Actin depolymerization specifically blocks the rapid thyroid hormone-dependent inactivation of type II iodothyronine 5\u27-deiodinase. Thyroid hormone appears to regulate enzyme inactivation by modulating actin-mediated internalization of this plasma membrane-bound protein. In this study, we examined the interrelationships between thyroxine-dependent enzyme inactivation and the organization of the actin cytoskeleton in cultured astrocytes. Steady-state enzyme levels were inversely related to actin content in dibutyryl cAMP-stimulated astrocytes, and increases in filamentous actin resulted in progressively shorter enzyme half-lives without affecting enzyme synthesis. In the absence of thyroxine, filamentous actin decreased by approximately 4...
The effect of thyroid hormones (THs) on the expression of actin gene during fetal human brain develo...
Astrocytes produce laminin, a key extracellular matrix guidance molecule in the developing brain. La...
In cultures of neonatal rat brain cells, labeled with 35S-methionine in the presence or absence of t...
T4 dynamically regulates the levels of type II iodothyronine 5\u27-deiodinase in the brain. Using an...
In the brain, thyroid hormone dynamically regulates levels of the short-lived plasma membrane protei...
In addition to the effects of thyroid hormone that are mediated through interaction with chromatin-a...
Morphological changes and the molecular mechanisms associated with the maturation of astrocytes were...
Morphological changes and the molecular mechanisms associated with the maturation of astrocytes were...
Thyroid hormone (TH) is essential for neuronal migration and synaptogenesis in the developing brain....
3,3\u275,5\u27-Tetraiodothyronine (T4), but not 3,3\u275-triiodothyronine (T3), acutely regulates th...
In astrocytes, thyroxine modulates type II iodothyronine 5\u27-deiodinase levels by initiating the b...
Two well-characterized nongenomic actions of thyroid hormone in cultured brain tissues are: 1) regul...
Adhesive interactions among the extracellular matrix protein laminin, cell surface receptors known a...
An improved DNase I inhibition assay for the filamentous actin (F-actin) and monomeric actin (G-acti...
The timing of granule cell migration in the developing cerebellum is regulated by thyroid hormone. G...
The effect of thyroid hormones (THs) on the expression of actin gene during fetal human brain develo...
Astrocytes produce laminin, a key extracellular matrix guidance molecule in the developing brain. La...
In cultures of neonatal rat brain cells, labeled with 35S-methionine in the presence or absence of t...
T4 dynamically regulates the levels of type II iodothyronine 5\u27-deiodinase in the brain. Using an...
In the brain, thyroid hormone dynamically regulates levels of the short-lived plasma membrane protei...
In addition to the effects of thyroid hormone that are mediated through interaction with chromatin-a...
Morphological changes and the molecular mechanisms associated with the maturation of astrocytes were...
Morphological changes and the molecular mechanisms associated with the maturation of astrocytes were...
Thyroid hormone (TH) is essential for neuronal migration and synaptogenesis in the developing brain....
3,3\u275,5\u27-Tetraiodothyronine (T4), but not 3,3\u275-triiodothyronine (T3), acutely regulates th...
In astrocytes, thyroxine modulates type II iodothyronine 5\u27-deiodinase levels by initiating the b...
Two well-characterized nongenomic actions of thyroid hormone in cultured brain tissues are: 1) regul...
Adhesive interactions among the extracellular matrix protein laminin, cell surface receptors known a...
An improved DNase I inhibition assay for the filamentous actin (F-actin) and monomeric actin (G-acti...
The timing of granule cell migration in the developing cerebellum is regulated by thyroid hormone. G...
The effect of thyroid hormones (THs) on the expression of actin gene during fetal human brain develo...
Astrocytes produce laminin, a key extracellular matrix guidance molecule in the developing brain. La...
In cultures of neonatal rat brain cells, labeled with 35S-methionine in the presence or absence of t...