A Pyridine Dearomatization Approach to the Matrine-Type Lupin Alkaloids

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作者
Kerkovius, Jeff K. [1 ]
Stegner, Andrea [1 ]
Turlik, Aneta [2 ]
Lam, Pik Hoi [1 ]
Houk, Kendall N. [2 ]
Reisman, Sarah E. [1 ]
机构
[1] Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena,CA,91125, United States
[2] Departmentof Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles,CA,90095, United States
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Number:; CHE-0541745; CHE-1764328; Acronym:; NSF; Sponsor: National Science Foundation; R35GM118191; NIH; Sponsor: National Institutes of Health; F32GM134709; NIGMS; Sponsor: National Institute of General Medical Sciences; PGSD3-532535-2019; NSERC; Sponsor: Natural Sciences and Engineering Research Council of Canada;
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摘要
(+)-Matrine and (+)-isomatrine are tetracyclic alkaloids isolated from the plant Sophora flavescens, the roots of which are used in traditional Chinese medicine. Biosynthetically, these alkaloids are proposed to derive from three molecules of (-)-lysine via the intermediacy of the unstable cyclic imine Δ1-piperidine. Inspired by the biosynthesis, a new dearomative annulation reaction has been developed that leverages pyridine as a stable surrogate for Δ1-piperidine. In this key transformation, two molecules of pyridine are joined with a molecule of glutaryl chloride to give the complete tetracyclic framework of the matrine alkaloids in a single step. Using this dearomative annulation, isomatrine is synthesized in four steps from inexpensive commercially available chemicals. Isomatrine then serves as the precursor to additional lupin alkaloids, including matrine, allomatrine, isosophoridine, and sophoridine. © 2022 American Chemical Society.
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页码:15938 / 15943
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