AI Article Synopsis

  • The study aimed to design selective and effective Cdk4 inhibitors by creating a Cdk4 homology model based on Cdk2's X-ray structure and using a new design strategy combining LEGEND and SEEDS.
  • Four classes of scaffold candidates, including diarylurea, were identified, leading to the discovery of a potent Cdk4 inhibitor with an IC50 of 0.10 microM, referred to as compound 15.
  • Further modifications of compound 15 resulted in an even stronger inhibitor (IC50 = 0.042 microM), confirmed through X-ray analysis, and the binding mode of compound 15 was validated using the Cdk2-26a complex.

Article Abstract

As a first step in structure-based design of highly selective and potent Cdk4 inhibitors, we performed structure-based generation of a novel series of Cdk4 inhibitors. A Cdk4 homology model was constructed according to X-ray analysis of an activated form of Cdk2. Using this model, we applied a new de novo design strategy which combined the de novo design program LEGEND with our in-house structure selection supporting system SEEDS to generate new scaffold candidates. In this way, four classes of scaffold candidates including diarylurea were identified. By constructing diarylurea informer libraries based on the structural requirements of Cdk inhibitors in the ATP binding pocket of the Cdk4 model, we were able to identify a potent Cdk4 inhibitor N-(9-oxo-9H-fluoren-4-yl)-N'-pyridin-2-ylurea 15 (IC(50) = 0.10 microM), together with preliminary SAR. We performed a docking study between 15 and the Cdk4 model and selected a reasonable binding mode which is consistent with the SAR. Further modification based on the proposed binding mode provided a more potent compound, N-[(9bR)-5-oxo-2,3,5,9b-tetrahydro-1H-pyrrolo[2,1-a]isoindol-9-yl]-N'-pyridin-2-ylurea 26a (IC(50) = 0.042 microM), X-ray analysis of which was accomplished by the soaking method. The predicted binding mode of 15 in Cdk4 was validated by X-ray analysis of the Cdk2-26a complex.

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Source
http://dx.doi.org/10.1021/jm0103256DOI Listing

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