scholarly article | Q13442814 |
review article | Q7318358 |
P356 | DOI | 10.1056/NEJM198406143102406 |
P698 | PubMed publication ID | 6145093 |
P50 | author | Robert Lefkowitz | Q80910 |
Marc Caron | Q64858849 | ||
P2093 | author name string | Stiles GL | |
P2860 | cites work | LIGAND: A versatile computerized approach for characterization of ligand-binding systems | Q29547346 |
Impaired formation of beta-adrenergic receptor-nucleotide regulatory protein complexes in pseudohypoparathyroidism. | Q34609563 | ||
Agonist-promoted coupling of the beta-adrenergic receptor with the guanine nucleotide regulatory protein of the adenylate cyclase system | Q34708038 | ||
Catecholamine-induced desensitization of turkey erythrocyte adenylate cyclase is associated with phosphorylation of the beta-adrenergic receptor | Q34708390 | ||
Pure β-adrenergic receptor: the single polypeptide confers catecholamine responsiveness to adenylate cyclase | Q34708451 | ||
Mechanism of adenylate cyclase activation by cholera toxin: Inhibition of GTP hydrolysis at the regulatory site | Q35043377 | ||
Increased alpha-adrenergic receptors in ischemic cat myocardium. A potential mediator of electrophysiological derangements | Q36998108 | ||
Hypothyroidism modulates beta adrenergic receptor adenylate cyclase interactions in rat reticulocytes | Q37006200 | ||
Beta adrenergic and muscarinic cholinergic receptors in canine myocardium. Effects of ischemia | Q37017720 | ||
Elevation of beta-adrenergic receptor density in human lymphocytes after propranolol administration | Q37021810 | ||
Biochemical Properties of Hormone-Sensitive Adenylate Cyclase | Q40082703 | ||
Adenylate cyclase-coupled beta-adrenergic receptors: structure and mechanisms of activation and desensitization | Q40091313 | ||
The Beta-Adrenergic Receptor in Heart Failure | Q40091746 | ||
Beta-adrenergic receptors: biochemical mechanisms of physiological regulation | Q40093639 | ||
Hypersensitivity to Adrenergic Stimulation after Propranolol Withdrawal in Normal Subjects | Q40103689 | ||
Elevated beta-adrenergic receptor number after chronic propranolol treatment | Q40104244 | ||
Protein Phosphorylation Catalyzed by Cyclic AMP-Dependent and Cyclic GMP-Dependent Protein Kinases | Q40120528 | ||
Radioligand Binding Studies of Adrenergic Receptors: New Insights into Molecular and Physiological Regulation | Q40120542 | ||
The Influence of Hyperthyroidism and Hypothyroidism on α and β-Adrenergic Receptor Systems and Adrenergic Responsiveness* | Q40139244 | ||
Ontogenetic development of isoproterenol subsensitivity of myocardial adenylate cyclase and β-adrenergic receptors in spontaneously hypertensive rats | Q42451018 | ||
Catecholamine-Induced Alteration in Sedimentation Behavior of Membrane Bound β-Adrenergic Receptors | Q45148057 | ||
Defect of Receptor–Cyclase Coupling Protein in Pseudohypoparathyroidism | Q54550049 | ||
Propranolol withdrawal syndrome - why? | Q67352417 | ||
Abnormal beta adrenergic responsiveness in allergic subjects: Analysis of isoproterenol-induced cardiovascular and plasma cyclic adenosine monophosphate responses | Q72853427 | ||
Deficient activity of guanine nucleotide regulatory protein in erythrocytes from patients with pseudohypoparathyroidism | Q72858195 | ||
Reduced vascular beta-adrenergic receptors in deoxycorticosterone-salt hypertensive rats | Q72858212 | ||
Decreased Catecholamine Sensitivity and β-Adrenergic-Receptor Density in Failing Human Hearts | Q72933722 | ||
P433 | issue | 24 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 1570-1579 | |
P577 | publication date | 1984-06-01 | |
P1433 | published in | The New England Journal of Medicine | Q582728 |
P1476 | title | Mechanisms of membrane-receptor regulation. Biochemical, physiological, and clinical insights derived from studies of the adrenergic receptors | |
P478 | volume | 310 |
Q41699309 | A mechanism for testosterone modulation of alpha-1 adrenergic receptor expression in the DDT1 MF-2 smooth muscle myocyte |
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Q44835151 | Alterations of the cAMP-adenylate cyclase system in the failing human heart. Consequences for the therapy with inotropic drugs |
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Q64942764 | Anesthetic Management of the Hypertensive Patient: Part II. |
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Q34357341 | Beta-adrenoceptors in human alveolar macrophages isolated by elutriation |
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Q37874113 | Platelet receptors. |
Q45197917 | Positive inotropic stimulation in the normal and insufficient human myocardium |
Q51636746 | Pregnancy enhances cocaine's actions on the heart and within the peripheral circulation. |
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Q70728586 | Proceedings of a symposium: Calcium metabolism and calcium channel blockers for understanding and treating hypertension |
Q42502811 | Propranolol attenuates exercise-induced increment in human lymphocytic beta-adrenergic receptors |
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Q39276389 | Receptor physiology: clinical implications. |
Q34525454 | Receptor-mediated endocytosis |
Q39261334 | Receptors |
Q41589245 | Reconstitution of beta-adrenergic receptor with components of adenylate cyclase |
Q34349616 | Regional mapping of a human rod alpha-transducin (GNAT1) gene to chromosome 3p22. |
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Q39515158 | Regulation of protein kinase C activity by various lipids |
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Q38349932 | Role of membrane glycoproteins in mediating trophic responses |
Q34196393 | Role of the sympathetic nervous system in cardiac remodeling in hypertension |
Q51778064 | Sex differences in left ventricular function and beta-receptor responsiveness following prolonged strenuous exercise. |
Q36988987 | Specific desensitization of the canine renal vasculature to angiotensin II despite cyclo-oxygenase inhibition |
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