siderophores )在促进铁( III )(一种对致病菌至关重要的元素)的获取方面非常重要。许多革兰氏阴性外膜转运体和革兰氏阳性脂蛋白 siderophore-结合蛋白已经被描述,并且已经确定了外膜转运体和 siderophore-结合蛋白对 Fe-siderophores 的结合能力。然而,关于这些蛋白质对 apo-siderophores(无铁螯合剂)的结合能力的信息很少。在这里,我们报道了蜡状芽孢杆菌 YxeB 促进了从 Fe-siderophore 到与蛋白质结合的 apo-siderophore 的铁交换,这是第一个革兰氏阳性 siderophore-穿梭系统。YxeB 在体外结合 ferrioxamine B(FO,Fe-siderophore)/desferrioxamine B(DFO,apo-siderophore)。盘扩散试验和使用 yxeB 突变体的生长试验表明,YxeB 负责导入 FO。Cr-DFO(FO 的类似物)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 的体内摄取试验和使用 DFO 和 Cr-DFO 的生长试验表明,当 DFO 存在时,蜡状芽孢杆菌选择性地导入和使用 FO。此外,使用 Cr-DFO 和 FO 的体外竞争试验清楚地表明,当 DFO 与蛋白质结合时,YxeB 仅结合 FO,不结合 Cr-DFO。当 DFO 最初与 YxeB 结合时,必须从 FO 发生向 YxeB 结合的 DFO 的铁交换。由于金属交换速率通常在取代配体浓度的一级,因此 apo-siderophore 的蛋白质结合作用显著增强了铁交换速率,这是革兰氏阳性 siderophore-穿梭机制的关键组成部分。

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