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首页> 外文期刊>ACS Chemical Biology >CanE, an Iron/2-Oxoglutarate-Dependent Lasso Peptide Hydroxylase from Streptomyces canus
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CanE, an Iron/2-Oxoglutarate-Dependent Lasso Peptide Hydroxylase from Streptomyces canus

机译:Cane,铁/ 2-氧代勒出依赖于链霉菌犬的套索肽羟基肽

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摘要

Lasso peptides are a class of ribosomally synthesized and post-translationally modified peptides (RiPPs) that feature a unique lariat-knot topology. Canucin A, a post-translationally hydroxylated lasso peptide, was recently discovered via activation of its otherwise silent biosynthetic gene cluster in Streptomyces canus. The biosynthesis of canucin A, notably the introduction of a hydroxyl group at the beta-carbon of the terminal aspartate residue, is the topic of the current report. We combine genetic and biochemical experiments to show that an iron/2-oxoglutarate-dependent enzyme, CanE, installs the hydroxyl group onto the precursor peptide in vivo and in vitro. Moreover, we show that hydroxylation occurs prior to macrocyclization and that the RiPP recognition element (RRE), encoded within the gene cluster to facilitate the initial proteolytic reaction, also increases the yield of hydroxylation, hinting at a dual role for the RRE. Our results have implications for the combinatorial biosynthesis of lasso peptides.
机译:套索肽是一类核糖体合成的和翻译后修饰的肽(RIPP),其具有独特的Lariat-结拓扑。巧克力A,翻译后羟基化的套索肽,最近通过在链霉菌甘蔗中激活其其他无声的生物合成基因簇来发现。 Canucin A的生物合成,特别是在末端天冬氨酸残留物的β-碳中引入羟基,是当前报告的主题。我们将遗传和生化实验结合在一起表明铁/ 2-氧缺乏症依赖性酶,甘蔗在体内和体外将羟基安装到前体肽上。此外,我们表明羟基化发生在宏核之前发生,并且RIPP识别元件(RRE)在基因簇内编码以促进初始蛋白水解反应,还增加了羟基化的产率,在RRE的双重作用下暗示。我们的结果对套索肽的组合生物合成有影响。

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