858036-07-4Relevant academic research and scientific papers
Distinctive molecular inhibition mechanisms for selective inhibitors of human 11β-hydroxysteroid dehydrogenase type 1
Tu, Hua,Powers, Jay P.,Liu, Jinsong,Ursu, Stefania,Sudom, Athena,Yan, Xuelei,Xu, Haoda,Meininger, David,DeGraffenreid, Michael,He, Xiao,Jaen, Juan C.,Sun, Daqing,Labelle, Marc,Yamamoto, Hiroshi,Shan, Bei,Walker, Nigel P.C.,Wang, Zhulun
experimental part, p. 8922 - 8931 (2009/04/06)
11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1) catalyzes the NADPH dependent interconversion of inactive cortisone to active cortisol. Excess 11β-HSD1 or cortisol leads to insulin resistance and metabolic syndrome in animal models and in humans. Inhibiting 11β-HSD1 activity signifies a promising therapeutic strategy in the treatment of Type 2 diabetes and related diseases. Herein, we report two highly potent and selective small molecule inhibitors of human 11β-HSD1. While compound 1, a sulfonamide, functions as a simple substrate competitive inhibitor, compound 2, a triazole, shows the kinetic profile of a mixed inhibitor. Co-crystal structures reveal that both compounds occupy the 11β-HSD1 catalytic site, but present distinct molecular interactions with the protein. Strikingly, compound 2 interacts much closer to the cofactor NADP+ and likely modifies its binding. Together, the structural and kinetic analyses demonstrate two distinctive molecular inhibition mechanisms, providing valuable information for future inhibitor design.
ARYL SULFONAMIDE COMPOUNDS AND USES RELATED THERETO
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Page/Page column 78-79, (2010/02/12)
The present invention provides Aryl Sulfonamide Compounds having the formula: (I); and prodrugs or pharmaceutically acceptable salts or prodrugs thereof. The Aryl Sulfonamide Compounds are useful for treating diabetes, obesity, and other diseases and disorders.
