Thyroxine (T4) to 3,5,3′-triiodothyronine (T3) conversion was evaluated in vivo in cerebral cortex, cerebellum, and anterior pituitary of male euthyroid Sprague-Dawley rats. Tracer quantities of 125I-T4 and 131I-T3 were injected into controls and iopanoic acid-pretreated rats 3 h before isolation of nuclei from these tissues. Specifically-bound nuclear 131I-T3, denoted T3(T3); 125I-T3, denoted T3(T4); and 125I-T4 were extracted and identified by chromatography. Plasma iodothyronines were similarly quantitated. In control rats, nuclear T3(T3) (percent dose per milligram DNA × 10−4) was 174±31 in cerebral cortex, 50±9 in cerebellum, and 932±158 in pituitary (all values, mean±SEM). Nuclear T3(T4) (percent dose per milligram DNA × 10−4) was 23.3±3.3 in cortex, 3.5±0.6 in cerebellum, and 39.4±6.9 in pituitary. Two-thirds of nuclear T3(T4) derived from local T4 to T3 conversion. Nuclear T3(T4) in all tissues was reduced to less than 15% of its control value by iopanoic acid treatment and all of the residual nuclear T3(T4) could be accounted for by plasma T3(T4). Nuclear T3(T3) binding was not inhibited by iopanoic acid. These results indicate there is rapid local T4 to T3 conversion in rat brain and nuclear binding of the T3 produced. We have previously found that local T3(T4) production is the source of ∼50% of the T3 in rat anterior pituitary. The present observations that the ratio of locally derived nuclear T3(T4) to nuclear T3(T3) is much higher in cerebral cortex (0.1) and cerebellum (0.04) than in anterior pituitary (0.015) suggest that this locally produced T3(T4) is the predominant source of intracellular T3 in these portions of rat brain.
F. R. Crantz, P. R. Larsen
Title and authors | Publication | Year |
---|---|---|
Evidence for thyroid hormone regulation of amygdala-dependent fear-relevant memory and plasticity.
Maddox SA, Ponomareva OY, Zaleski CE, Chen MX, Vella KR, Hollenberg AN, Klengel C, Ressler KJ |
Molecular Psychiatry | 2024 |
Thyroid Hormone Metabolism: A Historical Perspective
Galton VA, Hernandez A |
Thyroid : official journal of the American Thyroid Association | 2023 |
Nongenomic roles of thyroid hormones and their derivatives in adult brain: are these compounds putative neurotransmitters?
Martin JV, Sarkar PK |
Frontiers in Endocrinology | 2023 |
Pituitary Adenylate Cyclase-Activating Polypeptide (PACAP) Regulates the Hypothalamo-Pituitary-Thyroid (HPT) Axis via Type 2 Deiodinase in Male Mice
P Egri, C Fekete, Á Dénes, D Reglődi, H Hashimoto, BD Fülöp, B Gereben |
Endocrinology | 2016 |
Type 2 Deiodinase Disruption in Astrocytes Results in Anxiety-Depressive-Like Behavior in Male Mice
BM Bocco, JP Werneck-de-Castro, KC Oliveira, GW Fernandes, TL Fonseca, BP Nascimento, EA McAninch, E Ricci, Z Kvárta-Papp, C Fekete, MM Bernardi, B Gereben, AC Bianco, MO Ribeiro |
Endocrinology | 2016 |
Tissue-Specific Inactivation of Type 2 Deiodinase Reveals Multilevel Control of Fatty Acid Oxidation by Thyroid Hormone in the Mouse
TL Fonseca, JP Werneck-De-Castro, M Castillo, BM Bocco, GW Fernandes, EA McAninch, DL Ignacio, CC Moises, AR Ferreira, B Gereben, AC Bianco |
Diabetes | 2014 |
Unusual Ratio between Free Thyroxine and Free Triiodothyronine in a Long-Lived Mole-Rat Species with Bimodal Ageing
Y Henning, C Vole, S Begall, M Bens, M Broecker-Preuss, A Sahm, K Szafranski, H Burda, P Dammann, EA Eugenin |
PloS one | 2014 |
Minireview: The Neural Regulation of the Hypothalamic-Pituitary-Thyroid Axis
RH Costa-e-Sousa, AN Hollenberg |
Endocrinology | 2012 |
Thyroid hormone receptor-β gene expression in the brain of the frog Pelophylax esculentus: Seasonal, hormonal and temperature regulation
