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Synthesis of the QRSTU domain of maitotoxin and its 85-epi- and 86-epi-diastereoisomers.


ABSTRACT: A devised synthetic strategy toward the QRSTU ring system 4 of the marine-derived biotoxin maitotoxin (1) delivered, in addition to 4, its diastereoisomers 85-epi-QRSTU and 86-epi-QRSTU ring systems 5 and 6. The convergent route to these maitotoxin fragments involved coupling of UT and Q building blocks 9 (obtained from 2-deoxy-D-ribose) and 10 (obtained from D-ribose) followed by ring-closing metathesis to afford enol ether 8, whose elaboration to the targeted QRSTU ring system 4 required its conversion to hydroxy ketone 7. The latter compound (7) was transformed to the final product through a hydroxy dithioketal cyclization, followed by oxidation/methylation of the resulting O,S-mixed ketal to install the last of the five methyl groups contained within the target molecule (4). (13)C NMR spectroscopic analysis of synthesized fragments 4, 5, and 6 and comparisons with maitotoxin provided strong support for the originally assigned structure of the QRSTU domain of the natural product.

SUBMITTER: Nicolaou KC 

PROVIDER: S-EPMC2913318 | biostudies-literature | 2010 Jul

REPOSITORIES: biostudies-literature

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Synthesis of the QRSTU domain of maitotoxin and its 85-epi- and 86-epi-diastereoisomers.

Nicolaou K C KC   Gelin Christine F CF   Seo Jae Hong JH   Huang Zhihong Z   Umezawa Taiki T  

Journal of the American Chemical Society 20100701 28


A devised synthetic strategy toward the QRSTU ring system 4 of the marine-derived biotoxin maitotoxin (1) delivered, in addition to 4, its diastereoisomers 85-epi-QRSTU and 86-epi-QRSTU ring systems 5 and 6. The convergent route to these maitotoxin fragments involved coupling of UT and Q building blocks 9 (obtained from 2-deoxy-D-ribose) and 10 (obtained from D-ribose) followed by ring-closing metathesis to afford enol ether 8, whose elaboration to the targeted QRSTU ring system 4 required its c  ...[more]

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