We have stimulated in a cultured hepatocyte system the synergistic interaction between triiodothyronine (T3) and dietary carbohydrate in the induction of malic enzyme (ME). Kinetic studies revealed that isolated hepatocytes equilibrate with media T3 within 5 min; nuclei equilibrate with media T3 by 45 min; and the half-time of T3 metabolism was 10 h in 10% serum. We demonstrated nuclear T3 receptors in isolated hepatocytes and the induction of ME by T3 in physiological concentrations. However, in the complete absence of T3 glucose could still induce ME. At all concentrations of glucose (100-1,000 mg/dl), T3 (0.3 nM free T3) resulted in a relatively constant (1.4- to 1.7-fold) increase in ME response. The augmentation in ME activity was paralleled by an enhanced rate of enzyme synthesis as determined by [3H]leucine incorporation into immunoprecipitable ME. Cells cultured in serum free media also demonstrated a glucose-dependent increase in ME. Insulin greatly stimulated the glucose induction of ME, whereas dexamethasone had very little influence on ME induction. These studies demonstrate the usefulness of an adult hepatocyte tissue culture model for the study of the effects of T3 on gene expression in cells that are not derived from tumor. They clearly demonstrate that well established effects of T3 can be simulated in such a system at levels of free hormone that approximate those in extracellular body fluids. Our results indicate that an increased concentration of glucose per se can induce the formation of ME in the absence of alterations in extrahepatic hormones or factors. Moreover, our findings confirm inferences from in vivo studies that T3 acts as a multiplier of a glucose-induced signal.
C N Mariash, C R McSwigan, H C Towle, H L Schwartz, J H Oppenheimer
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The Journal of biological chemistry | 2002 |
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Cell and Molecular Response to Stress | 2000 |
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The Journal of biological chemistry | 1994 |
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Clinics in Laboratory Medicine | 1993 |
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Arteriosclerosis Thrombosis and Vascular Biology | 1993 |
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Triiodothyronine (T3)-associated upregulation and downregulation of nuclear T3 binding in the human fibroblast cell (MRC-5)—Stimulation of malic enzyme, glucose-6-phosphate-dehydrogenase, and 6-phosphogluconate-dehydrogenase by insulin, but not by T3
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Journal of lipid research | 1991 |
Identification of multiple thyroid hormone response elements located far upstream from the rat S14 promoter
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The Journal of biological chemistry | 1990 |
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DB Jacoby, ND Zilz, HC Towle |
The Journal of biological chemistry | 1989 |
Interaction Between Fructose and Glucose on the Regulation of the Nuclear Precursor for mRNA-S14
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The Journal of biological chemistry | 1988 |
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European Journal of Biochemistry | 1984 |
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Proceedings of the National Academy of Sciences | 1984 |
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T3 stimulates the synthesis of a specific mRNA in primary hepatocyte culture
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Biochemical and Biophysical Research Communications | 1984 |
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Biochemical and Biophysical Research Communications | 1984 |
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Metabolism | 1984 |
Regulation of the activity and synthesis of malic enzyme in 3T3-L1 cells
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Archives of Biochemistry and Biophysics | 1984 |
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Analytical Biochemistry | 1984 |
Pleiotypic action of thyroid hormones at the target cell level
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Biochemical Pharmacology | 1984 |
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Biochimica et Biophysica Acta (BBA) - Gene Structure and Expression | 1984 |
Rapid effects of triiodothyronine on hepatic gene expression. Hybridization analysis of tissue-specific triiodothyronine regulation of mRNAS14
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The Journal of biological chemistry | 1984 |
Thyroid hormone action on intermediary metabolism: Part III. Protein metabolism in hyper- und hypothyroidism
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Klinische Wochenschrift | 1984 |
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S Seelig, CN Mariash, DJ Topliss, JH Oppenheimer |
Biochemical and Biophysical Research Communications | 1983 |
Comparison of age-related decreases in the basal and carbohydrate inducible levels of lipogenic enzymes in adipose tissue and liver
FE Kaiser, HL Schwartz, CN Mariash, JH Oppenheimer |
Metabolism | 1983 |
6 The actions of thyroid hormones mediated via the cell nucleus and their clinical significance
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Clinics in Endocrinology and Metabolism | 1983 |
New Comprehensive Biochemistry
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Archives of Biochemistry and Biophysics | 1983 |
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Molecular Basis of Thyroid Hormone Action | 1983 |
Molecular cloning of a cDNA sequence for rat malic enzyme. Direct evidence for induction in vivo of rat liver malic enzyme mRNA by thyroid hormone
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The Journal of biological chemistry | 1983 |
High sensitivity of a rat liver nucleoplasmic protein to triiodothyronine
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FEBS Letters | 1982 |
Thyroid function tests in nonthyroidal disease
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Journal of Chronic Diseases | 1982 |