A Santillo, L Burrone, D Ferrara, S Minucci, C Pinelli, GC Baccari |
General and Comparative Endocrinology | 2012 |
Selenoproteins and Mimics
J Liu, G Luo, Y Mu |
2011 | |
Developmental and cell type-specific expression of thyroid hormone transporters in the mouse brain and in primary brain cells
D Braun, A Kinne, AU Bräuer, R Sapin, MO Klein, J Köhrle, EK Wirth, U Schweizer |
Glia | 2010 |
Hormones, Brain and Behavior
J Bernal |
Hormones, Brain and Behavior | 2009 |
Thyroid hormones states and brain development interactions
OM Ahmed, AW El-Gareib, AM El-bakry, SM El-Tawab, RG Ahmed |
International Journal of Developmental Neuroscience | 2008 |
Maintenance of Homeostasis for Thyroid Hormone in the Adult Rat Brain: Possible Involvement of a Nuclear-Mediated Phenomenon
S Kundu, S Roy, J De, A Biswas, M Pramanik, AK Ray |
Neuroendocrinology | 2007 |
Maintenance of brain thyroid hormone level during peripheral hypothyroid condition in adult rat
S Kundu, M Pramanik, S Roy, J De, A Biswas, AK Ray |
Life Sciences | 2006 |
Thyroid hormone deiodinases revisited: insights from lungfish: a review
M Sutija, JM Joss |
Journal of Comparative Physiology B | 2005 |
Acute LiCl-treatment affects the cytoplasmic T4 availability and the expression pattern of thyroid hormone receptors in adult rat cerebral hemispheres
C Constantinou, S Bolaris, T Valcana, M Margarity |
Neuroscience Research | 2005 |
Diazepam affects the nuclear thyroid hormone receptor density and their expression levels in adult rat brain
C Constantinou, S Bolaris, T Valcana, M Margarity |
Neuroscience Research | 2005 |
The effect of chloral hydrate on the in-vitro T 3 binding to adult rat cerebral nuclei
S Bolaris, C Constantinou, T Valcana, M Margarity |
Journal of Pharmacy and Pharmacology | 2005 |
Effects of hyper- and hypothyroidism on thyroid hormone concentrations in regions of the rat brain
O Broedel, M Eravci, S Fuxius, T Smolarz, A Jeitner, H Grau, G Stoltenburg-Didinger, H Plueckhan, H Meinhold, A Baumgartner |
American journal of physiology. Endocrinology and metabolism | 2003 |
Regulation of type II deiodinase expression by EGF and glucocorticoid in HC11 mouse mammary epithelium
S Song, T Oka |
American journal of physiology. Endocrinology and metabolism | 2003 |
Role of thyroid hormones in human and laboratory animal reproductive health
NY Choksi, GD Jahnke, CS Hilaire, M Shelby |
Birth defects research. Part B, Developmental and reproductive toxicology | 2003 |
Biochemistry, Cellular and Molecular Biology, and Physiological Roles of the Iodothyronine Selenodeiodinases
AC Bianco, D Salvatore, B Gereben, MJ Berry, PR Larsen |
Endocrine reviews | 2002 |
Influence of type II 5′ deiodinase on TSH content in diabetic rats
C Aláez, R Calvo, MJ Obregón, C Alvarez, L Goya, F Escrivá, MA Martín, AM Pascual-Leone |
Journal of Physiology and Biochemistry | 2001 |
Longitudinal Assessment of L-T4 Therapy for Congenital Hypothyroidism: Differences Between Athyreosis vs Ectopia and Delayed vs Normal Bone Age
MG F., R Calzada-León, JP R., MP G., RG P., MP C., ML la R., NA B. |
Journal of Pediatric Endocrinology and Metabolism | 2000 |
Biochemical and molecular biological evidence for the presence of type II iodothyronine deiodinase in mouse mammary gland
S Song, K Sorimachi, K Adachi, T Oka |
Molecular and Cellular Endocrinology | 2000 |
Cloning, Expression, and Functional Characterization of the Substrate Binding Subunit of Rat Type II Iodothyronine 5′-Deiodinase
DM Leonard, SJ Stachelek, M Safran, AP Farwell, TF Kowalik, JL Leonard |
The Journal of biological chemistry | 2000 |
Evidence that 3,3′,5-triiodothyronine is concentrated in and delivered from the locus coeruleus to its noradrenergic targets via anterograde axonal transport
