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Insight into Siderophore-Carrying Peptide Biosynthesis: Enterobactin Is a Precursor for Microcin E492 Posttranslational Modification▿

机译:洞悉铁载体的肽生物合成的见解:Enterobactin是Microcin E492翻译后修饰的前身▿

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摘要

Microcin E492-producing bacteria secrete both unmodified and posttranslationally modified microcins. The modification consists of a C-glucosylated linear trimer of N-(2,3-dihydroxybenzoyl)-l-serine, a catecholate siderophore related to salmochelins and enterobactin. We show here that repression of enterobactin biosynthesis inhibits the acquisition of microcin E492 posttranslational modification, as monitored by high-performance liquid chromatography and mass spectrometry. Furthermore, exogenous enterobactin restored the production of posttranslationally modified microcin in a bacterial strain deficient in enterobactin synthesis. We thus concluded that enterobactin serves as a precursor for the synthesis of the posttranslationally modified microcin and that the unmodified microcin is an incompletely processed form of mature microcin E492. Gene disruption experiments showed that MceC and MceD, two enzymes encoded by the mceABCDEFGHIJ gene cluster, are involved in the synthesis of the microcin E492 posttranslational modification, as followed by mass spectrometry. Genes homologous to iroB and iroD, required for the conversion (linearization and C-glycosylation) of enterobactin into salmochelins, efficiently complemented mceC and mceD, respectively. Based on our results, a model is proposed for the biosynthesis of the mature siderophore-carrying peptide.
机译:产生Microcin E492的细菌分泌未修饰的和翻译后修饰的微素。该修饰包括N-(2,3-二羟基苯甲酰基)-1-丝氨酸的C-葡萄糖基化线性三聚体,与salmochelins和肠抑素有关的儿茶酚铁载体。我们在这里表明肠抑素的生物合成的抑制作用抑制了microcin E492翻译后修饰的获得,如通过高效液相色谱和质谱监测的。此外,外源肠杆菌素在肠杆菌素合成不足的细菌菌株中恢复了翻译后修饰的微素的产生。因此,我们得出结论,肠杆菌素充当合成翻译后修饰的微素的前体,未修饰的微素是成熟微素E492的不完全加工形式。基因破坏实验表明,由mceABCDEFGHIJ基因簇编码的两种酶MceC和MceD参与了microcin E492翻译后修饰的合成,随后进行了质谱分析。将Enterobactin转化为salmochelins(线性化和C-糖基化)所需的与iroB和iroD同源的基因分别有效地补充了mceC和mceD。根据我们的结果,提出了一个模型,用于成熟的铁载体携带肽的生物合成。

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