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Current Opinion in Structural Biology|August 1, 1996
Portrait of a myristoyl switch proteinJ B Ames, T Tanaka, L Stryer, et al.The Journal of Biological Chemistry|December 29, 1995
Nuclear magnetic resonance evidence for Ca(2+)-induced extrusion of the myristoyl group of recoverinJ B Ames, T Tanaka, M Ikura, et al.Neuron|May 1, 1994
Dual role of calmodulin in autophosphorylation of multifunctional CaM kinase may underlie decoding of calcium signalsP I Hanson, T Meyer, L Stryer, et al.Biochemistry|September 6, 1994
Secondary structure of myristoylated recoverin determined by three-dimensional heteronuclear NMR: implications for the calcium-myristoyl switchJ B Ames, T Tanaka, L Stryer, et al.Biochemical and Biophysical Research Communications|March 16, 1992
In vivo farnesylation of rat rhodopsin kinaseJ S Anant, B K FungThe Journal of Biological Chemistry|May 25, 1984
Characterization of transducin from bovine retinal rod outer segments. Mechanism and effects of cholera toxin-catalyzed ADP-ribosylationS E Navon, B K FungMa Zui Xue Za Zhi = Anaesthesiologica Sinica|June 1, 1993
Evaluation of supraclavicular brachial plexus block in upper extremity surgeryB K Fung, A J GislefossThe Journal of Biological Chemistry|September 10, 1983
Characterization of transducin from bovine retinal rod outer segments. II. Evidence for distinct binding sites and conformational changes revealed by limited proteolysis with trypsinB K Fung, C R NashThe Journal of Biological Chemistry|November 25, 1989
The membrane-binding domain of a 23-kDa G-protein is carboxyl methylatedH K Yamane, B K FungBiochemistry|April 18, 1989
G protein-effector coupling: binding of rod phosphodiesterase inhibitory subunit to transducinB K Fung, I Griswold-PrennerPageof 12