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The Streptomyces filipinensis Gamma-Butyrolactone System Reveals Novel Clues for Understanding the Control of Secondary Metabolism

机译:Streptomyces Filipinensisγ-丁内酯系统揭示了了解次生新陈代谢控制的新型线索

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Streptomyces γ-butyrolactones (GBLs) are quorum sensing communication signals triggering antibiotic production. The GBL system of Streptomyces filipinensis , the producer of the antifungal agent filipin, has been investigated. Inactivation of sfbR (for S. filipinensis γ-butyrolactone receptor), a GBL receptor, resulted in a strong decrease in production of filipin, and deletion of sfbR2 , a pseudo-receptor, boosted it, in agreement with lower and higher levels of transcription of filipin biosynthetic genes, respectively. It is noteworthy that none of the mutations affected growth or morphological development. While no ARE (autoregulatory element)-like sequences were found in the promoters of filipin genes, suggesting indirect control of production, five ARE sequences were found in five genes of the GBL cluster, whose transcription has been shown to be controlled by both S. filipinensis SfbR and SfbR2. In vitro binding of recombinant SfbR and SfbR2 to such sequences indicated that such control is direct. Transcription start points were identified by 5′ rapid amplification of cDNA ends, and precise binding regions were investigated by the use of DNase I protection studies. Binding of both regulators took place in the promoter of target genes and at the same sites. Information content analysis of protected sequences in target promoters yielded an 18-nucleotide consensus ARE sequence. Quantitative transcriptional analyses revealed that both regulators are self-regulated and that each represses the transcription of the other as well as that of the remaining target genes. Unlike other GBL receptor homologues, SfbR activates its own transcription whereas SfbR2 has a canonical autorepression profile. Additionally, SfbR2 was found here to bind the antifungal antimycin A as a way to modulate its DNA-binding activity.IMPORTANCE Streptomyces GBLs are important signaling molecules that trigger antibiotic production in a quorum sensing-dependent manner. We have characterized the GBL system from S. filipinensis , finding that two key players of this system, the GBL receptor and the pseudo-receptor, each counteracts the transcription of the other for the modulation of filipin production and that such control over antifungal production involves an indirect effect on the transcription of filipin biosynthetic genes. Additionally, the two regulators bind the same sites, are self-regulated, and repress the transcription of three other genes of the GBL cluster, including that encoding the GBL synthase. In contrast to all the GBL receptors known, SfbR activates its own synthesis. Moreover, the pseudo-receptor was identified as the receptor of antimycin A, thus extending the range of examples supporting the idea of signaling effects of antibiotics in Streptomyces . The intricate regulatory network depicted here should provide important clues for understanding the regulatory mechanism governing secondary metabolism.
机译:链霉菌γ-抑制剂(GBLS)是触发抗生素生产的法定传感通信信号。已经研究了Streptomyces Filipinensis,抗真菌剂菲律宾的生产者的GBL系统。 SFBR的灭活(对于S.Filipinensisγ-丁内酯受体),GBL受体导致菲律宾生产的强烈降低,并且缺失SFBR2,伪受体,促进其转化较高和更高水平的转录菲律宾生物合成基因分别。值得注意的是,没有一个突变会影响生长或形态学发展。虽然在菲涅肽基因的启动子中发现了NO(自身疗养或自动调节元素) - 样序列,但表明生产的间接控制,则在GBL簇的五个基因中发现了五种序列,其转录已被S。 Filipinensis SFBR和SFBR2。重组SFBR和SFBR2对这些序列的体外结合表明这种对照是直接的。通过使用DNA酶I保护研究研究了转录开始点的5'快速扩增,通过使用DNA酶I保护研究来研究精确的结合区域。两种调节剂的结合发生在靶基因的启动子和同一地点。靶促进剂中保护序列的信息含量分析产生了18核苷酸共识是序列。定量转录分析显示,两种调节剂都是自调节的,并且每种调节剂抑制了另一个以及剩余的靶基因的转录。与其他GBL受体同源物不同,SFBR激活其自身的转录,而SFBR2具有规范自动抑形曲线。另外,这里发现SFBR2将抗真菌抗霉素A结合以调节其DNA结合活性的一种方法。分子链霉菌是一种重要的信号传导分子,其以Quorum感测依赖性方式引发抗生素产生的重要信号传导分子。我们已经表征了来自S.Filipinensis的GBL系统,发现该系统的两个关键球员,GBL受体和伪受体,每种关键效应器均抵消了另一种用于调节菲律宾生产的转录,并且这种对抗真菌生产的控制涉及对菲涅汀生物合成基因转录的间接影响。另外,两个调节剂结合相同的位置,是自调节的,并抑制GBL簇的三种其他基因的转录,包括编码GBL合成酶。与已知的所有GBL受体相比,SFBR激活其自身的合成。此外,伪受体被鉴定为抗霉素A的受体,从而延长支持抗生素在链霉菌中抗生素的信号效应的思想的示例的范围。这里描绘的复杂的监管网络应该提供理解次生新陈代谢的调节机制的重要线索。

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