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A biocatalytic hydroxylation-enabled unified approach to C19-hydroxylated steroids.


ABSTRACT: Steroidal C19-hydroxylation is pivotal to the synthesis of naturally occurring bioactive C19-OH steroids and 19-norsteroidal pharmaceuticals. However, realizing this transformation is proved to be challenging through either chemical or biological synthesis. Herein, we report a highly efficient method to synthesize 19-OH-cortexolone in 80% efficiency at the multi-gram scale. The obtained C19-OH-cortexolone can be readily transformed to various synthetically useful intermediates including the industrially valuable 19-OH-androstenedione, which can serve as a basis for synthesis of C19-functionalized steroids as well as 19-nor steroidal drugs. Using this biocatalytic C19-hydroxylation method, the unified synthesis of six C19-hydroxylated pregnanes is achieved in just 4 to 9 steps. In addition, the structure of sclerosteroid B is revised on the basis of our synthesis.

SUBMITTER: Wang J 

PROVIDER: S-EPMC6662754 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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A biocatalytic hydroxylation-enabled unified approach to C19-hydroxylated steroids.

Wang Junlin J   Zhang Yanan Y   Liu Huanhuan H   Shang Yong Y   Zhou Linjun L   Wei Penglin P   Yin Wen-Bing WB   Deng Zixin Z   Qu Xudong X   Zhou Qianghui Q  

Nature communications 20190729 1


Steroidal C19-hydroxylation is pivotal to the synthesis of naturally occurring bioactive C19-OH steroids and 19-norsteroidal pharmaceuticals. However, realizing this transformation is proved to be challenging through either chemical or biological synthesis. Herein, we report a highly efficient method to synthesize 19-OH-cortexolone in 80% efficiency at the multi-gram scale. The obtained C<sub>19</sub>-OH-cortexolone can be readily transformed to various synthetically useful intermediates includi  ...[more]

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