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Annual Review of Biochemistry|June 15, 2005
Structure and function of fatty acid amide hydrolaseMichele K McKinney, Benjamin F CravattBiochemistry|July 27, 2006
Structure-based design of a FAAH variant that discriminates between the N-acyl ethanolamine and taurine families of signaling lipidsMichele K McKinney, Benjamin F CravattThe Journal of Biological Chemistry|May 8, 2003
Evidence for distinct roles in catalysis for residues of the serine-serine-lysine catalytic triad of fatty acid amide hydrolaseMichele K McKinney, Benjamin F CravattBiochemistry|July 27, 2006
A FAAH-regulated class of N-acyl taurines that activates TRP ion channelsAlan Saghatelian, Michele K McKinney, Michael Bandell, et al.Chemical Science|June 28, 2012
Clickable, photoreactive inhibitors to probe the active site microenvironment of fatty acid amide hydrolase()Susanna M Saario, Michele K McKinney, Anna E Speers, et al.The Journal of Biological Chemistry|October 4, 2006
A second fatty acid amide hydrolase with variable distribution among placental mammalsBinqing Q Wei, Tarjei S Mikkelsen, Michele K McKinney, et al.Israel Journal of Chemistry|May 19, 2023
Activity-based protein profiling - finding general solutions to specific problemsBenjamin F CravattAnnual Review of Cancer Biology|September 19, 2025
Chemical Proteomics-Guided Discovery of Covalent Ligands for Cancer ProteinsXiaoyu Zhang, Benjamin F CravattCurrent Opinion in Chemical Biology|February 11, 2005
Global strategies to integrate the proteome and metabolomeAlan Saghatelian, Benjamin F CravattPageof 55