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Proceedings of the National Academy of Sciences of the United States of America|March 18, 1997
Molecular characterization of human and mouse fatty acid amide hydrolasesD K Giang, B F CravattThe Journal of Biological Chemistry|April 18, 1998
A second mammalian N-myristoyltransferaseD K Giang, B F CravattProceedings. Biological Sciences|December 8, 1998
A new perspective on cannabinoid signalling: complementary localization of fatty acid amide hydrolase and the CB1 receptor in rat brainM Egertová, D K Giang, B F Cravatt, et al.Biochemistry|October 28, 1998
Comparative characterization of a wild type and transmembrane domain-deleted fatty acid amide hydrolase: identification of the transmembrane domain as a site for oligomerizationM P Patricelli, H A Lashuel, D K Giang, et al.Nature|November 7, 1996
Molecular characterization of an enzyme that degrades neuromodulatory fatty-acid amidesB F Cravatt, D K Giang, S P Mayfield, et al.Proceedings of the National Academy of Sciences of the United States of America|July 27, 2001
Supersensitivity to anandamide and enhanced endogenous cannabinoid signaling in mice lacking fatty acid amide hydrolaseB F Cravatt, K Demarest, M P Patricelli, et al.Vitamins and Hormones|May 11, 2001
Proteins regulating the biosynthesis and inactivation of neuromodulatory fatty acid amidesM P Patricelli, B F CravattCurrent Opinion in Chemical Biology|December 5, 2000
Chemical strategies for the global analysis of protein functionB F Cravatt, E J SorensenBiochemistry|November 26, 1999
Fatty acid amide hydrolase competitively degrades bioactive amides and esters through a nonconventional catalytic mechanismM P Patricelli, B F CravattBiochemistry|May 16, 2001
Characterization and manipulation of the acyl chain selectivity of fatty acid amide hydrolaseM P Patricelli, B F CravattPageof 5