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首页> 外文期刊>Research in Microbiology >Analysis of desferrioxamine-like siderophores and their capability to selectively bind metals and metalloids: development of a robust analytical RP-HPLC method
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Analysis of desferrioxamine-like siderophores and their capability to selectively bind metals and metalloids: development of a robust analytical RP-HPLC method

机译:脱硫异胺状散发体的分析及其选择性结合金属和金属的能力:稳健分析RP-HPLC方法的发展

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摘要

The ActinobacteriumGordonia rubripertinctaCWB2 (DSM 46758) produces hydroxamate-type siderophores (188?mg?L?1) under iron limitation. Analytical reversed-phase HPLC allowed determining a single peak of ferric iron chelating compounds from culture broth which was confirmed by the Fe-CAS assay. Elution profile and its absorbance spectrum were similar to those of commercial (des)ferrioxamine B which was used as reference compound. This confirms previously made assumptions and shows for the first time that the genusGordoniaproduces desferrioxamine-like siderophores. The reversed-phase HPLC protocol was optimized to separate metal-free and -loaded oxamines. This allowed to determine siderophore concentrations in solutions as well as metal affinity. The metal loading of oxamines was confirmed by ICP-MS. As a result, it was demonstrated that desferrioxamine prefers trivalent metal ions (Fe3+?>?Ga3+?>?V3+?>?Al3+) over divalent ones. In addition, we aimed to show the applicability of the newly established reversed-phase HPLC protocol and to increase the re-usability of desferrioxamines as metal chelators by immobilization on mesocellular silica foam carriers. The siderophores obtained from strain CWB2 and commercial desferrioxamine B were successfully linked to the carrier with a high yield (up to 95%) which was verified by the HPLC method. Metal binding studies demonstrated that metals can be bound to non-immobilized and to the covalently linked desferrioxamines, but also to the carrier material itself. The latter was found to be unspecific and, therefore, the effect of the carrier material remains a field of future research. By means of a reversed CAS assay for various elements (Nd, Gd, La, Er, Al, Ga, V, Au, Fe, As) it was possible to demonstrate improved Ga3+- and Nd3+-binding to desferrioxamine loaded mesoporous silica carriers. The combination of the robust reversed-phase HPLC method and various CAS assays provides new avenues to screen for siderophore producing strains, and to control purification and immobilization of siderophores.
机译:在铁限制下,抗肌氨酸纤维蛋白摩擦妇女摩刺术(DSM 46758)生产羟肟酸酯型施工团(188×mg?1)。允许分析反相HPLC测定由Fe-CAS测定证实的培养肉汤中的铁铁螯合化合物的单峰。洗脱曲线及其吸光度谱类似于商业(DES)铁氧胺B的吸收光谱,其用作参考化合物。这证实了先前的假设,并且第一次显示了GenusgordonaIa使得脱硫异杂环胺状散发体的第一次。反相HPLC方案经过优化,可分离无金属和加载的氧氨酸。这使得可以确定溶液中的阳光浓度以及金属亲和力。通过ICP-MS确认氧胺的金属负载。结果,结果证明了除去的脱硫异杂环胺(Fe3 + +→β-β-β-β+→Δα,Δα,Δαα,Δαααα)。此外,我们旨在展示新建立的反相HPLC方案的适用性,并通过固定在Mesocellular硅泡沫泡沫载体上加工作为金属螯合剂的可重新使用性。从菌株CWB2和商业化脱氧胺B获得的施工团与载体成功与载体相连,高产率(高达95%)通过HPLC方法验证。金属结合研究表明,金属可以与不固定的和共价连接的除去氟胺结合,也可以与共价连接的除氟胺,而且还可以是载体材料本身。后者被发现是无特异性的,因此,载体材料的效果仍然是未来研究的领域。借助于各种元素的反向CAS测定(Nd,Gd,La,ER,Al,Ga,V,Au,Fe,As)可以证明改进的Ga 3 + - 和Nd3 + - 粘合到去除丙醇胺负载的介孔二氧化硅载体。鲁棒反相HPLC方法和各种CAS测定的组合为筛选的筛选提供了新的途径,并控制纯化和固定施用的施用。

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