The transcriptional activity of tubulin genes during synaptogenesis in developing rat brain has been examined by 'nuclear run off assay'. For both α and β tubulin genes, the relative rates of transcription were found to be high during the early phase of synaptogenesis (postnatal days 1-5) and declined 20-50% by the end of synaptogenesis (postnatal days 15-20). Comparison of the developmental alterations in the rates of transcription of both α and β tubulin mRNA with the level of polysomal tubulin mRNA shows that the age related decline (70-80%) in the level of polysomal tubulin mRNA during synaptogenesis is much too large compared to the 20-25% decline in their transcription rates suggesting that tubulin mRNA levels in developing rat brain ...
International audienceMicrotubules (MTs) are an essential component of the neuronal cytoskeleton; th...
Exposure of organ cultures of newborn rat brains to tri-iodothyronine (T<SUB>3</SUB>) followed by ce...
Translation modulates the timing and amplification of gene expression after transcription. Brain dev...
Developmental alterations in α- and β-tubulin mRNA in polysomes from brains of -3 days (fe...
Studies on tubulin gene expression in brains from three different species, viz rat, mouse and chick,...
In the developing brain the active neurite outgrowth during the early phase of synaptogenesis is ass...
The mature nervous system is composed largely of two cell types, glial cells and postmitotic neurons...
The development of the vertebrate central nervous system is reliant on a complex cascade of biologic...
The relative sensitivity of the two isotypes of actin mRNA (β and γ ) to thyroid hormone (T3) was ex...
alpha 1-tubulin is an isotype of alpha-tubulin, and its mRNA is expressed in the rodent nervous syst...
The effect of T<SUB>3</SUB> (triiodothyronine) on the induction of tubulin in hypothyroid developing...
AbstractNucleotide sequence analysis of two rat α-tubulin cDNA clones showed a marked divergence in ...
A fetal rat telencephalon organotypic cell culture system was found to reproduce the developmental p...
Translation in vitro of membrane-bound polyribosomal mRNAs from rat brain has shown several to be de...
In organ cultures of embryonic chick brain, tri-iodothyronine is shown to elicit an age-dependent st...
International audienceMicrotubules (MTs) are an essential component of the neuronal cytoskeleton; th...
Exposure of organ cultures of newborn rat brains to tri-iodothyronine (T<SUB>3</SUB>) followed by ce...
Translation modulates the timing and amplification of gene expression after transcription. Brain dev...
Developmental alterations in α- and β-tubulin mRNA in polysomes from brains of -3 days (fe...
Studies on tubulin gene expression in brains from three different species, viz rat, mouse and chick,...
In the developing brain the active neurite outgrowth during the early phase of synaptogenesis is ass...
The mature nervous system is composed largely of two cell types, glial cells and postmitotic neurons...
The development of the vertebrate central nervous system is reliant on a complex cascade of biologic...
The relative sensitivity of the two isotypes of actin mRNA (β and γ ) to thyroid hormone (T3) was ex...
alpha 1-tubulin is an isotype of alpha-tubulin, and its mRNA is expressed in the rodent nervous syst...
The effect of T<SUB>3</SUB> (triiodothyronine) on the induction of tubulin in hypothyroid developing...
AbstractNucleotide sequence analysis of two rat α-tubulin cDNA clones showed a marked divergence in ...
A fetal rat telencephalon organotypic cell culture system was found to reproduce the developmental p...
Translation in vitro of membrane-bound polyribosomal mRNAs from rat brain has shown several to be de...
In organ cultures of embryonic chick brain, tri-iodothyronine is shown to elicit an age-dependent st...
International audienceMicrotubules (MTs) are an essential component of the neuronal cytoskeleton; th...
Exposure of organ cultures of newborn rat brains to tri-iodothyronine (T<SUB>3</SUB>) followed by ce...
Translation modulates the timing and amplification of gene expression after transcription. Brain dev...