We have previously demonstrated that 3,5,3′-triiodothyronine (T3), whether administered in vivo or added to suspending media in vitro, promptly stimulates the in vitro accumulation of the nonmetabolized amino acids, alpha-aminoisobutyric acid, and cycloleucine (CLE) by thymocytes isolated from weanling rats. In these studies, we have examined the in vitro interaction between catecholamines and T3 with respect to this effect. The previously reported enhancement of CLE accumulation in thymocytes by T3 in vitro (1 μM) was confirmed. When added alone in concentrations ranging between 10 nM and 0.1 mM, the adrenergic agonists, epinephrine and norepinephrine, had no effect on CLE accumulation. At a concentration of 1 μM, isoproterenol, terbutaline, and phenylephrine were also without effect. However, the effect of T3 was clearly potentiated by the concomitant addition of epinephrine, norepinephrine, and possibly isoproterenol, whereas terbutaline and phenylephrine were without effect. Neither basal nor T3-enhanced CLE accumulation was affected by the addition alone of the adrenergic blocking agents, propranolol (0.1 mM), phentolamine (10 μM), or practolol (0.1 mM). Nevertheless, the beta1- and beta2-antagonist, propranol, and the beta1-antagonist, practolol, blocked the increment in CLE accumulation produced by epinephrine; the alpha-antagonist, phentolamine, was without effect.
James Etzkorn, Patricia Hopkins, Janet Gray, Joseph Segal, Sidney H. Ingbar
Title and authors | Publication | Year |
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Tissue localization of [125I]triiodothyronine in the periorbital area of mice: a microautoradiographic study
C Sawas-Dimopoulou, E Papanastasiou, A Angelis, N Toubanakis, L Margaritis |
International Journal of Radiation Applications and Instrumentation. Part B. Nuclear Medicine and Biology | 1992 |
Curriculum Vitae and Bibliography
SH Ingbar |
Thyroid | 1990 |
Action of the Thyroid Hormone at the Level of the Plasma Membrane
J Segal |
Endocrine Research | 1989 |
Comparative characterization of thyroid hormone receptors and binding proteins in rat liver nucleus, plasma membrane, and cytosol by photoaffinity labeling with L-thyroxine
B Dozin, HJ Cahnmann, VM Nikodem |
Biochemistry | 1985 |
Thyroid hormones and the adrenergic nervous system
OR Nilsson, BE Karlberg |
Acta Medica Scandinavica | 1983 |
In vitro stimulation of human red blood cell Ca2+-ATPase by thyroid hormone
PJ Davis, SD Blas |
Biochemical and Biophysical Research Communications | 1981 |
Direct and Synergistic Interactions of 3,5,3′-Triiodothyronine and the Adrenergic System in Stimulating Sugar Transport by Rat Thymocytes
J Segal, SH Ingbar |
Journal of Clinical Investigation | 1980 |
Thyroid status and the depressed elderly
S R Gambert, C P Pontzer, E M Dagon |
Journal of the American Geriatrics Society | 1980 |
Binding of Thyroid Hormone by Human Erythrocyte Cytosol Proteins
K Yoshida, PJ Davis |
Endocrine Research | 1980 |
Effects and plasma levels of propranolol and metoprolol in hyperthyroid patients
OR Nilsson, A Melander, L Tegler |
European Journal of Clinical Pharmacology | 1980 |
Rapid Effect of Triiodothyronine on the Mitochondrial Pathway in Rat Liver in Vivo
K Sterling, MA Brenner, T Sakurada |
Science | 1980 |
Enhancement by glucocorticoid deficiency of the increase in cycloleucine accumulation induced in rat thymocytes by triiodothyronine
JR Etzkorn, P Hopkins, D Gluckin, J Gray, ID Goldfine, SH Ingbar |
Journal of Endocrinological Investigation | 1979 |