| Literature DB >> 28545544 |
Armando A Losada1, Carmen Méndez1, José A Salas1, Carlos Olano2.
Abstract
BACKGROUND: The biosynthesis pathway of benzoxazole compounds caboxamycin and nataxazole have been recently elucidated. Both compounds share one of their precursors, 3-hydroxyanthranilate (two units in the case of nataxazole). In addition, caboxamycin structure includes a salicylate moiety while 6-methylsalycilate is the third scaffold in nataxazole. Pathways cross-talk has been identified in caboxamycin producer Streptomyces sp. NTK937, between caboxamycin and enterobactin pathways, and nataxazole producer Streptomyces sp. Tü6176, between nataxazole and coelibactin pathways. These events represent a natural form of combinatorial biosynthesis.Entities:
Keywords: Gene expression; Heterologous expression; Nataxazole; Polyketide; Streptomyces
Mesh:
Substances:
Year: 2017 PMID: 28545544 PMCID: PMC5445379 DOI: 10.1186/s12934-017-0709-6
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Fig. 1Caboxamycin biosynthesis gene cluster and chemical structure of related compounds. a Genetic organization of caboxamycin biosynthesis gene cluster. b Chemical structure of caboxamycin, 1; O-methylcaboxamycin, 2; and 3′-hydroxycaboxamycin, 3
Fig. 2Compounds generated by heterologous expression of caboxamycin biosynthesis genes in S. albus J1074. a UPLC analysis of Streptomyces sp. NTK937 wild-type and S. albus strains J1074 and B29 harboring pSET-cbxABCDE or control plasmid pSETeTc. Chromatograms were analyzed at 330 nm. SA stands for salicylic acid. Asterisks indicate paulomycins and paulomenols. b Chemical structure of novel compounds 4 and 5
Fig. 3Compounds generated by combinatorial biosynthesis in Streptomyces sp. NTK937. a UPLC analysis of Streptomyces sp. NTK937 mutant strain ΔcbxA harboring plasmids pEM4T (control), pnatPK, pnatL1-PK or pnatL2-PK. Chromatograms were analyzed at 330 nm. 6MSA stands for 6-methylsalicylic acid. b Chemical structure of novel compounds 6 and 7
Fig. 4UPLC analysis of mutasynthesis assays in Streptomyces sp. NTK937 ΔcbxA/ΔentC. Chromatograms were analyzed at 330 nm. Asterisks indicate the precursor used. Sal. salicylate
Fig. 5Chemical structure of compounds 8–19 obtained by mutasynthesis in Streptomyces sp. NTK937 ΔcbxA/ΔentC
Fig. 6Schematic representation of the biosynthetic origin of compounds 1–19