首页> 外文期刊>Journal of bacteriology >Anaerobic biosynthesis of enterobactin Escherichia coli: regulation of entC gene expression and evidence against its involvement in menaquinone (vitamin K2) biosynthesis.
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Anaerobic biosynthesis of enterobactin Escherichia coli: regulation of entC gene expression and evidence against its involvement in menaquinone (vitamin K2) biosynthesis.

机译:肠杆菌大肠杆菌的厌氧生物合成:entC基因表达的调控和证据,证明其参与甲萘醌(维生素K2)的生物合成。

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In Escherichia coli, isochorismate is a common precursor for the biosynthesis of the siderophore enterobactin and menaquinone (vitamin K2). Isochorismate is formed by the shikimate pathway from chorismate by the enzyme isochorismate synthase encoded by the entC gene. Since enterobactin is involved in the aerobic assimilation of iron, and menaquinone is involved in anaerobic electron transport, we investigated the regulation of entC by iron and oxygen. An operon fusion between entC with its associated regulatory region and lacZ+ was constructed and introduced into the chromosome in a single copy. Expression of entC-lacZ was found to be regulated by the concentration of iron both aerobically and anaerobically. An established entC::kan mutant deficient in enterobactin biosynthesis was found to grow normally and synthesize wild-type levels of menaquinone under anaerobic conditions in iron-sufficient media. These results led to the demonstration of an alternate isochorismate synthase specifically involved in menaquinone synthesis encoded by the menF gene. Consistent with these findings, the entC+ strains were found to synthesize enterobactin anaerobically under iron-deficient conditions while the ent mutants failed to do so.
机译:在大肠埃希氏菌中,异邻苯二甲酸酯是铁载体肠杆菌素和甲萘醌(维生素K2)生物合成的常见前体。异麦酸酯是由entC基因编码的异麦酸合成酶从分支酸中的from草酸途径形成的。由于肠杆菌素参与铁的需氧同化,而甲萘醌参与厌氧电子传输,因此我们研究了铁和氧对entC的调节作用。构建了entC及其相关调控区与lacZ +之间的操纵子融合体,并将其以单拷贝形式引入染色体。发现entC-lacZ的表达受需氧和厌氧铁浓度的调节。发现在缺乏肠杆菌素的生物合成过程中已建立的entC :: kan突变体在缺铁条件下在铁充足的培养基中正常生长并合成野生型水平的甲萘醌。这些结果导致了另一种等速异氰酸酯合酶的证明,该酶特别参与了menF基因编码的甲基萘醌合成。与这些发现一致的是,发现entC +菌株在缺铁条件下厌氧合成肠杆菌素,而ent突变体却没有这样做。

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