In Silico-Enabled Discovery and Development of Potent and Selective CDK11 Inhibitors

  • ChemMedChem. 2026 Mar 27;21(6):e202500882. doi: 10.1002/cmdc.202500882.
Frankie S Mak  1 Fui Mee Ng  1 Padmanabhan Anbazhagan  1 Vikas Madan  1 Qian Wen Tan  1 Yiyang See  1 Diane Lim  1 Frances Karla Kusuma  1 Hannah Toh  1 Juliana Mohammad  1 Haiyan Yang  1 Sandra Sim  1 Li Hong Tan  1 Eileen Tay  1 Ronald Toh Kuan Hai  1 Perlyn Zekui Kwek  1 Mei Yee Wong  1 Deepika Raman  1 Qi An Ang  1 Vithya Manoharan  1 Susmitha Vuddagiri  1 Monique Danielle Dawson  1 Alison Tan  1 Joma Kanikadu Joy  1 Bong Hwa Gan  1 Choon Bing Low  1 Haoying Xu  1 Siew Pheng Lim  1 Hannes Hentze  1 Joseph Cherian  1 Chong Teik Tan  1 Jackie Ang  1 Kantharaj Ethirajulu  1 Klement Foo  1 Inderjeet Singh  1 Weijun Xu  1
Affiliations
  • 1. Experimental Drug Development Centre (EDDC), Chromos, Singapore.
Abstract

Cyclin-dependent kinase 11 (CDK11) plays a critical role in cell cycle regulation and transcriptional control, making it a promising target for therapeutic intervention in Cancer and Other proliferative disorders. This study employs computationally driven approaches encompassing homology modelling, molecular dynamic simulations, ultralarge-scale virtual screening and medicinal chemistry optimisation to develop a series of novel inhibitors of CDK11. Our virtual screening pipeline led to the identification of two initial hits (compounds 3 and 4), which were further evaluated through structure-activity relationship (SAR) studies. Together with structure-guided molecular docking and design, these SAR analyses revealed key structural motifs and functional groups that are crucial for inhibitory activity and selectivity, providing insights into the efficient hit-to-lead optimisation. Compound 37 emerged as an optimised potent and selective CDK11 Inhibitor (IC50 4 nM, kinome panel clean). In a lung tumour model, mice dosed twice daily with 100 mg/kg of compound 37 showed ∼30% tumour growth inhibition. Both in vitro absorption, distribution, metabolism and excretion and in vivo mouse pharmacokinetics (PK) profiling indicated that compound 37 possesses excellent PK/pharmacodynamic properties, positioning the compound for further development and evaluation as a lead candidate for CDK11-targeted therapy. Meanwhile, the series of compounds developed throughout this study represent novel tools for studying CDK11-mediated pathophysiology. The integration of in silico modelling, screening and structure-based drug design provides a robust strategy for accelerating the identification of potent and selective inhibitors for Other CDK families.

Keywords
CDK11 inhibitors; molecular dynamic simulations; structure‐based drug design; virtual screen.
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