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Methods in Molecular Biology (Clifton, N.J.)|August 9, 2023
Developing a Kinase Chemogenomic Set: Facilitating Investigation into Kinase Biology by Linking Phenotypes to TargetsCarrow I Wells, David H Drewry
SLAS Discovery : Advancing Life Sciences R & D|April 30, 2019
A Perspective on Extreme Open Science: Companies Sharing Compounds without RestrictionDavid H Drewry, Carrow I Wells, William J Zuercher, et al.
Molecules (Basel, Switzerland)|April 11, 2020
New Insights into 4-Anilinoquinazolines as Inhibitors of Cardiac Troponin I-Interacting Kinase (TNNi3K)Christopher R M Asquith, Tuomo Laitinen, Carrow I Wells, et al.
Current Medicinal Chemistry|March 22, 2021
Targeting Never-In-Mitosis-A Related Kinase 5 in Cancer: A ReviewMargarite D Matossian, Carrow I Wells, William J Zuercher, et al.
Journal of Medicinal Chemistry|August 2, 2021
Identification of Pyrimidine-Based Lead Compounds for Understudied Kinases Implicated in Driving NeurodegenerationDavid H Drewry, Joel K Annor-Gyamfi, Carrow I Wells, et al.
Chemmedchem|May 3, 2020
Targeting the Water Network in Cyclin G-Associated Kinase (GAK) with 4-Anilino-quin(az)oline InhibitorsChristopher R M Asquith, Graham J Tizzard, James M Bennett, et al.
Communications Chemistry|January 25, 2023
Generative and reinforcement learning approaches for the automated de novo design of bioactive compoundsMaria Korshunova, Niles Huang, Stephen Capuzzi, et al.
Cell Chemical Biology|January 23, 2021
Development of a potent and selective chemical probe for the pleiotropic kinase CK2Carrow I Wells, David H Drewry, Julie E Pickett, et al.
Molecules (Basel, Switzerland)|November 9, 2019
Towards the Development of an In vivo Chemical Probe for Cyclin G Associated Kinase (GAK)Christopher R M Asquith, James M Bennett, Lianyong Su, et al.
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