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Biomedical subjects

S R Bilak

Publications and source records attributed to S R Bilak.

2 recordsLinked to original sources

NMDA receptor expression in the mouse cerebellar cortex.

A detailed, light microscopic study on the distribution of the N-methyl- D-aspartate receptor subunit 1 (NMDAR1) was carried out with immunohistochemistry and in situ hybridization on the cerebellar cortex of the mouse. With a monoclonal antibody, labeling of Purkinje cell bodies varied from intense to negative, while heavy dendritic staining was limited to the proximal dendrites (unlike the rat, which also had heavily stained distal dendrites). In the granular layer, the cell bodies and and the dendritic shafts of Golgi II cells were only moderately stained, but very intense labeling was associated with granule cell bodies, and with their dendrites and dendritic endings in the glomeruli. The mossy and climbing fibers were negative. In situ hybridization with a cRNA probe showed levels and spatial distributions of NMDAR1 mRNA consistent with the immunolabeling pattern, in that signals were strongest in the granular and Purkinje cell layers and relatively low or absent in the molecular layer and white matter. The findings are consistent with the hypothesis that NMDAR1 may be especially well concentrated at the synaptic target sites of the mossy and climbing fibers. In the mouse, NMDAR1 at the parallel fiber sites associated with Purkinje cell spiny branchlets may differ from the rat in its level of expression or in its molecular configuration.

Animals

Composition of intermediate filament subunit proteins in embryonic, neonatal and postnatal porcine skeletal muscle.

The intermediate (10-nm) filament subunit proteins (desmin and vimentin) in samples obtained from embryonic, neonatal, and postnatal porcine skeletal muscle were examined by two-dimensional electrophoresis (isoelectric focusing/sodium dodecylsulfate polyacrylamide gel electrophoresis). The skeletal muscle samples were taken from pig embryos at 45, 73 and 102 d of gestation; from neonatal pigs and from postnatal pigs at 1, 6 and 30 mo of age. Three fractions (namely, whole homogenized muscle, purified myofibrils and myofibrillar-protein-extracted residues) were prepared from each skeletal muscle sample for analysis. Vimentin was the major (approximately 75% vimentin: 25% desmin) 10-nm filament protein present in skeletal muscle samples obtained from the 45-d-old pig embryos. The relative proportion of vimentin decreased progressively during embryogenesis. At birth, the vimentin comprised approximately 15%, and desmin, 85%, of the 10-nm filament protein. The proportional amount of vimentin continued to decline postnatally, with the 10-nm filament protein of samples from the 30-mo-old animals consisting of less than approximately 5% vimentin and over 95% desmin. These results show a developmental stage-dependent pattern in the expression of vimentin and desmin intermediate filament subunit proteins in mammalian skeletal muscle. In the adult mammal, desmin is the significant 10-nm filament protein present.

Animals