| Literature DB >> 24991272 |
Jens Schmidt1, Zeinab Khalil2, Robert J Capon2, Christian B W Stark1.
Abstract
The heronapyrroles A-C have first been isolated from a marine-derived Streptomyces sp. (CMB-0423) in 2010. Structurally, these natural products feature an unusual nitropyrrole system to which a partially oxidized farnesyl chain is attached. The varying degree of oxidation of the sesquiterpenyl subunit in heronapyrroles A-C provoked the hypothesis that there might exist other hitherto unidentified metabolites. On biosynthetic grounds a mono-tetrahydrofuran-diol named heronapyrrole D appeared a possible candidate. We here describe a short asymmetric synthesis of heronapyrrole D, its detection in cultivations of CMB-0423 and finally the evaluation of its antibacterial activity. We thus demonstrate that biosynthetic considerations and the joint effort of synthetic and natural product chemists can result in the identification of new members of a rare class of natural products.Entities:
Keywords: biomimetic synthesis; biosynthesis; heronapyrroles; microbial biodiscovery; natural products; nitropyrroloterpenes
Year: 2014 PMID: 24991272 PMCID: PMC4077399 DOI: 10.3762/bjoc.10.121
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Known heronapyrroles A–C and nitropyrrolins A–E.
Scheme 1Plausible biosynthesis of heronapyrroles A–D.
Scheme 2Synthesis of heronapyrrole D.