This communication reports the specific induction of calmodulin kinase IV by the thyroid hormone 3,3',5-triiodo-L-thyronine (T3) in a time- and concentration-dependent manner at a very early stage of brain differentiation using a fetal rat telencephalon primary cell culture system, which can grow and differentiate under chemically defined conditions. The induction of the enzyme that can be observed both on the mRNA and on the protein level is T3-specific, i.e. it cannot be induced by retinoic acid or reverse T3, and can be inhibited on both the transcriptional and the translational level by adding to the culture medium actinomycin D or cycloheximide, respectively. The earliest detection of calmodulin kinase IV in the fetal brain tissue of t...
Thyroid hormones influence brain development through regulation of gene expression. This is especial...
The effect of thyroid hormones (THs) on the expression of actin gene during fetal human brain develo...
A fetal rat telencephalon organotypic cell culture system was found to reproduce the developmental p...
AbstractThe expression of calmodulin kinase IV (CaMKIV) can be induced by the thyroid hormone T3 in ...
The expression of calmodulin kinase IV (CaMKIV) can be induced by the thyroid hormone T3 in a time- ...
In a primary cell culture system of fetal rat brain, the calmodulin-dependent protein-kinase IV (CaM...
Thyroid hormones influence brain development through regulation of gene expression mediated by nucle...
Triiodothyronine (30 nM) added to serum-free cultures of mechanically dissociated re-aggregating fet...
The effect of triiodothyronine on the biogenesis of tubulin has been studied in the developing rat b...
The biochemical development of rotation-mediated aggregating brain cell cultures was studied in a se...
RC3/neurogranin is a calmodulin-binding protein kinase C substrate, located in dendritic spines of f...
Exposure of organ cultures of newborn rat brains to tri-iodothyronine (T3) followed by cell fraction...
In the developing rat cerebra, triiodothyronine (T<SUB>3</SUB>) stimulates actin mRNA by acting pred...
The development of fetal thyroid function is dependent on the embryogenesis, differentiation and mat...
The effect of T<SUB>3</SUB> (triiodothyronine) on the induction of tubulin in hypothyroid developing...
Thyroid hormones influence brain development through regulation of gene expression. This is especial...
The effect of thyroid hormones (THs) on the expression of actin gene during fetal human brain develo...
A fetal rat telencephalon organotypic cell culture system was found to reproduce the developmental p...
AbstractThe expression of calmodulin kinase IV (CaMKIV) can be induced by the thyroid hormone T3 in ...
The expression of calmodulin kinase IV (CaMKIV) can be induced by the thyroid hormone T3 in a time- ...
In a primary cell culture system of fetal rat brain, the calmodulin-dependent protein-kinase IV (CaM...
Thyroid hormones influence brain development through regulation of gene expression mediated by nucle...
Triiodothyronine (30 nM) added to serum-free cultures of mechanically dissociated re-aggregating fet...
The effect of triiodothyronine on the biogenesis of tubulin has been studied in the developing rat b...
The biochemical development of rotation-mediated aggregating brain cell cultures was studied in a se...
RC3/neurogranin is a calmodulin-binding protein kinase C substrate, located in dendritic spines of f...
Exposure of organ cultures of newborn rat brains to tri-iodothyronine (T3) followed by cell fraction...
In the developing rat cerebra, triiodothyronine (T<SUB>3</SUB>) stimulates actin mRNA by acting pred...
The development of fetal thyroid function is dependent on the embryogenesis, differentiation and mat...
The effect of T<SUB>3</SUB> (triiodothyronine) on the induction of tubulin in hypothyroid developing...
Thyroid hormones influence brain development through regulation of gene expression. This is especial...
The effect of thyroid hormones (THs) on the expression of actin gene during fetal human brain develo...
A fetal rat telencephalon organotypic cell culture system was found to reproduce the developmental p...