Synthetic Route of C6H13NOIn 2018 ,ãStructural Optimization of a Pyridinylimidazole Scaffold: Shifting the Selectivity from p38α Mitogen-Activated Protein Kinase to c-Jun N-Terminal Kinase 3ã?appeared in ACS Omega. The author of the article were Ansideri, Francesco; Macedo, Joana T.; Eitel, Michael; El-Gokha, Ahmed; Zinad, Dhafer S.; Scarpellini, Camilla; Kudolo, Mark; Schollmeyer, Dieter; Boeckler, Frank M.; Blaum, Baerbel S.; Laufer, Stefan A.; Koch, Pierre. The article conveys some information:
Starting from known p38α mitogen-activated protein kinase (MAPK) inhibitors, a series of inhibitors of the c-Jun N-terminal kinase (JNK) 3 was obtained. Altering the substitution pattern of the pyridinylimidazole scaffold proved to be effective in shifting the inhibitory activity from the original target p38α MAPK to the closely related JNK3. In particular, a significant improvement for JNK3 selectivity could be achieved by addressing the hydrophobic region I with a small Me group. Furthermore, addnl. structural modifications permitted to explore structure-activity relationships. The most potent inhibitor 4-(4-methyl-2-(methylthio)-1H-imidazol-5-yl)-N-(4-morpholinophenyl)pyridin-2-amine showed an IC50 value for the JNK3 in the low triple digit nanomolar range and its binding mode was confirmed by x-ray crystallog. In the experimental materials used by the author, we found trans-4-Aminocyclohexanol(cas: 27489-62-9Synthetic Route of C6H13NO)
trans-4-Aminocyclohexanol(cas: 27489-62-9) belongs to anime. In organic chemistry, amines are compounds and functional groups that contain a basic nitrogen atom with a lone pair. Amines are formally derivatives of ammonia (NH3), wherein one or more hydrogen atoms have been replaced by a substituent such as an alkyl or aryl group (these may respectively be called alkylamines and arylamines; amines in which both types of substituent are attached to one nitrogen atom may be called alkylarylamines).Synthetic Route of C6H13NO
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