Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar kinase drug pockets, off-target inhibitor toxicity has been a major cause for clinical trial failures. The pockets are similar but not identical. Here, we describe a transformation invariant protocol to identify distinct geometric features in the drug pocket that can distinguish one kinase from all others. We integrate available experimental structures with the artificial intelligence-based structural kinome, performing a kinome-wide structural bioinformatic analysis to establish the structural principles of kinase drug selectivity. We generate the structural landscape from the experimental kinase–ligand complexes and propose a binary network...
The interpretation of high-dimensional structure–activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure–activity data sets in drug discovery to predict lig...
Targeted polypharmacology of kinases has emerged as a promising strategy to design efficient and saf...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase-targeted drug design is challenging. It requires designing inhibitors that can bind to specif...
Abstract Background The human kinome contains many...
Protein kinases remain among the most versatile and prospective therapeutic drug targets with curren...
Protein kinases remain among the most versatile and prospective therapeutic drug targets with curren...
The interpretation of high-dimensional structure-activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure-activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure-activity data sets in drug discovery to predict lig...
Drug discovery programs frequently target members of the human kinome and try to identify small mole...
The interpretation of high-dimensional structure–activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure–activity data sets in drug discovery to predict lig...
Targeted polypharmacology of kinases has emerged as a promising strategy to design efficient and saf...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase drug selectivity is the ground challenge in cancer research. Due to the structurally similar ...
Kinase-targeted drug design is challenging. It requires designing inhibitors that can bind to specif...
Abstract Background The human kinome contains many...
Protein kinases remain among the most versatile and prospective therapeutic drug targets with curren...
Protein kinases remain among the most versatile and prospective therapeutic drug targets with curren...
The interpretation of high-dimensional structure-activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure-activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure-activity data sets in drug discovery to predict lig...
Drug discovery programs frequently target members of the human kinome and try to identify small mole...
The interpretation of high-dimensional structure–activity data sets in drug discovery to predict lig...
The interpretation of high-dimensional structure–activity data sets in drug discovery to predict lig...
Targeted polypharmacology of kinases has emerged as a promising strategy to design efficient and saf...