JT Gordon, DM Kaminski, CB Rozanov, MB Dratman |
Neuroscience | 1999 |
Effect of cold exposure on thyroid hormone metabolism and nuclear binding in rat brain
M Margarity, T Valcana |
Neurochemical Research | 1999 |
Stimulatory effect of melatonin on the 5'-monodeiodinase activity in the liver, kidney, and brown adipose tissue during the early neonatal period of the rabbit
E Brzezińska-Ślebodzińska, AB Ślebodziński, E Styczyńska |
Journal of Pineal Research | 1998 |
Nocturnal increases in the triiodothyronine/thyroxine ratio in the rat thymus and pineal gland follow increases of type II 5′-deiodinase activity
M Soutto, JM Guerrero, C Osuna, P Molinero |
The International Journal of Biochemistry & Cell Biology | 1998 |
Anterior pituitary function during critical illness and dopamine treatment
GV Berghe, F Zegher |
Critical Care Medicine | 1996 |
Sexual differences in 5′-deiodinase activity in the harderian gland of Syrian hamsters and the effect of pinealectomy: Regulation by androgens
A Rubio, A Menendez-Pelaez, GR Buzzell, MK Vaughan, GM Vaughan, RJ Reiter |
Journal of Cellular Biochemistry | 1996 |
β- and α-adrenergic mechanisms are involved in regulating type II thyroxine 5′-deiodinase in rat thymus
M Soutto, JM Guerrero, P Molinero |
Life Sciences | 1995 |
Thyroxine treatment and the recovery of pyramidal cells of the cerebral cortex from changes induced by juvenile-onset hypothyroidism
A Ruiz-Marcos, P Cartagena-Abella, JR Martinez-Galan, R Calvo, GM de Escobar, FE Rey |
Journal of Neurobiology | 1994 |
Induction of type III-deiodinase activity in astroglial cells by retinoids
A Esfandiari, C Gagelin, JM Gavaret, S Pavelka, AM Lennon, M Pierre, FO Courtin |
Glia | 1994 |
12-O-Tetradecanoylphorbol 13-Acetate and Fibroblast Growth Factor Increase the 30-kDa Substrate Binding Subunit of Type II Deiodinase in Astrocytes
AM Lennon, A Esfandiari, JM Gavaret, F Courtin, M Pierre |
Journal of Neurochemistry | 1994 |
Desmethylimipramine, a potent inhibitor of synaptosomal norepinephrine uptake, has diverse effects on thyroid hormone processing in rat brain. II. Effect on in vivo 5′-deiodination of [125I]thyroxine
JT Gordon, DA Martens, EE Tomlinson, J Greenberg, MB Dratman |
Brain Research | 1994 |
Expression of type II thyroxine 5′-deiodinase from rat Harderian gland in Xenopus laevis oocytes
JF Garcia-Macias, P Molinero, JM Guerrero, C Osuna |
FEBS Letters | 1994 |
Thyroxine 5'-deiodinase type II activity in chick pineal and Harderian gland: Nyctohemeral rhythmicity and its regulation by noradrenergic input
A Rubio, A Menendez-Pelaez, RJ Reiter |
Journal of Pineal Research | 1993 |
Elimination of Mental Defect due to Iodine Deficiency by the Year 2000
BS Hetzel |
International Journal of Disability Development and Education | 1993 |
Adrenalectomy or Superior Cervical Ganglionectomy Modifies the Nocturnal Increase in Rat Pineal Type II Thyroxine 5′-Deiodinase
J Jimenez, C Osuna, RJ Reiter, A Rubio, JM Guerrero |
Chronobiology International | 1993 |
Iodine Deficiency in Europe
F Delange, JT Dunn, D Glinoer |
1993 | |
Thyroid hormone modulation of the hypothalamic growth hormone (GH)-releasing factor-pituitary GH axis in the rat
N Miki, M Ono, N Hizuka, T Aoki, H Demura |
Journal of Clinical Investigation | 1992 |
Cognitive Function in Non-Demented Older Adults with Hypothyroidism
D Osterweil, K Syndulko, SN Cohen, PD Pettier-Jennings, JM Hershman, JL Cummings, WW Tourtellotte, DH Solomon |
Journal of the American Geriatrics Society | 1992 |
Adrenergic regulation of type II 5'-deiodinase circadian rhythm in rat harderian gland
C Osuna, J Jimenez, RJ Reiter, A Rubio, JM Guerrero |
