An Efficient Biomimetic Synthesis of Some Marine Sponge Tyrosine Metabolites

Author:

Boehlow Todd R.1,Spilling Christopher D.1

Affiliation:

1. a Department of Chemistry , University of Missouri-St. Louis , 8001 Natural Bridge Road, St. Louis, MO, 63121-4499

Publisher

Informa UK Limited

Subject

Molecular Medicine

Reference24 articles.

1. Berquist , P. R. and Wells , R. J. 1983. Marine Natural Products: Chemical and Biological Perspectives, Edited by: Scheuer , P. J. Vol. 5, 1–50. Academic Press. C.M. Ireland, T.F. Molinski, D.M. Roll, T.M. Zabriskie, T.C. McKee, J.C. Swersey, M.P. Foster (1989) “Bioorganic Marine Chemistry”, Schuer, P.J., Ed.; Springer Verlag,3, 1–46; F. Pietra (1985)Gazzetta Chimica Italiana,115, 443

2. Three bromotyrosine derivatives, one terminating in an unprecedented diketocyclopentenylidene enamine

3. A New Bastadin from the Sponge Psammaplysilla purpurea

4. Novel marine sponge derived amino acids 13. Additional psammaplin derivatives from Psammaplysilla purpurea

5. Novel, racemic or nearly-racemic antibacterial bromo- and chloroquinols and ?-lactams of the verongiaquinol and the cavernicolin type from the marine spongeAplysina (=Verongia)cavernicola

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