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Chemistry & Biology|November 22, 2005
Mechanism of carbamate inactivation of FAAH: implications for the design of covalent inhibitors and in vivo functional probes for enzymesJessica P Alexander, Benjamin F CravattCurrent Opinion in Chemical Biology|August 28, 2003
Fatty acid amide hydrolase: an emerging therapeutic target in the endocannabinoid systemBenjamin F Cravatt, Aron H LichtmanThe Journal of Biological Chemistry|January 30, 2008
Anandamide biosynthesis catalyzed by the phosphodiesterase GDE1 and detection of glycerophospho-N-acyl ethanolamine precursors in mouse brainGabriel M Simon, 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 CravattNature Methods|September 29, 2007
Activity-based protein profiling for the functional annotation of enzymesKatherine T Barglow, Benjamin F CravattThe Journal of Biological Chemistry|July 5, 2006
Endocannabinoid biosynthesis proceeding through glycerophospho-N-acyl ethanolamine and a role for alpha/beta-hydrolase 4 in this pathwayGabriel M Simon, Benjamin F CravattNature Methods|April 10, 2007
Chemoselective probes for metabolite enrichment and profilingErin E Carlson, Benjamin F CravattChemistry & Biology|September 22, 2007
Chemical proteomic probes for profiling cytochrome p450 activities and drug interactions in vivoAaron T Wright, Benjamin F CravattNature Methods|January 13, 2009
Large-scale profiling of protein palmitoylation in mammalian cellsBrent R Martin, Benjamin F CravattJournal of the American Chemical Society|July 14, 2005
A tandem orthogonal proteolysis strategy for high-content chemical proteomicsAnna E Speers, Benjamin F CravattPageof 56