Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, 240 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2010 Jun 29;107(26):11692-7. doi: 10.1073/pnas.1001513107. Epub 2010 Jun 14.
A combination of small molecule chemistry, biosynthetic analysis, and genome mining has revealed the unexpected conservation of polycyclic tetramate macrolactam biosynthetic loci in diverse bacteria. Initially our chemical analysis of a Streptomyces strain associated with the southern pine beetle led to the discovery of frontalamides A and B, two previously undescribed members of this antibiotic family. Genome analyses and genetic manipulation of the producing organism led to the identification of the frontalamide biosynthetic gene cluster and several biosynthetic intermediates. The biosynthetic locus for the frontalamides' mixed polyketide/amino acid structure encodes a hybrid polyketide synthase nonribosomal peptide synthetase (PKS-NRPS), which resembles iterative enzymes known in fungi. No such mixed iterative PKS-NRPS enzymes have been characterized in bacteria. Genome-mining efforts revealed strikingly conserved frontalamide-like biosynthetic clusters in the genomes of phylogenetically diverse bacteria ranging from proteobacteria to actinomycetes. Screens for environmental actinomycete isolates carrying frontalamide-like biosynthetic loci led to the isolation of a number of positive strains, the majority of which produced candidate frontalamide-like compounds under suitable growth conditions. These results establish the prevalence of frontalamide-like gene clusters in diverse bacterial types, with medicinally important Streptomyces species being particularly enriched.
小分子化学、生物合成分析和基因组挖掘的结合揭示了多环四肽大环内酯生物合成基因座在不同细菌中的出人意料的保守性。最初,我们对与南方松甲虫有关的链霉菌菌株的化学分析导致了发现了 frontalamides A 和 B,这是该抗生素家族中以前未描述的两个成员。产生菌的基因组分析和遗传操作导致了 frontalamide 生物合成基因簇和几种生物合成中间体的鉴定。frontalamides 的混合聚酮/氨基酸结构的生物合成基因座编码了一种混合聚酮合酶非核糖体肽合酶(PKS-NRPS),类似于真菌中已知的迭代酶。在细菌中尚未鉴定出这种混合迭代 PKS-NRPS 酶。基因组挖掘工作揭示了在从变形菌到放线菌的系统发育上多样化的细菌基因组中存在惊人保守的 frontalamide 样生物合成簇。携带 frontalamide 样生物合成基因座的环境放线菌分离物的筛选导致了许多阳性菌株的分离,其中大多数在合适的生长条件下产生候选 frontalamide 样化合物。这些结果确立了 frontalamide 样基因簇在不同细菌类型中的普遍性,具有医学重要性的链霉菌物种尤其丰富。