| Literature DB >> 31383908 |
Adriana A Lopes1, Bianca Chioca2, Bruno Musquiari2, Eduardo J Crevelin3, Suzelei de C França2, Maria Fatima das G Fernandes da Silva4, Ana Maria S Pereira2.
Abstract
Spiro-oxindole scaffolds have been studied due to their promising therapeutic potential. In the Amazon rainforest there are two important Uncaria species known as "cat's claw", which biosynthesize spirocyclic oxindole alkaloids; Uncaria tomentosa (Willd. ex Schult.) DC. and Uncaria guianensis (Aublet) Gmell. We carried out a precursor-directed biosynthesis approach with U. guianensis and successfully obtained oxindole alkaloid analogues with molecular mass corresponding to the addition of a methyl or fluorine group on the oxindole ring using tryptamine analogue precursors. Two of these novel oxindole alkaloid analogues (3b-7-methyl-isomitraphylline and 3c-6-fluoro-isomitraphylline) were isolated and characterized by NMR spectroscopy and ESI-QTOF-MS/MS. Having established a substrate feeding protocol for these plantlets, the biosynthetic route for mitraphylline (1), rhynchophylline (2), isomitraphylline (3) and isorhynchophylline (4) was also investigated using 13C-precursors (1-13C-D-glucose, 2-13C-tryptophan, 1-13C-DL-glyceraldehyde, and methyl-13C-D-methionine).Entities:
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Year: 2019 PMID: 31383908 PMCID: PMC6683290 DOI: 10.1038/s41598-019-47706-3
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1General strategies for oxindole alkaloid analogues design using precursor-directed biosynthesis in U. guianensis plantlets.
Figure 2Natural and unnatural oxindole alkaloids biosynthesized by U. guianensis plantlets. Square (dashed lines) represent complete characterization of new-to-nature oxindole alkaloids.
Figure 3Formation of the main product ions of natural and unnatural oxindole alkaloids 3, 3b and 3c.
Figure 4Labelling patterns obtained by biosynthetic precursor 1-13C-D-glucose and 2-13C-tryptophan into POA (1 and 3) and TOA (2 and 4).