| Literature DB >> 27124236 |
John T R Liddon1, Michael J James1, Aimee K Clarke1, Peter O'Brien1, Richard J K Taylor2, William P Unsworth3.
Abstract
Medicinally relevant spirocyclic indolenines, carbazoles and quinolines can each be directly synthesised selectively from common indolyl ynone starting materials by catalyst variation. The high yielding, divergent reactions all proceed by an initial dearomatising spirocyclisation reaction to generate an intermediate vinyl-metal species, which then rearranges selectively by careful choice of catalyst and reaction conditions.Entities:
Keywords: carbazoles; catalysis; diversity; quinolines; spirocycles
Mesh:
Substances:
Year: 2016 PMID: 27124236 PMCID: PMC5084754 DOI: 10.1002/chem.201601836
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236
Figure 1Catalyst‐driven scaffold diversity.
Scheme 1Divergent synthesis of spirocycles 3, carbazoles 5, quinolines 7 and tetracyclic scaffolds 8 from indolyl ynones 1.
Scheme 2Formation of spirocyclic indolenine 3 a.
Scheme 3Formation of carbazole 5 a; [Au]=Ph3PAuNTf2, L=ligand.
Scheme 4Formation of quinoline 7 a; X=Cl or iPrO.
Scheme 5Base‐mediated formation of quinoline 7 a and the contrasting reactivity of spirocyclic cyclopentenol 14.
Reaction scope for the formation of spirocyclic indolenines, carbazoles and quinolones.
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[a] AgOTf (1 mol %) in CH2Cl2 (0.1 m) at RT for 0.1–3.5 h. [b] Ph3PAuNTf2 (2–5 mol %) in CH2Cl2 (0.1 m) at RT for 7–18 h. [c] AgOTf (1 mol %) in iPrOH (0.1 m) at RT for 1–3 h, then AlCl3⋅6 H2O (5–10 mol %) at 100 °C μW for 1–2 h. [d] Reaction performed in toluene. [e] AgOTf (1 mol %) in CH2Cl2 (0.1 m) at RT for 1–3 h, then solvent swap for iPrOH (0.1 m) then AlCl3⋅6 H2O (5–10 mol %) at 100 °C μW for 1–2 h. PMP=para‐methoxyphenyl.
Scheme 6One‐pot spirocyclisation/trapping to form tetracycles 8 h–8 j.