Marine Drugs (Mar 2024)

New Pyridyl and Dihydroisoquinoline Alkaloids Isolated from the Chevron Nemertean <i>Amphiporus angulatus</i>

  • William R. Kem,
  • Ferenc Soti,
  • James R. Rocca,
  • Jodie V. Johnson

DOI
https://doi.org/10.3390/md22040141
Journal volume & issue
Vol. 22, no. 4
p. 141

Abstract

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Nemertean worms contain toxins that are used to paralyze their prey and to deter potential predators. Hoplonemerteans often contain pyridyl alkaloids like anabaseine that act through nicotinic acetylcholine receptors and crustacean chemoreceptors. The chemical reactivity of anabaseine, the first nemertean alkaloid to be identified, has been exploited to make drug candidates selective for alpha7 subtype nAChRs. GTS-21, a drug candidate based on the anabaseine scaffold, has pro-cognitive and anti-inflammatory actions in animal models. The circumpolar chevron hoplonemertean Amphiporus angulatus contains a multitude of pyridyl compounds with neurotoxic, anti-feeding, and anti-fouling activities. Here, we report the isolation and structural identification of five new compounds, doubling the number of pyridyl alkaloids known to occur in this species. One compound is an isomer of the tobacco alkaloid anatabine, another is a unique dihydroisoquinoline, and three are analogs of the tetrapyridyl nemertelline. The structural characteristics of these ten compounds suggest several possible pathways for their biosynthesis.

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