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Structural Basis for Highly Selective Class II Alpha Phosphoinositide-3-Kinase Inhibition. | LitMetric

AI Article Synopsis

  • - Class II phosphoinositide-3-kinases (PI3Ks) are important for various cellular processes like signaling, division, and survival, but studying their specific functions is challenging without selective inhibitors.
  • - Researchers have developed selective PI3K-C2α inhibitors, named PITCOINs, through a study that focused on the structure-activity relationship of a specific chemical scaffold, identifying key molecular features for their effectiveness.
  • - The PITCOINs demonstrated strong inhibition of PI3K-C2α with no interference in other kinases, showing promise for new treatments targeting diseases associated with this isoform's function.

Article Abstract

Class II phosphoinositide-3-kinases (PI3Ks) play central roles in cell signaling, division, migration, and survival. Despite evidence that all PI3K class II isoforms serve unique cellular functions, the lack of isoform-selective inhibitors severely hampers the systematic investigation of their potential relevance as pharmacological targets. Here, we report the structural evaluation and molecular determinants for selective PI3K-C2α inhibition by a structure-activity relationship study based on a pteridinone scaffold, leading to the discovery of selective PI3K-C2α inhibitors called PITCOINs. Cocrystal structures and docking experiments supported the rationalization of the structural determinants essential for inhibitor activity and high selectivity. Profiling of PITCOINs in a panel of more than 118 diverse kinases showed no off-target kinase inhibition. Notably, by addressing a selectivity pocket, showed nanomolar inhibition of PI3K-C2α and >100-fold selectivity in a general kinase panel. Our study paves the way for the development of novel therapies for diseases related to PI3K-C2α function.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11151210PMC
http://dx.doi.org/10.1021/acs.jmedchem.3c01319DOI Listing

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