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Iron uptake in Ustilago maydis: studies with fluorescent ferrichrome analogues

机译:在Ustilago Maydis的铁摄取:用荧光泡沫状物类似物的研究

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Iron uptake by the phytopathogenic fungus Ustilago maydis was studied using synthetic biomimetic ferrichrome analogues and their fluorescently labelled derivatives as structural and dynamic probes, respectively. The use of structurally distinct analogues enabled determination of the structural requirements for recognition by the fungal iron-uptake system. The application of fluorescently labelled derivatives which convert from a non-fluorescent to a fluorescent state upon iron (III) release enabled monitoring of iron uptake in real time both fluorimetrically and microscopically. Different rates of 55Fe uptake were found for two structurally distinct synthetic analogues, B9 and B5, which differ in their amino acid building blocks. B9 mediated uptake of 55Fe at a higher rate than B5. The behaviour of the fluorescent derivatives B9-Ant (anthracene-labelled B9) and B5-Ant (anthracene-labelled B5) paralleled that of their non-labelled precursors. Exposure of fungal cells to B9-Ant led to a higher increase of fluorescence in the medium than exposure to B5-Ant, indicating a more effective iron uptake from B9-Ant. By using fluorescence microscopy it was possible to trace the label of B9-Ant. Fluorescence was localized in regularly shaped vesicles in the treated cells. The rate of fluorescence appearance within the cells lagged behind the rate of iron uptake, suggesting use of the siderophores for iron storage.
机译:使用合成的生物摩托细胞类似物和它们的荧光标记的衍生物作为结构和动态探针,研究了植物疗法真菌Ustilago Mustilago的铁蛋白酶。使用结构不同的类似物使能真菌熨斗吸收系统的结构要求的结构要求。荧光标记的衍生物在铁(III)释放时从非荧光转化为荧光状态的衍生物,使得能够在荧光和微观上实时监测铁摄取。发现了两个结构不同的合成类似物,B9和B5的不同速率为55Fe摄取,其在其氨基酸构建块中不同。 B9介导比B5更高的速率的摄取55Fe。荧光衍生物B9-蚁(蒽标记B9)和B5-蚂蚁(蒽标记B5)的行为平行于其未标记的前体。真菌细胞暴露于B9-蚁导致培养基中荧光的较高增加,而不是暴露于B5-ant,表明来自B9-ant的更有效的铁吸收。通过使用荧光显微镜检查,可以追踪B9-ant的标记。荧光在经过处理的细胞中定位成规则形状的囊泡。细胞内的荧光外观速率落后于铁摄取的速率,建议使用铁储存的铁料。

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