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首页> 外文期刊>MedChemComm >Activation of a silent phenazine biosynthetic gene cluster reveals a novel natural product and a new resistance mechanism against phenazines(??)
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Activation of a silent phenazine biosynthetic gene cluster reveals a novel natural product and a new resistance mechanism against phenazines(??)

机译:沉默吩嗪生物合成基因簇的激活揭示了一种新颖的天然产物和对吩嗪的新抗性机制(??)

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摘要

The activation of silent biosynthetic gene clusters is a principal challenge for genome mining strategies in drug discovery. In the present study, a phenazine biosynthetic gene cluster was discovered in the Gram-positive bacterium Streptomyces tendae Tü1028. This gene cluster remained silent under a multitude of cultivation conditions, both in the genuine producer strain and in a heterologous expression strain. However, introduction of a constitutive promoter upstream of the phenazine biosynthesis genes led to the production of phenazine-1-carboxylic acid (PCA) and of a new derivative thereof, ie. a conjugate of PCA and L-glutamine. The linkage of PCA to L-glutamine by amide bond formation was catalyzed by enzymes of the heterologous expression host Streptomyces coelicolor M512. PCA showed a strong antibiotic effect, but PCA-Gln did not. Glutamination of PCA therefore appears to represent a resistance mechanism against the antibiotic PCA, which can be produced in significant quantities in soil by Pseudomonas strains. The gene cluster also contained genes for all enzymes of the mevalonate pathway and for an aromatic prenyltransferase, thereby resembling gene clusters for prenylated phenazines. However, purification and biochemical investigation of the prenyltransferase proved that it does not prenylate phenazines but hydroxynaphthalene substrates, showing very similar properties as NphB of naphterpin biosynthesis (Kuzuyma et al., Nature, 2005, 435, 983-987.).
机译:沉默生物合成基因簇的激活是药物发现中基因组挖掘策略的主要挑战。在本研究中,在革兰氏阳性菌腱链霉菌Tü1028中发现了吩嗪生物合成基因簇。在真正的生产菌株和异源表达菌株中,该基因簇在多种培养条件下均保持沉默。然而,在吩嗪生物合成基因上游引入组成型启动子导致产生吩嗪-1-羧酸(PCA)及其新衍生物,即。 PCA和L-谷氨酰胺的结合物。异源表达宿主coelicolor M512的酶催化PCA通过酰胺键形成与L-谷氨酰胺的连接。 PCA显示出很强的抗生素作用,但PCA-Gln没有。因此,PCA的糖化似乎代表了对抗生素PCA的抗药性机制,假单胞菌菌株可在土壤中大量产生PCA。该基因簇还含有甲羟戊酸途径的所有酶和芳香异戊二烯基转移酶的基因,因此类似于异戊二烯吩嗪的基因簇。然而,异戊二烯基转移酶的纯化和生化研究证明它不是异戊二烯吩嗪而是羟基萘底物,显示出与萘酚生物合成的NphB非常相似的性质(Kuzuyma等人,Nature,2005,435,983-987。)。

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