首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Characterization of Fluorescent Siderophore-Mediated Iron Uptake in Pseudomonas sp. Strain M114: Evidence for the Existence of an Additional Ferric Siderophore Receptor
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Characterization of Fluorescent Siderophore-Mediated Iron Uptake in Pseudomonas sp. Strain M114: Evidence for the Existence of an Additional Ferric Siderophore Receptor

机译:荧光铁载体介导的假单胞菌sp中铁吸收的表征。 M114菌株:另一个铁铁载体受体存在的证据

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摘要

In Pseudomonas sp. strain M114, the outer membrane receptor for ferric pseudobactin M114 was shown to transport ferric pseudobactins B10 and A225, in addition to its own. The gene encoding this receptor, which was previously cloned on pCUP3, was localized by Tn5 mutagenesis to a region comprising >1.6 kb of M114 DNA. A mutant (strain M114R1) lacking this receptor was then created by a marker exchange technique. Characterization of this mutant by using purified pseudobactin M114 in radiolabeled ferric iron uptake studies confirmed that it was completely unable to utilize this siderophore for acquisition of iron. In addition, it lacked an outer membrane protein band of 89 kDa when subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis. As a result, growth of the mutant was severely restricted under low-iron conditions. However, this phenotype was reversed in the presence of another fluorescent siderophore (pseudobactin MT3A) from Pseudomonas sp. strain MT3A, suggesting the presence of a second receptor in strain M114. Furthermore, wild-type Pseudomonas sp. strain B24 was not able to utilize ferric pseudobactin MT3A, and this phenotype was not reversed upon expression of the M114 receptor encoded on pCUP3. However, a cosmid clone (pMS1047) that enabled strain B24 to utilize ferric pseudobactin MT3A was isolated from an M114 gene bank. Radiolabel transport assays with purified pseudobactin MT3A confirmed this event. Plasmid pMS1047 was shown to encode an outer membrane protein of 81 kDa in strain B24 under iron-limiting conditions; this protein corresponds to a similar protein in strain M114.
机译:在假单胞菌中。菌株M114,伪铁蛋白M114的外膜受体被证明除了自身还可以运输伪铁蛋白B10和A225。通过Tn5诱变将先前克隆在pCUP3上的编码该受体的基因定位到包含> 1.6 kb的M114 DNA的区域。然后通过标记交换技术创建了缺少该受体的突变体(菌株M114R1)。通过在放射标记的三价铁摄取研究中使用纯化的假杆菌素M114对该突变体进行表征,证实了它完全无法利用该铁载体来获得铁。另外,当进行十二烷基硫酸钠-聚丙烯酰胺凝胶电泳时,它缺少89 kDa的外膜蛋白带。结果,在低铁条件下,该突变体的生长受到严格限制。但是,这种表型在假单胞菌属的另一个荧光铁载体(假杆菌素MT3A)存在下被逆转。菌株MT3A,表明在菌株M114中存在第二个受体。此外,野生型假单胞菌sp。菌株B24不能利用伪铁蛋白MT3A,并且该表型在pCUP3上编码的M114受体表达后没有逆转。但是,从M114基因库中分离出了使菌株B24利用伪铁蛋白MT3A的粘粒克隆(pMS1047)。用纯化的假杆菌素MT3A进行放射性标记转运分析证实了这一事件。在限制铁的条件下,质粒pMS1047在B24株中编码81kDa的外膜蛋白。该蛋白质对应于菌株M114中的相似蛋白质。

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