| Literature DB >> 31057776 |
Alexandra Baulig1,2, Irina Helmle1, Marius Bader1,2, Felix Wolf1,2, Andreas Kulik3, Arwa Al-Dilaimi4, Daniel Wibberg4, Jörn Kalinowski4, Harald Gross1,2, Leonard Kaysser1,2.
Abstract
class="Chemical">Phosphoramidon is a class="Chemical">potentEntities:
Year: 2019 PMID: 31057776 PMCID: PMC6482885 DOI: 10.1039/c9sc00641a
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Selected natural products with phosphoramidate or phosphonamidate moieties.
Fig. 2Biosynthesis of 1 and 2. (A) Organization of the talose BGC from S. mozunensis MK-23 and gene cluster table. Genes deleted in the course of this study are indicated (Δ). Purple arrows: biosynthetic genes. Green arrows: transport and regulation. (B) Proposed pathway for the biosynthesis of 1.
Fig. 3LC-MS analysis of culture extracts for the production of 1 in Streptomyces sp. MK730-62F2/talMB01 and 2 in S. mozunensis MK-23. Extracted ion chromatograms (EICs).
Fig. 4LC-MS analysis of enzyme reactions. Extracted ion chromatograms (EICs) for m/z 542 [M – H]– (1), m/z 396 [M – H]– (5) and m/z 316 [M – H]– (4). (a) Commercial standard of 1. (b) Enzymatic assay with TalC (protein extract of ΔtalE mutant), dTDP-l-rhamnose, TalE, 4 and ATP showed conversion of 4 to 1. (c) Control assay of (b) without TalC using a protein extract of the ΔtalC mutant. (d) Control assay of (b) without dTDP-l-rhamnose. (e) Control assay: protein extract of ΔtalC mutant with 4. (f) Control assay: protein extract of ΔtalE mutant with 4. (g) Enzymatic assay of TalE with 4 and ATP showed conversion of 4 to 5. (h) Control assay of (g) without TalE. (i) Control assay of (g) without ATP. (j) Control assay of (g) without 4. Box: observed NMR correlations of 5.