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Mining Symbionts of a Spider-Transmitted Fungus Illuminates Uncharted Biosynthetic Pathways to Cytotoxic Benzolactones

机译:蜘蛛传播的真菌的采矿共生照射了细胞毒性苯并乳糖蛋白的未知生物合成途径

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摘要

A spider-transmitted fungus (Rhizopus microsporus) that was isolated from necrotic human tissue was found to harbor endofungal bacteria (Burkholderia sp.). Metabolic profiling of the symbionts revealed a complex of cytotoxic agents (necroximes). Their structures were characterized as oxime-substituted benzolactone enamides with a peptidic side chain. The potently cytotoxic necroximes are also formed in symbiosis with the fungal host and could have contributed to the necrosis. Genome sequencing and computational analyses revealed a novel modular PKS/NRPS assembly line equipped with several non-canonical domains. Based on gene-deletion mutants, we propose a biosynthetic model for bacterial benzolactones. We identified specific traits that serve as genetic handles to find related salicylate macrolide pathways (lobatamide, oximidine, apicularen) in various other bacterial genera. Knowledge of the biosynthetic pathway enables biosynthetic engineering and genome-mining approaches.
机译:发现从坏死的人体组织中分离的蜘蛛传播的真菌(Rhizopus microscowus)对巢穴细菌(Burkholderia sp)。 Symbionts的代谢分析显示出一种细胞毒性剂(Necroximes)的复合物。 它们的结构表征为具有肽侧链的肟取代的苯并酰胺。 易毒性Necroximes也与真菌宿主一起形成共生,并且可能导致坏死。 基因组测序和计算分析显示了一种具有多个非规范结构域的新型模块化PKS / NRPS装配线。 基于基因缺失突变体,我们提出了一种用于细菌苯并蛋白的生物合成模型。 我们确定了用作遗传手柄的特异性特征,以在各种其他细菌属中查找相关的水杨酸盐大环内酯途径(甲酰胺,羟嘧啶,Apicularen)。 知识生物合成途径使生物合成工程和基因组采矿方法能够。

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