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Rational design of Bacitracin A derivatives by incorporating natural product derived heterocycles

机译:通过掺入天然产物衍生的杂环化合物来合理设计杆菌肽A衍生物

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摘要

Heterocycles display common structural motifs in nonribosomally produced peptides with an enormous impact on their bioactivity. In the case of the branched cyclic Bacitracin A, the thiazoline moiety is manufactured during NRPS peptide chain elongation. Here we describe a method to selectively alter the heterocyclic metal binding subunit of Bacitracin A by the synthesis of heterocyclic building blocks that were successfully coupled to the linear decapeptide and subsequently cyclized using the excised bacitracin PCP-TE bidomain. Utilization of this cyclase allowed the first generation of branched cyclic bacitracin derivatives containing thiazole and oxazoles. The generated bacitracin derivatives showed bactericidal activity, indicating the possibility of altering the biological important heterocyclic subunit and overcoming existing limitations for the application of bacitracin.
机译:杂环在非核糖体生产的肽中显示出常见的结构基序,对其生物活性产生巨大影响。在支链环状杆菌肽A的情况下,噻唑啉部分是在NRPS肽链延长过程中产生的。在这里,我们描述了一种方法,该方法通过合成杂环构建基来选择性地改变杆菌肽A的杂环金属结合亚基,该杂环构建基已成功偶联至线性十肽,随后使用切除的杆菌肽PCP-TE双结构域环化。利用该环化酶使得第一代含有噻唑和恶唑的支链环状杆菌肽衍生物。产生的杆菌肽衍生物具有杀菌活性,表明可能改变生物学上重要的杂环亚基并克服了杆菌肽应用方面的现有限制。

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