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Collective Synthesis of Sarpagine and Macroline Alkaloid-Inspired Compounds.
Aoyama, Hikaru; Davies, Caitlin; Liu, Jie; Pahl, Axel; Kirchhoff, Jan-Lukas; Scheel, Rebecca; Sievers, Sonja; Strohmann, Carsten; Grigalunas, Michael; Waldmann, Herbert.
Afiliação
  • Aoyama H; Max Planck Institute of Molecular Physiology, Department of Chemical Biology, 44227, Dortmund, Germany.
  • Davies C; Max Planck Institute of Molecular Physiology, Department of Chemical Biology, 44227, Dortmund, Germany.
  • Liu J; Max Planck Institute of Molecular Physiology, Department of Chemical Biology, 44227, Dortmund, Germany.
  • Pahl A; Max Planck Institute of Molecular Physiology, Department of Chemical Biology, 44227, Dortmund, Germany.
  • Kirchhoff JL; Compound Management and Screening Center, 44227, Dortmund, Germany.
  • Scheel R; Technical University Dortmund, Faculty of Chemistry, Inorganic Chemistry, 44227, Dortmund, Germany.
  • Sievers S; Technical University Dortmund, Faculty of Chemistry, Inorganic Chemistry, 44227, Dortmund, Germany.
  • Strohmann C; Max Planck Institute of Molecular Physiology, Department of Chemical Biology, 44227, Dortmund, Germany.
  • Grigalunas M; Compound Management and Screening Center, 44227, Dortmund, Germany.
  • Waldmann H; Technical University Dortmund, Faculty of Chemistry, Inorganic Chemistry, 44227, Dortmund, Germany.
Chemistry ; 30(5): e202303027, 2024 Jan 22.
Article em En | MEDLINE | ID: mdl-37755456
ABSTRACT
Design strategies that can access natural-product-like chemical space in an efficient manner may facilitate the discovery of biologically relevant compounds. We have employed a divergent intermediate strategy to construct an indole alkaloid-inspired compound collection derived from two different molecular design principles, i.e. biology-oriented synthesis and pseudo-natural products. The divergent intermediate was subjected to acid-catalyzed or newly discovered Sn-mediated conditions to selectively promote intramolecular C- or N-acylation, respectively. After further derivatization, a collection totalling 84 compounds representing four classes was obtained. Morphological profiling via the cell painting assay coupled with a subprofile analysis showed that compounds derived from different design principles have different bioactivity profiles. The subprofile analysis suggested that a pseudo-natural product class is enriched in modulators of tubulin, and subsequent assays led to the identification of compounds that suppress in vitro tubulin polymerization and mitotic progression.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Produtos Biológicos / Alcaloides / Oxindóis / Antineoplásicos Idioma: En Revista: Chemistry Assunto da revista: QUIMICA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Alemanha

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Produtos Biológicos / Alcaloides / Oxindóis / Antineoplásicos Idioma: En Revista: Chemistry Assunto da revista: QUIMICA Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Alemanha