American journal of physiology. Endocrinology and metabolism | 1992 |
Harderian Glands
SM Webb, RA Hoffman, ML Puig-Domingo, RJ Reiter |
1992 | |
In vivo activation of pineal N-acetyltransferase but not type II thyroxine 5′-deiodinase by phenylephrine in young rats
A Rubio, C Osuna, J Jimenez, P Molinero, J Guerrero |
Neuroscience Letters | 1991 |
β- and α-adrenergic receptors are involved in regulating type II thyroxine 5′-deiodinase activity in the rat Harderian gland
A Rubio, JM Guerrero, MA Gonzalez, MA López-Gonzalez, C Osuna |
Life Sciences | 1991 |
Nyctohemeral rhythmicity of type II thyroxine 5?-deiodinase activity in the pineal gland but not in the Harderian gland of the Swiss mouse
A Rubio, C Osuna, MA Lopez-Gonzalez, RJ Reiter, JM Guerrero |
Bioscience Reports | 1991 |
Induction of 5′-deiodinase activity in rat astroglial cells by acidic fibroblast growth factor
F Courtin, JM Gavaret, D Toru-Delbauffe, M Pierre |
Developmental Brain Research | 1990 |
The hypothyroid rat as a model of increased sensitivity to dopamine receptor agonists
DL Cameron, AD Crocker |
Pharmacology Biochemistry and Behavior | 1990 |
Iodine and the Brain
GR DeLong, J Robbins, PG Condliffe |
1989 | |
Thyroid hormone metabolism in neuron-enriched primary cultures of fetal rat brain cells
F Courtin, F Chantoux, J Francon |
Molecular and Cellular Endocrinology | 1988 |
Inhibition of Pineal Type-II 5'-Deiodinase Does Not Affect the Nocturnal Increase of N-Acetyltransferase Activity and Melatonin Content in Either Euthyroid or Thyroidectomized Rats
JM Guerrero, M Puig-Domingo, C Santana, A Menendez-Pelaez, RJ Reiter |
Journal of Pineal Research | 1988 |
Dibutyryl cAMP induction of type II 5′deiodinase activity in rat brain astrocytes in culture
JL Leonard |
Biochemical and Biophysical Research Communications | 1988 |
Effect of isoproterenol and dibutyryl cyclic AMP on thyroxine type-II 5′-deiodinase and N-acetyltransferase activities in rat pineal organ cultures
J Guerrero, C Santana, R Reiter |
Neuroscience Letters | 1988 |
Differential responses of rat pineal thyroxine type II 5?-deiodinase andN-acetyltransferase activities to either light exposure, isoproterenol, phenylephrine, or propranolol
JM Guerrero, M Puig-Domingo, C Santana, A Menendez-Pelaez, A Gonzalez-Brito, RJ Reiter |
Cellular and Molecular Neurobiology | 1988 |
Differential responses of rat pineal thyroxine type II 5′-deiodinase andN-acetyltransferase activities to either light exposure, isoproterenol, phenylephrine, or propranolol
Guerrero JM, Puig-Domingo M, Santana C, Menendez-Pelaez A, Gonzalez-Brito A, Reiter RJ |
Cellular and Molecular Neurobiology | 1988 |
Characterization of type-II thyroxine 5′-deiodinase activity in rat Harderian gland
JM Guerrero, M Puig-Domingo, GM Vaughan, RJ Reiter |
Life Sciences | 1987 |
The regional hypothalamic distribution of type II 5′-monodeiodinase in euthyroid and hypothyroid rats
PN Riskind, JM Kolodny, PR Larsen |
Brain Research | 1987 |
Interrelationships among thyroxine, growth hormone, and the sympathetic nervous system in the regulation of 5'-iodothyronine deiodinase in rat brown adipose tissue
JE Silva, PR Larsen |
Journal of Clinical Investigation | 1986 |
Thyroid hormone deiodinases in purified primary glial cell cultures
RR Cavalieri, LA Gavin, R Cole, J Vellis |
Brain Research | 1986 |
Trace Elements in Human and Animal Nutrition
BS Hetzel, GF Maberly |
Trace Elements in Human and Animal Nutrition | 1986 |
Clinical Endocrinology
A Labhart |
Clinical Endocrinology | 1986 |
Microtubules and brain development: The effects of thyroid hormones
J Nunez |
Neurochemistry International | 1985 |
