AbstractThe molecular regulation of tubulin synthesis was investigated in the regenerating goldfish retina. Previous in vivo studies pointed to an increase in tubulin synthesis in the retina during regeneration of the injured goldfish optic nerve. Using labeled cDNA probes, we showed that this increase occurs as a result of enhanced tubulin mRNA levels. Analysis of labeled in vivo products revealed enhanced β2-tubulin synthesis accompanied by an increase in the level of the low-Mr microtubule-associated proteins identified as TAU factors. The results are discussed with respect to the possible involvement of these proteins in the process of nerve regeneration
Summary. Polyadenylated messenger RNA was isolated from goldfish retinas at various times following ...
Reorganization of the intermediate filament (IF) network during axonal regeneration is accompanied b...
Unlike mammals, lower vertebrates are able to regenerate injured pathways of the central nervous sys...
AbstractThe molecular regulation of tubulin synthesis was investigated in the regenerating goldfish ...
The nature of the proteins ynthesized in the goldfish retina and axonally trans-ported to the tectum...
Teleost fish have a remarkable capacity to regenerate their central nervous system (CNS) following d...
The α1- and α2-tubulin encoding genes were cloned from a goldfish genomic DNA library. α1- and α2-tu...
The mammalian central nervous system (CNS) shows a very limited capacity for axonal regeneration, a ...
The visual system of primitive vertebrates has long served as a useful model for the resynthesis of ...
Following injury to the central nervous system (CNS), adult mammals are largely unable to regenerate...
In lower vertebrates, retinal ganglion cells (RGCs) can regenerate their axons and reestablish funct...
The visual system of primitive vertebrates has long served as a useful model for the resynthesis of ...
A fundamental issue in central nervous system development regards the effect of target tissue on the...
In goldfish, regeneration of the optic nerve following axotomy is accompanied by changes in retinal ...
Abstract-In goldfish, regeneration of the optic nerve following axotomy is accompanied by changes in...
Summary. Polyadenylated messenger RNA was isolated from goldfish retinas at various times following ...
Reorganization of the intermediate filament (IF) network during axonal regeneration is accompanied b...
Unlike mammals, lower vertebrates are able to regenerate injured pathways of the central nervous sys...
AbstractThe molecular regulation of tubulin synthesis was investigated in the regenerating goldfish ...
The nature of the proteins ynthesized in the goldfish retina and axonally trans-ported to the tectum...
Teleost fish have a remarkable capacity to regenerate their central nervous system (CNS) following d...
The α1- and α2-tubulin encoding genes were cloned from a goldfish genomic DNA library. α1- and α2-tu...
The mammalian central nervous system (CNS) shows a very limited capacity for axonal regeneration, a ...
The visual system of primitive vertebrates has long served as a useful model for the resynthesis of ...
Following injury to the central nervous system (CNS), adult mammals are largely unable to regenerate...
In lower vertebrates, retinal ganglion cells (RGCs) can regenerate their axons and reestablish funct...
The visual system of primitive vertebrates has long served as a useful model for the resynthesis of ...
A fundamental issue in central nervous system development regards the effect of target tissue on the...
In goldfish, regeneration of the optic nerve following axotomy is accompanied by changes in retinal ...
Abstract-In goldfish, regeneration of the optic nerve following axotomy is accompanied by changes in...
Summary. Polyadenylated messenger RNA was isolated from goldfish retinas at various times following ...
Reorganization of the intermediate filament (IF) network during axonal regeneration is accompanied b...
Unlike mammals, lower vertebrates are able to regenerate injured pathways of the central nervous sys...