假单胞菌合成铁调控水杨酸盐。

P Visca, A Ciervo, V Sanfilippo, N Orsi
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引用次数: 149

摘要

从铜绿假单胞菌和洋葱假单胞菌型菌株的培养上清液中酸化乙酸乙酯提取物中发现了两种铁调节化合物。这两种化合物的合成与缺铁生长平行,并且在100微米- fecl3存在下受到抑制。这些物质的产率因菌株不同而不同,在固定阶段达到最大值。在5种不同溶剂体系中的薄层色谱分析表明,移动较慢的化合物在色谱上呈两个不同的谱带,并显示出与吡啶相似的RF值和光谱性质。在每个色谱系统中,快速移动的化合物与商用水杨酸标准共迁移为单个波段。此外,荧光假单胞菌CHA401也产生了具有相同RF的分子,已知其在铁限制生长过程中合成水杨酸作为唯一的铁载体。分光光度法和荧光光谱滴定法鉴定出这种铁调控化合物为水杨酸,与从1H-NMR和质谱推断出的结构一致。同时,还证实了洋葱黄铁素与水杨酸的同源性。水杨酸,像pyochelin和pyoverdin一样,促进铜绿假单胞菌在缺铁培养基中的生长。这些结果与水杨酸(即蓝绿素)的铁载体活性相一致,正如铜绿假单胞菌、荧光假单胞菌和洋葱假单胞菌所证明的那样。因此,水杨酸可能在属于假单胞菌属的不止一种物种中起铁载体的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Iron-regulated salicylate synthesis by Pseudomonas spp.

Two iron-regulated compounds have been found in acidified ethyl acetate extracts from culture supernatants of Pseudomonas aeruginosa and Pseudomonas cepacia type-strains. Synthesis of both compounds paralleled iron-deficient growth, and was repressed in the presence of 100 microM-FeCl3. Yields of these substances varied among different strains and attained maximum levels during stationary phase. Thin layer chromatographic analysis in five different solvent systems revealed that the slower-moving compound chromatographed as two distinct bands, and showed RF values and spectral properties similar to pyochelin. The faster-moving compound co-migrated as a single band with a standard of commercial salicylic acid in each of the chromatographic systems tested. Moreover, a molecule with an identical RF was also produced by Pseudomonas fluorescens CHA401, which is known to synthesize salicylic acid as the only siderophore during iron-limited growth. Spectrophotometric and spectrofluorometric titrations led to the identification of this iron-regulated compound as salicylic acid, in agreement with the structure deduced from 1H-NMR and mass spectroscopy. The identity of the P. cepacia siderophore azurechelin as salicylic acid was also conclusively demonstrated. Salicylic acid, like pyochelin and pyoverdin, promoted P. aeruginosa growth in an iron-depleted medium. These results are consistent with a putative siderophore activity for salicylic acid, i.e. azurechelin, as has been demonstrated for P. aeruginosa, P. fluorescens and P. cepacia. Thus, salicylic acid is likely to act as a siderophore in more than one species belonging to the genus Pseudomonas.

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