|  Help  |  About  |  Contact Us

Publication : Biochemical and immunohistochemical studies on dysmyelination of quaking mutant mice in vivo and in vitro.

First Author  Mikoshiba K Year  1979
Journal  Brain Res Volume  177
Issue  2 Pages  287-99
PubMed ID  227533 Mgi Jnum  J:6216
Mgi Id  MGI:54693 Doi  10.1016/0006-8993(79)90780-7
Citation  Mikoshiba K, et al. (1979) Biochemical and immunohistochemical studies on dysmyelination of quaking mutant mice in vivo and in vitro. Brain Res 177(2):287-99
abstractText  Dysmyelination in the central nervous system of the quaking mutant mouse was studied biochemically and immunohistochemically. We found, by measuring CNPase activity, that myelination in the central nervous system of quaking mice was affected to a different degree in different areas. The pallium cerebri was the most severely affected and the medulla and spinal cord were least affected. The density of astroglia observed by GFA staining wash higher in the white matter of quaking mice than in controls, but the total area of the white matter in the cerebellum was smaller in the quaking mice than in the controls. The DNA content in the pallium cerebri and brain stem showed no increase and that of the cerebellum was even lower in quaking mice than in the controls. Hypertrophy of the astroglia was observed in the white matter of the cerebellum of quaking mice, though Bergmann astroglial fibers in the molecular layer did not show any hypertrophy. The cerebella of quaking mice in primary culture showed very poor myelination under the phase-contrast microscope. However, Purkinje cells from the quaking mutants appeared normal with regard to Bodian silver impregnation, hematoxylineosin staining, and Purkinje cell specific P 400 protein. Addition of the conditioned culture medium of qk/qk to the culture of the control cerebellum did not interfere with the myelination. We concluded that the cause of dysmyelination in the quaking mouse could be a genetic defect of the oligodendroglia rather than hypertrophy of the astroglial cells.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

3 Bio Entities

Trail: Publication

0 Expression