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Dr. Nadège David Dr. Raffaele Pasceri Dr. Russell R. A. Kitson Dr. Alexandre Pradal Prof. Christopher J. Moody 《Chemistry (Weinheim an der Bergstrasse, Germany)》2016,22(31):10867-10876
A short formal total synthesis of the marine natural product diazonamide A is described. The route is based on indole oxidative rearrangement, and a number of options were investigated involving migration of tyrosine or oxazole fragments upon oxidation of open chain or macrocyclic precursors. The final route proceeds from 7‐bromoindole by sequential palladium‐catalysed couplings of an oxazole fragment at C‐2, followed by a tyrosine fragment at C‐3. With the key 2,3‐disubstituted indole readily in hand, formation of a macrocyclic lactam set the stage for the crucial oxidative rearrangement to a 3,3‐disubstituted oxindole. Notwithstanding the concomitant formation of the unwanted indoxyl isomer, the synthesis successfully delivered, after deprotection, the key oxindole intermediate, thereby completing a formal total synthesis of diazonamide A. 相似文献
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Dr. Amit B. Pawar Prof. Dr. Kavirayani R. Prasad 《Chemistry (Weinheim an der Bergstrasse, Germany)》2012,18(47):15202-15206
A formal total synthesis of the 20‐membered marine macrolide, palmerolide A from chiral pool tartaric acid is described. Elaboration of a γ‐hydroxy amide, which is derived from the desymmetrization of tartaric acid amide, and Boord olefination are the pivotal reactions employed for the synthesis of the chiral building blocks, and Stille coupling and ring‐closing metathesis (RCM) are used to assemble the macrolactone. 相似文献