Characterization of adrenergic receptors in membranes from the rat seminal vesicle.
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[1] M. Caron,et al. Molecular biology of α-adrenergic receptors: implications for receptor classification and for structure-function relationships , 1991 .
[2] R. Villalobos-Molina,et al. α1-Adrenoceptor subtypes in aorta (α1A) and liver (α1B) , 1991 .
[3] 深瀬 広幸. Inverse regulation of α[1]- and -β-adrenergic receptors by androgen in the membrane of rat seminal vesicle , 1991 .
[4] M. Caron,et al. Molecular biology of alpha-adrenergic receptors: implications for receptor classification and for structure-function relationships. , 1991, Biochimica et Biophysica Acta.
[5] T. Endo,et al. Thyrotrophin increases the alpha 1b-adrenergic receptors in rat thyroid gland in vivo. , 1990, Journal of Endocrinology.
[6] K. Minneman,et al. Alpha 1-adrenergic receptor subtypes and formation of inositol phosphates in dispersed hepatocytes and renal cells. , 1990, Molecular pharmacology.
[7] R. Riek,et al. Identification and structural characterization of alpha 1-adrenergic receptor subtypes. , 1990, Molecular pharmacology.
[8] G. Tsujimoto,et al. Characterization of α1-adrenergic receptor subtypes linked to iodide efflux in rat FRTL cells , 1990 .
[9] H. Fukase,et al. Desensitization of α-adrenergic glycogenolytic response in rat hepatocytes , 1990 .
[10] 志村 浩己. Characterization of α[1]-adrenergic receptor subtypes linked to iodide efflux in FRTL cells , 1990 .
[11] G. Tsujimoto,et al. Glycogen phosphorylase activation by two different alpha 1-adrenergic receptor subtypes: methoxamine selectively stimulates a putative alpha 1-adrenergic receptor subtype (alpha 1a) that couples with Ca2+ influx. , 1989, Molecular pharmacology.
[12] O. Adenekan. Evidence for α1‐adrenoceptor subtype predominance in the rat seminal vesicle , 1989 .
[13] P. Abel,et al. Comparison of alpha 1-adrenergic receptor subtypes distinguished by chlorethylclonidine and WB 4101. , 1988, Molecular pharmacology.
[14] P. Abel,et al. Heterogeneity of alpha 1-adrenergic receptors revealed by chlorethylclonidine. , 1987, Molecular pharmacology.
[15] K. Minneman,et al. Differentiation of alpha 1-adrenergic receptors linked to phosphatidylinositol turnover and cyclic AMP accumulation in rat brain. , 1987, Molecular pharmacology.
[16] P. Insel,et al. Alpha 1-adrenergic receptor-linked guanine nucleotide-binding protein in muscle and kidney epithelial cells. , 1987, Molecular pharmacology.
[17] P. Poyet,et al. Characteristics of the β-adrenergic receptor in the rat ventral prostate using [125I]cyanopindolol , 1986, Molecular and Cellular Endocrinology.
[18] I. Creese,et al. Characterization of alpha 1-adrenergic receptor subtypes in rat brain: a reevaluation of [3H]WB4104 and [3H]prazosin binding. , 1986, Molecular pharmacology.
[19] P. Poyet,et al. Characteristics of the β‐adrenergic stimulation of adenylate cyclase activity in rat ventral prostate and its modulation by androgens , 1986, The Prostate.
[20] N. Akamatsu,et al. Age-related alterations in the catecholamine-sensitive adenylate cyclase system of the prostate. , 1985, Molecular pharmacology.
[21] R. Ponzio,et al. Effects of autonomic drugs on contractions of rat seminal vesicles in vivo. , 1984, Journal of reproduction and fertility.
[22] S. Shima,et al. Blockade of heterologous desensitization of prostate adenylate cyclase without blockade of homologous down regulation of receptors or loss of GTP regulation of agonist binding. , 1983, Journal of Biological Chemistry.
[23] P. Insel,et al. Characterization of alpha-adrenergic receptor subtypes in the rat renal cortex. Differential regulation of alpha 1- and alpha 2-adrenergic receptors by guanyl nucleotides and Na. , 1982, Molecular pharmacology.
[24] S. Genedani,et al. Phentolamine inhibition of rat seminal vesicle response to dopaminemimetic drugs: α‐adrenoceptor implication or lack of specificity? , 1982, The Journal of pharmacy and pharmacology.
[25] S. Shima,et al. Effects of androgens on isoproterenol-sensitive adenylate cyclase system of the rat prostate. , 1980, Molecular pharmacology.
[26] S. Yamada,et al. The regulation of cardiac alpha 1-adrenergic receptors by guanine nucleotides and by muscarinic cholinergic agonists. , 1980, European journal of pharmacology.
[27] S. Shima,et al. Effect of adrenergic stimulation on adenylate cyclase activity in rat prostate. , 1980, Biochimica et biophysica acta.
[28] S. Snyder,et al. Binding characteristics of a radiolabeled agonist and antagonist at central nervous system alpha noradrenergic receptors. , 1977, Molecular pharmacology.
[29] M. Lin,et al. Effects of GTP on binding of (3H) glucagon to receptors in rat hepatic plasma membranes. , 1977, The Journal of biological chemistry.
[30] R. Lefkowitz,et al. Catecholamine binding to the beta-adrenergic receptor. , 1977, Proceedings of the National Academy of Sciences of the United States of America.
[31] M. Caron,et al. Regulation of beta-adrenergic receptors by guanyl-5'-yl imidodiphosphate and other purine nucleotides. , 1976, The Journal of biological chemistry.
[32] L. Birnbaumer,et al. The glucagon-sensitive adenyl cyclase system in plasma membranes of rat liver. IV. Effects of guanylnucleotides on binding of 125I-glucagon. , 1971, The Journal of biological chemistry.
[33] J. Valle,et al. Hormonal regulation of rat seminal vesicle sensitivity to adrenaline, noradrenaline, acetylcholine and acetyl‐β‐methylcholine , 1969, British journal of pharmacology.
[34] O. H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.