Institute of Molecular Biology, Slovak Academy of Sciences, 845 51 Bratislava, Slovak Republic.
Microbiology (Reading). 2011 Jun;157(Pt 6):1629-1639. doi: 10.1099/mic.0.047795-0. Epub 2011 Mar 10.
Two regulators, Aur1P and Aur1R, have been previously found to control expression of the aur1 polyketide gene cluster involved in biosynthesis of the angucycline-like antibiotic auricin in Streptomyces aureofaciens CCM 3239 in a cascade mechanism. Here, we describe the characterization of two additional regulatory genes, aur1PR2 and aur1PR3, encoding homologues of the SARP family of transcriptional activators that were identified in the upstream part of the aur1 cluster. Expression of both genes is directed by a single promoter, aur1PR2p and aur1Pr3p, respectively, induced in late exponential phase. Disruption of aur1PR2 in S. aureofaciens CCM 3239 had no effect on auricin production. However, the disruption of aur1PR3 dramatically reduced auricin compared with its parental wild-type strain. Transcription from the aur1Ap promoter, directing expression of the first biosynthetic gene in the auricin gene cluster, was similarly decreased in the S. aureofaciens CCM 3239 aur1PR3 mutant. Transcription from the aur1PR3p promoter increased in the S. aureofaciens CCM 3239 aur1R mutant strain, and the TetR family negative regulator Aur1R was shown to specifically bind the aur1PR3p promoter. These results indicate a complex regulation of the auricin cluster by the additional SARP family transcriptional activator Aur1PR3.
先前已经发现,两个调节剂 Aur1P 和 Aur1R 通过级联机制控制参与 Streptomyces aureofaciens CCM 3239 中 angucycline 样抗生素 auricin 生物合成的 aur1 多酮基因簇的表达。在这里,我们描述了另外两个调节基因 aur1PR2 和 aur1PR3 的特征,它们编码 SARP 家族转录激活因子的同源物,这些同源物在 aur1 簇的上游部分被鉴定出来。这两个基因的表达均由一个单一的启动子 aur1PR2p 和 aur1Pr3p 分别指导,在指数晚期诱导表达。在 Streptomyces aureofaciens CCM 3239 中破坏 aur1PR2 对 auricin 的产生没有影响。然而,aur1PR3 的破坏与亲本野生型菌株相比,auricin 的产量显著降低。aur1Ap 启动子转录,指导 auricin 基因簇中第一个生物合成基因的表达,在 S. aureofaciens CCM 3239 aur1PR3 突变体中也同样减少。在 S. aureofaciens CCM 3239 aur1R 突变株中,aur1PR3p 启动子的转录增加,并且 TetR 家族负调节因子 Aur1R 被证明特异性结合 aur1PR3p 启动子。这些结果表明,额外的 SARP 家族转录激活因子 Aur1PR3 对 auricin 簇的调控非常复杂。