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首页> 外文期刊>Annals of microbiology >Cloning and characterization of bagB and bagC, two co-transcribed genes involved in bagremycin biosynthesis in Streptomyces sp. Tü 4128
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Cloning and characterization of bagB and bagC, two co-transcribed genes involved in bagremycin biosynthesis in Streptomyces sp. Tü 4128

机译:bagB和bagC的克隆和表征,这两个链霉菌链霉菌生物合成中的共转录基因。 Tü4128

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摘要

Bagremycin A and B, produced by Streptomyces sp. Tü 4128, are two antibiotics active against Gram-positive bacteria and fungi. To elucidate the biosynthetic pathway of bagremycins, two genes named bagB and bagC, were cloned and characterized from a bagremycin-producing strain. The deduced protein products of bagB and bagC show high sequence identity with aldolase and 3-dehydroquinate synthase, respectively. The bagC gene is located immediately downstream of the bagB gene and subsequent reverse transcription and polymerase chain reaction analysis revealed that bagB is co-transcribed with bagC. Inactivation of either bagB or bagC resulted in the complete abolishment of bagremycin production in fermented cultures, which suggests that these two genes are involved in the biosynthesis of bagremycins. The results from this study will allow acquisition of the entire biosynthetic cluster for bagremycins and further our understanding of the biosynthetic pathway and mechanism of action of bagremycin.
机译:由链霉菌属产生的巴格霉素A和B。 Tü4128是对革兰氏阳性细菌和真菌有活性的两种抗生素。为了阐明巴雷霉素的生物合成途径,从产生巴雷霉素的菌株中克隆并鉴定了两个基因,分别命名为bagB和bagC。 bagB和bagC推导的蛋白质产物分别与醛缩酶和3-dehydroquinate合酶具有高度的序列同一性。 bagC基因直接位于bagB基因的下游,随后的逆转录和聚合酶链反应分析表明bagB与bagC共转录。 bagB或bagC的失活导致发酵培养物中巴雷霉素的生产完全消失,这表明这两个基因参与了巴雷霉素的生物合成。这项研究的结果将使人们获得巴格霉素的整个生物合成簇,并进一步了解巴格霉素的生物合成途径和作用机理。

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