Unified synthesis of diverse building blocks for application in the discovery of bioactive small molecules

The synthesis of large numbers of diverse molecular scaffolds with controlled molecular properties is a significant challenge in synthetic organic chemistry. A modular unified synthesis was developed, and was exploited in the synthesis of sixteen diverse three-dimensional scaffolds. The approach exp...

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Veröffentlicht in:Tetrahedron 2019-09, Vol.75 (38), p.130513, Article 130513
Hauptverfasser: Rice, Scott, Cox, Daniel J., Marsden, Stephen P., Nelson, Adam
Format: Artikel
Sprache:eng
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Zusammenfassung:The synthesis of large numbers of diverse molecular scaffolds with controlled molecular properties is a significant challenge in synthetic organic chemistry. A modular unified synthesis was developed, and was exploited in the synthesis of sixteen diverse three-dimensional scaffolds. The approach exploited two cyclisation precursors to be converted, using a toolkit of cyclisation reactions, into spirocyclic and fused-ring scaffolds. Remarkably, Pd-catalysed aminoarylation of substituted N-Boc-hex-5-enylamine cyclisation precursors to yield N-Boc piperidine-containing scaffolds was successful which was ascribed to a significant Thorpe−Ingold effect. Computational property analysis showed that the decorated scaffolds are shape-diverse, and enable diverse lead-like chemical space to be targeted. [Display omitted] •Unified synthesis of diverse building blocks.•Pd-catalysed aminoarylation yields N-Boc piperidine-containing scaffolds.•The decorated scaffolds are shape-diverse, and enable diverse lead-like chemical space to be targeted.
ISSN:0040-4020
1464-5416
DOI:10.1016/j.tet.2019.130513