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Catechol siderophores repress the pyochelin pathway and activate the enterobactin pathway in Pseudomonas aeruginosa: an opportunity for siderophore-antibiotic conjugates development

机译:儿茶酚铁载体可抑制铜绿假单胞菌中的Pyochelin途径并激活Enterobactin途径:铁载体-抗生素结合物的发展机会

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摘要

Previous studies have suggested that antibiotic vectorization by siderophores (iron chelators produced by bacteria) considerably increases the efficacy of such drugs. The siderophore serves as a vector: when the pathogen tries to take up iron via the siderophore, it also takes up the antibiotic. Catecholates are among the most common iron-chelating compounds used in synthetic siderophore-antibiotic conjugates. Using reverse transcription polymerase chain reaction and proteomic approaches, we showed that the presence of catecholate compounds in the medium of Pseudomonas aeruginosa led to strong activation of the transcription and expression of the outer membrane transporter PfeA, the ferri-enterobactin importer. Iron-55 uptake assays on bacteria with and without PfeA expression confirmed that catechol compounds imported iron into P. aeruginosa cells via PfeA. Uptake rates were between 0.3x10(3) and 2x10(3) Fe atoms/bacterium/min according to the used catechol siderophore in iron-restricted medium, and remained as high as 0.8x10(3) Fe atoms/bacterium/min for enterobactin, even in iron-rich medium. Reverse transcription polymerase chain reaction and proteomic approaches showed that in parallel to this switching on of PfeA expression, a repression of the expression of pyochelin (PCH) pathway genes (PCH being one of the two siderophores produced by P. aeruginosa for iron acquisition) was observed.
机译:先前的研究表明,铁载体(细菌产生的铁螯合剂)对抗生素进行矢量化处理可大大提高此类药物的功效。铁载体用作载体:当病原体试图通过铁载体吸收铁时,它也会吸收抗生素。儿茶酚盐是合成铁载体-抗生素结合物中最常用的铁螯合化合物。使用逆转录聚合酶链反应和蛋白质组学方法,我们表明铜绿假单胞菌培养基中儿茶酚类化合物的存在导致外膜转运蛋白PfeA(铁蛋白-肠杆菌素进口商)的转录和表达得到强烈激活。在有和没有PfeA表达的细菌上进行的铁55吸收分析证实,儿茶酚化合物通过PfeA将铁导入铜绿假单胞菌细胞中。根据铁限制培养基中所使用的儿茶酚铁载体,摄取速率介于0.3x10(3)和2x10(3)Fe原子/细菌/分钟之间,肠杆菌素的摄取率高达0.8x10(3)Fe原子/细菌/分钟,即使在铁含量高的培养基中。逆转录聚合酶链反应和蛋白质组学方法显示,与PfeA表达的这种开启同时,抑制了Pyochelin(PCH)途径基因的表达(PCH是铜绿假单胞菌产生的用于铁捕获的两个铁载体之一)。观测到的。

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