Institute of Molecular Biology, Slovak Academy of Sciences, Dubravska cesta 21, 845 51 Bratislava, Slovak Republic.
Appl Microbiol Biotechnol. 2013 Mar;97(6):2413-21. doi: 10.1007/s00253-012-4505-2. Epub 2012 Oct 19.
The polyketide gene cluster aur1 is responsible for the production of the angucycline antibiotic auricin in Streptomyces aureofaciens CCM 3239. Auricin production is regulated in a complex manner involving several regulators, including a key pathway-specific positive regulator Aur1P that belongs to the family of 'atypical' response regulators. Production of auricin is induced after entry into stationary phase. However, auricin was produced in only a short time interval of several hours. We found that the decrease of auricin production was due to a strict regulation of auricin biosynthetic genes at the transcriptional level by a feedback mechanism; auricin and/or its intermediate(s) inhibited binding of Aur1P to its cognate biosynthetic promoter aur1Ap and consequently stopped its activation. In addition, we also determined that synthesised auricin is unstable during growth of S. aureofaciens CCM3239 in the production medium even though purified auricin is stable for days in various organic solvents. The critical parameter affecting its stability was pH. Auricin is stable at acid pH and unstable at neutral and alkaline pH. The drop in auricin concentration was due to an increase of pH shortly after induction of auricin production during cultivation of S. aureofaciens CCM3239.
聚酮基因簇 aur1 负责产生金色链霉菌 CCM 3239 中的安格鲁环素抗生素 auricin。auricin 的产生受到复杂的调控,涉及多个调控因子,包括属于“非典型”反应调节剂家族的关键途径特异性正调控因子 Aur1P。auricin 的产生是在进入静止期后诱导的。然而,auricin 的产生只在几个小时的短时间间隔内进行。我们发现,auricin 生物合成基因的转录水平受到反馈机制的严格调控,导致 auricin 生物合成基因的表达减少;auricin 和/或其中间产物抑制了 Aur1P 与其同源生物合成启动子 aur1Ap 的结合,从而阻止了其激活。此外,我们还确定,即使在各种有机溶剂中纯化的 auricin 可以稳定保存数天,在金色链霉菌 CCM3239 生长的生产培养基中,合成的 auricin 也是不稳定的。影响其稳定性的关键参数是 pH 值。auricin 在酸性 pH 值下稳定,在中性和碱性 pH 值下不稳定。auricin 浓度的下降是由于在金色链霉菌 CCM3239 的培养过程中,在诱导 auricin 产生后不久,pH 值会升高。