首页> 外文期刊>Molecular Microbiology >Genetic and transcriptional analysis of absA, an antibiotic gene cluster-linked two-component system that regulates multiple antibiotics in Streptomyces coelicolor.
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Genetic and transcriptional analysis of absA, an antibiotic gene cluster-linked two-component system that regulates multiple antibiotics in Streptomyces coelicolor.

机译:遗传基因和转录分析absA,一种与抗生素基因簇相关的双组分系统,可调节天蓝色链霉菌中的多种抗生素。

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摘要

In Streptomyces coelicolor, the AbsA1-AbsA2 two-component system regulates the expression of multiple antibiotic gene clusters. Here, we show that the response regulator encoded by the absA2 gene is a negative regulator of these antibiotic gene clusters. A genetic analysis shows that the phosphorylated form of the AbsA2 response regulator (phospho-AbsA2), generated by the cognate AbsA1 sensor histidine kinase, is required for normal growth phase regulation of antibiotic synthesis. In the absence of phospho-AbsA2, antibiotics are produced earlier and more abundantly. Overexpression of AbsA1 also deregulates antibiotic synthesis, apparently shifting the AbsA1 protein from a kinase-active to a phospho-AbsA2 phosphatase-active form. The absA1 and absA2 genes, which are adjacent, are located in one of the antibiotic gene clusters that they regulate, the cluster for the calcium-dependent antibiotic (CDA). The absA genes themselves are growth phase regulated, with phospho-AbsA2 responsible for growth phase-related positive autoregulation. We discuss the possible role and mechanism of AbsA-mediated regulation of antibiotic synthesis in the S. coelicolor life cycle.
机译:在天蓝色链霉菌中,AbsA1-AbsA2两组分系统调节多个抗生素基因簇的表达。在这里,我们显示了由absA2基因编码的应答调节剂是这些抗生素基因簇的负调节剂。遗传分析表明,由正常的AbsA1传感器组氨酸激酶产生的AbsA2反应调节剂(phospho-AbsA2)的磷酸化形式是抗生素合成正常生长阶段调节所必需的。在没有磷酸化AbsA2的情况下,抗生素产生的时间更早,含量更高。 AbsA1的过表达还可以调节抗生素的合成,显然将AbsA1蛋白从激酶活性形式转变为磷酸AbsA2磷酸酶活性形式。相邻的absA1和absA2基因位于它们调节的一种抗生素基因簇中,该簇是钙依赖性抗生素(CDA)的簇。 absA基因本身受生长期调控,磷酸化AbsA2负责与生长期相关的正向自调控。我们讨论了可能的作用和机制由AbsA介导的抗生素合成在天蓝色链霉菌的生命周期中调节。

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