Angewandte Chemie - International Edition, volume 62, issue 1
Convergent Assembly of the Tricyclic Labdane Core Enables Synthesis of Diverse Forskolin‐like Molecules
Paweł M Szczepanik
1, 2
,
Andrey A Mikhaylov
1, 2
,
Ondřej Hylse
1, 2
,
Roman Kučera
1
,
Petra Daďová
3, 4
,
Marek Nečas
1
,
Lukáš Kubala
2, 3, 4
,
Kamil Paruch
1, 2
,
Jakub Švenda
1, 2
1
Publication type: Journal Article
Publication date: 2022-11-29
scimago Q1
wos Q1
SJR: 5.300
CiteScore: 26.6
Impact factor: 16.1
ISSN: 14337851, 15213773
General Chemistry
Catalysis
Abstract
We report a new synthetic strategy for the flexible preparation of forskolin-like molecules. The approach is different from the previously published works and employs a convergent assembly of the tricyclic labdane-type core from pre-functionalized cyclic building blocks. Stereoselective Michael addition enabled the fragment coupling with excellent control over three newly created contiguous stereocenters, all-carbon quaternary centers included. Silyl enol ether-promoted ring-opening metathesis paired with ring closure were the other key steps enabling concise assembly of the tricyclic core. Late-stage functionalization sequences transformed the tricyclic intermediates into a set of different forskolin-like molecules. The modular nature of the synthetic scheme described herein has the potential to become a general platform for the preparation of analogs of forskolin and other complex tricyclic labdanes.
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