Showing results (121-130 of 268) with videos related to
Sort By:
Pageof 27
Archives of Biochemistry and Biophysics|October 1, 1987
Phosphorylation of the beta-adrenergic receptor in intact cells: relationship to heterologous and homologous mechanisms of adenylate cyclase desensitizationD R Sibley, K Daniel, C D Strader, et al.Developmental Neuroscience|August 6, 1998
Striatal excitatory amino acid receptor subunit expression in the D1A-dopamine receptor-deficient mouseM A Ariano, J Drago, D R Sibley, et al.Biochemical and Biophysical Research Communications|June 29, 1984
Phorbol diesters promote beta-adrenergic receptor phosphorylation and adenylate cyclase desensitization in duck erythrocytesD R Sibley, P Nambi, J R Peters, et al.The Journal of Biological Chemistry|February 25, 1985
Desensitization of the turkey erythrocyte beta-adrenergic receptor in a cell-free system. Evidence that multiple protein kinases can phosphorylate and desensitize the receptorP Nambi, J R Peters, D R Sibley, et al.European Journal of Pharmacology|February 11, 1986
Guanine nucleotide regulation of agonist interactions at [3H]SCH23390-labeled D1 dopamine receptors in rat striatumE J Hess, G Battaglia, A B Norman, et al.The American Journal of Psychiatry|January 1, 1980
Low neuroleptic serum levels in patients receiving fluphenazine decanoateL E Tune, I Creese, J T Coyle, et al.Advances in Experimental Medicine and Biology|January 1, 1987
Molecular mechanisms of beta-adrenergic receptor desensitizationD R Sibley, J L Benovic, M G Caron, et al.The Journal of Biological Chemistry|April 10, 1985
Homologous desensitization of adenylate cyclase is associated with phosphorylation of the beta-adrenergic receptorD R Sibley, R H Strasser, M G Caron, et al.Molecular and Cellular Endocrinology|July 1, 1984
Dopaminergic inhibition of adenylate cyclase correlates with high affinity agonist binding to anterior pituitary D2 dopamine receptorsW M McDonald, D R Sibley, B F Kilpatrick, et al.Synapse (New York, N.Y.)|October 1, 1996
D2L, D2S, and D3 dopamine receptors stably transfected into NG108-15 cells couple to a voltage-dependent potassium current via distinct G protein mechanismsL X Liu, F J Monsma, D R Sibley, et al.Pageof 27