Department of Chemistry, The University of British Columbia, Vancouver, British Columbia, Canada.
PLoS One. 2011;6(8):e23694. doi: 10.1371/journal.pone.0023694. Epub 2011 Aug 18.
The cladoniamides are bis-indole alkaloids isolated from Streptomyces uncialis, a lichen-associated actinomycete strain. The cladoniamides have an unusual, indenotryptoline structure rarely observed among bis-indole alkaloids. I report here the isolation, sequencing, and annotation of the cladoniamide biosynthetic gene cluster and compare it to the recently published gene cluster for BE-54017, a closely related indenotryptoline natural product. The cladoniamide gene cluster differs from the BE-54017 gene cluster in gene organization and in the absence of one N-methyltransferase gene but otherwise contains close homologs to all genes in the BE-54017 cluster. Both gene clusters encode enzymes needed for the construction of an indolocarbazole core, as well as flavin-dependent enzymes putatively involved in generating the indenotryptoline scaffold from an indolocarbazole. These two bis-indolic gene clusters exemplify the diversity of biosynthetic routes that begin from the oxidative dimerization of two molecules of L-tryptophan, highlight enzymes for further study, and provide new opportunities for combinatorial engineering.
克拉多酰胺是从链霉菌属放线菌菌株中分离出来的双吲哚生物碱,该菌株与地衣有关。克拉多酰胺具有一种不寻常的吲哚并色胺结构,在双吲哚生物碱中很少观察到。我在这里报告了克拉多酰胺生物合成基因簇的分离、测序和注释,并将其与最近发表的 BE-54017 基因簇进行了比较,BE-54017 是一种密切相关的吲哚并色胺天然产物。克拉多酰胺基因簇与 BE-54017 基因簇在基因组织上存在差异,并且缺少一个 N-甲基转移酶基因,但在其他方面包含了 BE-54017 簇中所有基因的密切同源物。这两个基因簇都编码构建吲哚咔唑核心所需的酶,以及黄素依赖性酶,这些酶可能参与从吲哚咔唑生成吲哚并色胺支架。这两个双吲哚基因簇展示了从两个 L-色氨酸分子的氧化二聚化开始的生物合成途径的多样性,突出了进一步研究的酶,并为组合工程提供了新的机会。