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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Elucidation of the Activation Pathways of ScyA1/ScyR1, an Aco/ArpA-Like System That Regulates the Expression of Nemadectin and Other Secondary Metabolic Biosynthetic Genes
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Elucidation of the Activation Pathways of ScyA1/ScyR1, an Aco/ArpA-Like System That Regulates the Expression of Nemadectin and Other Secondary Metabolic Biosynthetic Genes

机译:阐明Scya1 / scyr1的活化途径,一种调节NemAdectin和其他次生代谢生物合成基因的表达的ACO / ARPA样系统

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摘要

The quorum-sensing system, consisting of an autoregulator synthase (AfsA or Aco homolog) and an autoregulator receptor (ArpA homolog), has been reported to be universally involved in regulating secondary metabolism in streptomycetes. Although the autoregulator synthase is thought to activate antibiotic production, the activation pathway remains poorly understood. Streptomyces cyaneogriseus ssp. noncyanogenus NMWT1 produces nemadectin, which is widely used as a biopesticide and veterinary drug due to its potent nematocidal activity. Here, we identified the Aco/ArpA-like system ScyA1/ScyR1, the ArpA homolog ScyR2 and the AfsA/ArpA-like system ScyA3/ScyR3 as important regulators of nemadectin production in NMWT1. Genetic experiments revealed that these five genes positively regulate nemadectin production, with scyA1 and scyR1 having the most potent effects. Importantly, ScyA1 is an upstream regulator of scyR1 and promotes nemadectin production and sporulation by activating scyR1 transcription. Intriguingly, scyR1 silencing in NMWT1 up-regulated 12 of the 17 secondary metabolite biosynthetic core genes present in the NMWT1 genome, suggesting that ScyR1 mainly to be a repressor of secondary metabolism. In conclusion, our findings unveiled the regulatory pathways adopted by the quorum-sensing system, and provided the basis for a method to enhance antibiotic production and to activate the expression of cryptic biosynthetic gene clusters.
机译:据报道,由自动调节器合酶(AFSA或ACO同源物)和自动调节器受体(ARPA同源物)组成的仲裁体系系统普遍参与调节链霉菌中的次生代谢。虽然自动调节器合酶被认为激活抗生素生产,但活化途径仍然明白。链霉菌豆类霉菌SSP。非胞菌菌属NMWT1产生NEMADECTIN,由于其有效的Nematerocal活性,广泛用作生物农药和兽药。在这里,我们鉴定了ACO / ARPA的系统SCYA1 / SCYR1,ARPA同源型SCYR2和AFSA / ARPA样系统SCYA3 / SCYR3作为NMWT1中NEMADECTIN生产的重要调节因子。遗传实验表明,这五种基因积极调节NemAdectin生产,Scya1和Scyr1具有最有效的效果。重要的是,SCYA1是Scyr1的上游调节因子,通过激活瘢痕1转录来促进NemAdectin生产和孢子。有趣的是,在NMWT1基因组中存在的17个次级代谢物生物合成核心基因的NMWT1上调12中的瘢痕疙瘩沉默,表明Scyr1主要是仲裁蛋白的阻遏物。总之,我们的研究结果推出了法定传感系统采用的监管途径,并为提高抗生素生产的方法提供了基础,并激活了隐秘的生物合成基因簇的表达。

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