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Development of bifunctional organocatalysts and application to asymmetric total synthesis of naucleofficine I and II.


ABSTRACT: The proline-type organocatalysts has been efficiently employed to catalyze a wide range of asymmetric transformations; however, there are still many synthetically useful and challenging transformations that remain unachievable in an asymmetric fashion. Herein, a chiral bifunctional organocatalyst with a spirocyclic pyrrolidine backbone-derived containing fluoro-alkyl and aryl sulfonamide functionalities, are designed, prepared, and examined in the asymmetric Mannich/acylation/Wittig reaction sequence of 3,4-dihydro-β-carboline with acetaldehyde, acyl halides, and Wittig reagents. As a result, the spirocyclic pyrrolidine trifluoromethanesulfonamide catalyst can facilitate this versatile sequence as demonstrated by 18 examples displaying excellent enantioselectivity (up to 94% ee), as well as moderate to good yields (up to 54% over 3 steps). As a practical application, the asymmetric total synthesis of naucleofficine I (1a) and II (1b) in ten steps have been accomplished.

SUBMITTER: Yuan YH 

PROVIDER: S-EPMC6662887 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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Development of bifunctional organocatalysts and application to asymmetric total synthesis of naucleofficine I and II.

Yuan Yong-Hai YH   Han Xue X   Zhu Fu-Ping FP   Tian Jin-Miao JM   Zhang Fu-Min FM   Zhang Xiao-Ming XM   Tu Yong-Qiang YQ   Wang Shao-Hua SH   Guo Xiang X  

Nature communications 20190729 1


The proline-type organocatalysts has been efficiently employed to catalyze a wide range of asymmetric transformations; however, there are still many synthetically useful and challenging transformations that remain unachievable in an asymmetric fashion. Herein, a chiral bifunctional organocatalyst with a spirocyclic pyrrolidine backbone-derived containing fluoro-alkyl and aryl sulfonamide functionalities, are designed, prepared, and examined in the asymmetric Mannich/acylation/Wittig reaction seq  ...[more]

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