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首页> 外文期刊>Journal of bacteriology >Amino Acid Precursor Supply in the Biosynthesis of the RNA Polymerase Inhibitor Streptolydigin by Streptomyces lydicus
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Amino Acid Precursor Supply in the Biosynthesis of the RNA Polymerase Inhibitor Streptolydigin by Streptomyces lydicus

机译:lydicus链霉菌RNA聚合酶抑制剂链霉菌丝蛋白的生物合成中的氨基酸前体供应。

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Biosynthesis of the hybrid polyketide-nonribosomal peptide antibiotic streptolydigin, 3-methylaspartate, is utilized as precursor of the tetramic acid moiety. The three genes from the Streptomyces lydicus streptolydigin gene cluster slgE1-slgE2-slgE3 are involved in 3-methylaspartate supply. SlgE3, a ferredoxin-dependent glutamate synthase, is responsible for the biosynthesis of glutamate from glutamine and 2-oxoglutarate. In addition to slgE3, housekeeping NADPH- and ferredoxin-dependent glutamate synthase genes have been identified in S. lydicus. The expression of slgE3 is increased up to 9-fold at the onset of streptolydigin biosynthesis and later decreases to ~2-fold over the basal level. In contrast, the expression of housekeeping glutamate synthases decreases when streptolydigin begins to be synthesized. SlgE1 and SlgE2 are the two subunits of a glutamate mutase that would convert glutamate into 3-methylaspartate. Deletion of slgE1-slgE2 led to the production of two compounds containing a lateral side chain derived from glutamate instead of 3-methylaspartate. Expression of this glutamate mutase also reaches a peak increase of up to 5.5-fold coinciding with the onset of antibiotic production. Overexpression of either slgE3 or slgE1-slgE2 in S. lydicus led to an increase in the yield of streptolydigin.
机译:杂合的聚酮化合物-非核糖体肽抗生素链霉抗生物素蛋白,即3-甲基天冬氨酸的生物合成被用作四酸部分的前体。链霉菌链霉菌素基因簇 slgE1-slgE2-slgE3 中的三个基因参与了3-甲基天冬氨酸的供应。 SlgE3是铁氧还蛋白依赖性的谷氨酸合酶,负责由谷氨酰胺和2-氧代戊二酸生物合成谷氨酸。除 slgE3 外,还已在守夜链霉菌中鉴定了管家NADPH和铁氧还蛋白依赖性谷氨酸合酶基因。在链霉素的生物合成开始时, slgE3 的表达增加至9倍,而在基础水平上则降低至〜2倍。相比之下,当开始合成链霉素时,管家谷氨酸合酶的表达降低。 SlgE1和SlgE2是谷氨酸突变酶的两个亚基,可将谷氨酸转化为3-甲基天冬氨酸。删除 slgE1-slgE2 导致产生两种化合物,这些化合物含有衍生自谷氨酸而不是3-甲基天冬氨酸的侧链。该谷氨酸突变酶的表达也达到高达5.5倍的峰值增加,这与抗生素生产的开始相吻合。 slgE3 slgE1-slgE2 在枸杞中的过表达导致链霉素的产量增加。

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