The localization of phenolic and tyrosyl ring thyroxine deiodination in rat and mouse retina
R Ientile, S Macaione, C Conti, GD Luca, RM Giorgio |
Neurochemistry International | 1985 |
Thyroid Hormone Receptors in Fetal and Hormone Resistant Tissues
J Bernal, K Liewendahl, BA Lamberg |
Scandinavian Journal of Clinical & Laboratory Investigation | 1985 |
Thyroid hormone metabolism in primary cultures of fetal rat brain cells
JL Leonard, PR Larsen |
Brain Research | 1985 |
Mechanism of Action of Thyroid Hormones
WH Dillmann |
Medical Clinics of North America | 1985 |
Thyroxine deiodination, cytoplasmic distribution and nuclear binding of thyroxine and trnodothyronine in liver and brain of young and aged rats
M Margarity, T Valcana, PS Timiras |
Mechanisms of Ageing and Development | 1985 |
Neurochemical Systems
A Lajtha |
1985 | |
Contemporary Endocrinology
SH Ingbar |
1985 | |
Production rates and turnover of triiodothyronine in rat-developing cerebral cortex and cerebellum. Responses to hypothyroidism
JE Silva, PS Matthews |
Journal of Clinical Investigation | 1984 |
Effects of thyroid hormones during brain differentiation
J Nunez |
Molecular and Cellular Endocrinology | 1984 |
Reversible alteration of the visual evoked potential in hypothyroidism
PW Ladenson, JW Stakes, EC Ridgway |
The American Journal of Medicine | 1984 |
Evidence for two pathways of iodothyronine 5'-deiodination in rat pituitary that differ in kinetics, propylthiouracil sensitivity, and response to hypothyroidism
TJ Visser, MM Kaplan, JL Leonard, PR Larsen |
Journal of Clinical Investigation | 1983 |
Sources and quantity of 3,5,3'-triiodothyronine in several tissues of the rat
J Doorn, D der Heide, F Roelfsema |
Journal of Clinical Investigation | 1983 |
Characterization of nuclear triiodothyronine (T3) and tetraiodothyronine (T4) binding in developing brain tissue
M Margarity, N Matsokis, T Valcana |
Molecular and Cellular Endocrinology | 1983 |
Molecular Basis of Thyroid Hormone Action
P Larsen, J Silva |
Molecular Basis of Thyroid Hormone Action | 1983 |
IODINE DEFICIENCY DISORDERS (IDD) AND THEIR ERADICATION
BS Hetzel |
Lancet | 1983 |
Evidence for two tissue-specific pathways for in vivo thyroxine 5'-deiodination in the rat
JE Silva, JL Leonard, FR Crantz, PR Larsen |
Journal of Clinical Investigation | 1982 |
Comparison of iodothyronine 5'-deiodinase and other thyroid-hormone-dependent enzyme activities in the cerebral cortex of hypothyroid neonatal rat. Evidence for adaptation to hypothyroidism
JE Silva, PR Larsen |
Journal of Clinical Investigation | 1982 |
Thyroid-Pituitary Interaction: Feedback Regulation of Thyrotropin Secretion by Thyroid Hormones
HL Bleich, MJ Moore, PR Larsen |
New England Journal of Medicine | 1982 |
Subcellular distribution of iodothyronine 5′-deiodinase in cerebral cortex from hypothyroid rats
JL Leonard, H Rennke, MM Kaplan, PR Larsen |
Biochimica et Biophysica Acta (BBA) - General Subjects | 1982 |
Maturational patterns of iodothyronine phenolic and tyrosyl ring deiodinase activities in rat cerebrum, cerebellum, and hypothalamus
MM Kaplan, KA Yaskoski |
Journal of Clinical Investigation | 1981 |
Factors altering thyroid hormone metabolism
J Robbins |
Environmental Health Perspectives | 1981 |
Neonatal Thyroid Function after Propylthiouracil Therapy for Maternal Graves' Disease
RG Cheron, MM Kaplan, PR Larsen, HA Selenkow, JF Crigler |
New England Journal of Medicine | 1981 |
Cerebral Cortex Responds Rapidly to Thyroid Hormones
JL Leonard, MM Kaplan, TJ Visser, JE Silva, PR Larsen |
Science | 1981 |
Phenolic and Tyrosyl Ring Deiodination of Iodothyronines in Rat Brain Homogenates
MM Kaplan, KA Yaskoski |
Journal of Clinical Investigation | 1980 |