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Linking chemistry and genetics in the growing cyanobactin natural products family

机译:在不断增长的蓝藻素天然产物家族中将化学和遗传学联系起来

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摘要

Ribosomal peptide natural products are ubiquitous, yet relatively few tools exist to predict structures and clone new pathways. Cyanobactin ribosomal peptides are found in ~30% of all cyanobacteria, but the connection between gene sequence and structure was not defined, limiting the rapid identification of new compounds and pathways. Here, we report discovery of four orphan cyanobactin gene clusters by genome mining and an additional pathway by targeted cloning, which represented a tyrosine O-prenylating biosynthetic pathway. Genome mining enabled discovery of five cyanobactins, including peptide natural products from Spirulina supplements. A phylogenetic model defined four cyanobactin genotypes, which explain the synthesis of multiple cyanobactin structural classes and help direct pathway cloning and structure prediction efforts. These strategies were applied to DNA isolated from a mixed cyanobacterial bloom containing cyanobactins.
机译:核糖体肽天然产物无处不在,但是相对很少的工具可以预测结构并克隆新途径。蓝细菌核糖体肽存在于所有蓝细菌的约30%中,但基因序列与结构之间的联系尚未定义,限制了对新化合物和新途径的快速鉴定。在这里,我们报告了通过基因组挖掘发现了四个孤立的氰基actactactin基因簇,并通过靶向克隆发现了一条附加途径,这代表了酪氨酸O-异戊二烯化的生物合成途径。通过基因组挖掘,发现了五种氰基肌动蛋白,包括螺旋藻补品中的天然肽产物。一个系统发育模型定义了四种氰基细菌素基因型,它们解释了多种氰基细菌素结构类别的合成,并有助于指导途径克隆和结构预测工作。这些策略适用于从包含氰基actins的混合蓝细菌花样中分离的DNA。

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