1. Academic Validation
  2. Chemical modification and structure-activity relationships of pyripyropenes. 3. Synthetic conversion of pyridine-pyrone moiety

Chemical modification and structure-activity relationships of pyripyropenes. 3. Synthetic conversion of pyridine-pyrone moiety

  • J Antibiot (Tokyo). 1997 Mar;50(3):229-36.
R Obata 1 T Sunazuka Z Tian H Tomoda Y Harigaya S Omura
Affiliations

Affiliation

  • 1 Research Center for Biological Function, Kitasato Institute, Kitasato University, Tokyo, Japan.
PMID: 9439694
Abstract

Structure-activity relationships of the pyridine-pyrone moiety in pyripyropene A (1), a potent acyl-CoA : cholesterol Acyltransferase (ACAT) inhibitor of Fungal origin, were studied. Several kinds of aromatic or hetero ring substituents for the pyridine moiety were synthesized using unique degradation reaction, following by gamma-acylation. All the six synthesized analogs decreased the inhibitory activity with 20 to 200 times larger IC50 values than that of 1. Furthermore, the pyridine-pyrone substituent also dramatically decrease the inhibitory activity. Thus, the pyridine-pyrone moiety is important for eliciting potent ACAT inhibition.

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