Zanetti Andrea, Schwertz Geoffrey, de Oliveira Marllon Nascimento, Gomez Fernandez Mario Andrés, Amara Zacharias, Cossy Janine
Molecular, Macromolecular Chemistry and Materials (C3M), ESPCI Paris/CNRS/PSL Research University, Paris 75005 Cedex 5, France.
Equipe de Chimie Moléculaire, Laboratoire de Génomique, Bioinformatique et Chimie Moléculaire, (GBCM) Conservatoire National des Arts et Métiers, HESAM Université, 2 rue Conté, Paris Cedex 03, France.
J Org Chem. 2021 Jun 4;86(11):7603-7608. doi: 10.1021/acs.joc.1c00653. Epub 2021 May 13.
A regioselective Pd-catalyzed allylic oxidation of amorphadiene, a key precursor to the antimalarial drug artemisinin, is described. Amorphadiene can be obtained in high yields by fermentation, but it is currently treated as a waste in the industrial semisynthetic artemisinin process. The catalytic step described here is a substitute for the P450 enzymes involved in the artemisinin biosynthesis and opens up new opportunities to supplement a critical step in the current semisynthetic route and increase the potential of the fermentation process.
本文描述了一种区域选择性钯催化的青蒿二烯烯丙基氧化反应,青蒿二烯是抗疟药物青蒿素的关键前体。青蒿二烯可通过发酵高产率获得,但在工业半合成青蒿素过程中,它目前被当作废物处理。这里所描述的催化步骤替代了青蒿素生物合成中涉及的细胞色素P450酶,并为补充当前半合成路线中的关键步骤以及提高发酵工艺的潜力开辟了新机遇。