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Regulation of the Streptomyces coelicolor Calcium-Dependent Antibiotic by absA Encoding a Cluster-Linked Two-Component System

机译:通过absA编码链霉菌双组分系统调节链霉菌天蓝色钙依赖的抗生素。

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摘要

The Streptomyces coelicolor absA two-component system was initially identified through analysis of mutations in the sensor kinase absA1 that caused inhibition of all four antibiotics synthesized by this strain. Previous genetic analysis had suggested that the phosphorylated form of AbsA2 acted as a negative regulator of antibiotic biosynthesis in S. coelicolor (T. B. Anderson, P. Brian, and W. C. Champness, Mol. Microbiol. 39:553–566, 2001). Genomic sequence data subsequently provided by the Sanger Centre (Cambridge, United Kingdom) revealed that absA was located within the gene cluster for production of one of the four antibiotics, calcium-dependent antibiotic (CDA). In this paper we have identified numerous transcriptional start sites within the CDA cluster and have shown that the original antibiotic-negative mutants used to identify absA exhibit a stronger negative regulation of promoters upstream of the proposed CDA biosynthetic genes than of promoters in the clusters responsible for production of actinorhodin and undecylprodigiosin. The same antibiotic-negative mutants also showed an increase in transcription from a promoter divergent to that of absA, upstream of a putative ABC transporter, in addition to an increase in transcription of absA itself. Interestingly, the negative regulation of the biosynthetic transcripts did not appear to be mediated by transcriptional regulation of cdaR (a gene encoding a homolog of the pathway-specific regulators of the act and red clusters) or by any other recognizable transcriptional regulator associated with the cluster. The role of absA in regulating the expression of the diverse antibiotic biosynthesis clusters in the genome is discussed in light of its location in the cda cluster.
机译:最初通过分析传感器激酶absA1中的突变引起的此菌株合成的所有四种抗生素的抑制作用,初步鉴定了天蓝色链霉菌absA两组分系统。先前的遗传学分析表明,AbsA2的磷酸化形式在天蓝色链霉菌中充当抗生素生物合成的负调节剂(T. B. Anderson,P。Brian和W. C. Champness,Mol。Microbiol。39:553-566,2001)。随后由Sanger中心(英国剑桥)提供的基因组序列数据显示,absA位于基因簇内,可生产四种抗生素之一,即钙依赖性抗生素(CDA)。在本文中,我们已经确定了CDA簇中的许多转录起始位点,并且已经表明,用于鉴定absA的原始抗生素阴性突变体比提议的CDA生物合成基因上游的启动子表现出比负责该簇的启动子更强的负调控作用。放线菌丝蛋白和十一烷基prodigiosin的生产。相同的抗生素阴性突变体也显示出从假定启动的ABC转运蛋白上游的启动子向absA的启动子转录的转录增加,以及absA自身的转录增加。有趣的是,生物合成转录本的负调控似乎不由cdaR(编码行为和红色簇的途径特异性调控子的同源物的基因)的转录调控或与簇相关的任何其他可识别的转录调控子介导。 。根据其在cda簇中的位置,讨论了absA在调节基因组中各种抗生素生物合成簇的表达中的作用。

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