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Biochemical and Biophysical Research Communications|March 31, 1989
A simple, sensitive, and specific radioreceptor assay for inositol 1,4,5-trisphosphate in biological tissuesD S Bredt, R J Mourey, S H SnyderProgress in Brain Research|February 5, 1999
The subcellular distribution of nitric oxide synthase relative to the NR1 subunit of NMDA receptors in the cerebral cortexC Aoki, D S Bredt, S Fenstemaker, et al.The Journal of Biological Chemistry|June 5, 1992
Nitric oxide synthase regulatory sites. Phosphorylation by cyclic AMP-dependent protein kinase, protein kinase C, and calcium/calmodulin protein kinase; identification of flavin and calmodulin binding sitesD S Bredt, C D Ferris, S H SnyderBiochemical and Biophysical Research Communications|May 15, 1991
Nitric oxide synthase: irreversible inhibition by L-NG-nitroarginine in brain in vitro and in vivoM A Dwyer, D S Bredt, S H SnyderThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 26, 1999
Characterization of MALS/Velis-1, -2, and -3: a family of mammalian LIN-7 homologs enriched at brain synapses in association with the postsynaptic density-95/NMDA receptor postsynaptic complexK Jo, R Derin, M Li, et al.Neuroreport|November 30, 2000
Postsynaptic targeting of MAGUKs mediated by distinct N-terminal domainsB L Firestein, S E Craven, D S BredtScience (New York, N.Y.)|April 1, 1988
Tat protein from human immunodeficiency virus forms a metal-linked dimerA D Frankel, D S Bredt, C O PaboNature|October 25, 1990
Localization of nitric oxide synthase indicating a neural role for nitric oxideD S Bredt, P M Hwang, S H SnyderScience (New York, N.Y.)|August 17, 1990
Autoradiographic imaging of phosphoinositide turnover in the brainP M Hwang, D S Bredt, S H SnyderCell Calcium|April 1, 1995
Possible regulation of capacitative Ca2+ entry into colonic epithelial cells by NO and cGMPG Bischof, J Brenman, D S Bredt, et al.Pageof 12