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首页> 外文期刊>Angewandte Chemie >A Peptidyl-Transesterifying Type I Thioesterase in Salinamide Biosynthesis
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A Peptidyl-Transesterifying Type I Thioesterase in Salinamide Biosynthesis

机译:一种肽基酯型I型盐酸盐氨酯酶生物合成

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摘要

Salinamide A belongs to a rare class of bicyclic depsipeptide antibiotics in which the installation of a (4-methylhexa-2,4-dienoyl) glycine handle across a hexadepsipeptide core contributes to its chemical complexity and biological properties. Herein, we report the genetic and biochemical basis for salinamide construction in the marine bacterium Streptomyces sp. CNB-091, which involves a novel intermolecular transesterification reaction catalyzed by a type I thioesterase. Heterologous expression studies revealed the central role of the nonribosomal peptide synthetase Sln9 in constructing and installing the distinctive acylglycine "basket handle" of salinamide. Biochemical characterization of the Sln9 thioesterase domain established that transesterification of the serine residue of desmethylsalinamide E with acylated glycyl thioesters yields desmethylsalinamide C.
机译:Salinamide A属于稀有一类双环浸润型抗生素,其中在六丙二肽核心上安装(4-甲基-2,4-二烯酰基)甘氨酸手柄有助于其化学复杂性和生物学性质。 在此,我们向海洋细菌盐脲核糖SP中的Salinamide构建报告了遗传和生化基础。 CNB-091,涉及由I型硫酯酶催化的新型分子间酯交换反应。 异源表达研究揭示了非纤维素肽合成酶SLN9在构建和安装莎林酰胺的独特酰基甘氨酸“篮手柄”中的核心作用。 SLN9硫代酯酶结构域的生物化学表征建立了与酰化甘氨酸硫醇酰胺E的去甲基氨基酰胺E的丝氨酸残基的酯交换产生降解甲基氨基酰胺C.

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