ANTIFUNGAL CYCLIC-PEPTIDES FROM THE TERRESTRIAL BLUE-GREEN-ALGA ANABAENA-LAXA .2. STRUCTURES OF LAXAPHYCIN-A LAXAPHYCIN-B, LAXAPHYCIN-D AND LAXAPHYCIN-E
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FRANKMOLLE, WP
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UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822
FRANKMOLLE, WP
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KNUBEL, G
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UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822
KNUBEL, G
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MOORE, RE
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UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822
MOORE, RE
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PATTERSON, GML
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UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822UNIV HAWAII MANOA,DEPT CHEM,HONOLULU,HI 96822
Laxaphycins A and B arc the major components in an antifungal mixture of cyclic peptides from the terrestrial blue-green alga Anabaena laxa FK-1-2. NMR and MS spectral studies coupled with amino acid analysis indicate that the gross structures of laxaphycins A and B are cyclic (Aoc-Hse-E-Dhb-Hyp-Hse-Phc-Leu-Ile-Ile-Leu-Gly) where Aoc is a 3-aminooctanoic acid residue and cyclic (Ala-Hleu-Gln-N-MeIle-Hasn-Thr-Pro-Leu-Thr-Ade-Val-Hleu) where Ade is a 3-aminodecanoyl unit, respectively. Laxaphycin E, a minor cyclic undecapeptide, differs in gross structure from laxaphycin A in possessing a 3-aminodecanoic acid unit (Ade) in lieu of Aoc, whereas laxaphycin D, a minor cyclic dodecapeptide, differs from laxaphycin B in possessing a 3-aminooctanoyl unit (Aoc) instead of an Ade unit.