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PchC Thioesterase Optimizes Nonribosomal Biosynthesis of the Peptide Siderophore Pyochelin in Pseudomonas aeruginosa

机译:PchC硫酯酶可优化铜绿假单胞菌中肽铁载体泛球菌素的非核糖体生物合成

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摘要

In Pseudomonas aeruginosa, the antibiotic dihydroaeruginoate (Dha) and the siderophore pyochelin are produced from salicylate and cysteine by a thiotemplate mechanism involving the peptide synthetases PchE and PchF. A thioesterase encoded by the pchC gene was found to be necessary for maximal production of both Dha and pyochelin, but it was not required for Dha release from PchE and could not replace the thioesterase function specified by the C-terminal domain of PchF. In vitro, 2-aminobutyrate, a cysteine analog, was adenylated by purified PchE and PchF proteins. In vivo, this analog strongly interfered with Dha and pyochelin formation in a pchC deletion mutant but affected production of these metabolites only slightly in the wild type. Exogenously supplied cysteine overcame the negative effect of a pchC mutation to a large extent, whereas addition of salicylate did not. These data are in agreement with a role for PchC as an editing enzyme that removes wrongly charged molecules from the peptidyl carrier protein domains of PchE and PchF.
机译:在铜绿假单胞菌中,通过涉及肽合成酶PchE和PchF的硫代模板机理,由水杨酸盐和半胱氨酸生产抗生素二氢烟酸铝盐(Dha)和铁载体的泛黄素。发现由pchC基因编码的硫酯酶对于Dha和Pyochelin的最大产量都是必需的,但Dha从PchE释放并不是必需的,并且不能取代PchF C端结构域指定的硫酯酶功能。在体外,半胱氨酸类似物2-氨基丁酸酯被纯化的PchE和PchF蛋白腺苷化。在体内,该类似物强烈干扰pchC缺失突变体中的Dha和Pyochelin形成,但在野生型中仅轻微影响这些代谢产物的产生。外源提供的半胱氨酸在很大程度上克服了pchC突变的负面影响,而水杨酸酯的添加却没有。这些数据与PchC作为编辑酶的作用一致,PchC从PchE和PchF的肽基载体蛋白结构域中去除了带错电荷的分子。

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