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Cell type-specific neural cell surface antigens.

Immunological methods have served to define several cell surface antigens that are differentially expressed among neural cell types and are developmentally regulated. These antigens have served as useful markers for cell identification and isolation of several neural cell types. The molecular nature and functional properties of almost all of these antigens are presently unknown.

Animals

Sulfatide synthesis by neural cell lines.

Several neural cell lines were examined for their ability to synthesize sulfatide and 2',3'-cyclic nucleotide phosphohydrolase, biochemical components characteristic of myelin. The mouse glioma G26 and the rat schwannoma TRM6B actively produced sulfatide, while the rat glioma C6 was inactive, supporting the probable oligodendroglial origin of the G26. In contrast, the C6 cell line had a high level of 2'-3'-cyclic nucleotide phosphohydrolase activity, while TRM6B showed 30% and the G26 75% lower activities. Thus, these two activities appear to be independently regulated.

2',3'-Cyclic-Nucleotide Phosphodiesterases

The DLX/Notch axis is necessary for spatiotemporal regulation of neural cell fate.

Neuronal-glial cell fate switch during forebrain development is highly regulated. DLX transcription factors are necessary for promoting GABAergic interneuron differentiation and migration but the mechanisms for concomitant repression of glial fate in neural progenitors remain elusive. Here, the DLX2 regulatory network dynamic in the developing ventral telencephalon is characterised using a multi-omic approach at single-cell resolution, including single-cell whole genome spatial transcriptomics. We identify a secondary proliferative zone in the ventral subventricular zone and spatiotemporal-context dependent Notch pathway repression by DLX2 in maintaining progenitor populations and facilitating neural differentiation. We find that DLX2 controls cell fate determination by directly repressing Notch signalling genes as well as glial fate-promoting transcription factors, thereby inhibiting early adoption of oligodendroglial differentiation during neurogenesis. Here, we show that temporal cell fate switch is mediated by DLX2 via a multilayer gene regulatory network, redefining current understanding of neuronal-glial cell specification mechanisms in the developing telencephalon.

Animals

Nerve fibers in culture and their interactions with non-neural cells visualized by immunofluorescence.

Cultures of embryonic mouse spinal cord explants, alone or in combination with rat myotubes, were stained by indirect immunofluorescence using antibodies against three structural proteins to: (a) reveal the distribution of these proteins among different cell types, and (b) test the usefulness of antibody staining to reveal the gross morphology of the neurite network in complex cultures. Affinity column purified antibodies were used against chicken gizzard actin, porcine brain tubulin, and skeletal muscle alpha-actinin. Neurites were stained intensely by anti-actin as was the stress fiber pattern of underlying fibroblasts. With anti-tubulin, the staining of neurites was an order of magnitude more intense than the staining of the microtubule pattern of background fibroblasts. Neurite cell bodies and astrocyte-like glia cells were stained with anti-tubulin and their nuclei remained unstained. Anti-tubulin could thus be used to trace even the finest extensions of nerve processes in spinal cord and spinal cord-muscle cultures. Furthermore, it could be combined with the histochemical reaction for acetylcholinesterase (AChE, EC 3.1.1.7) to demonstrate AChE-positive neurons and specialized nerve-muscle contact sites. The staining of neural elements with anti-alpha-actinin was generally much weaker than with anti-actin and anti-tubulin. Neurites were stained only moderately in comparison to myotube Z lines in the same culture. However, a distinct staining of the periphery of dorsal root ganglion cells was observed. Thus, a protein immunologically related to muscle alpha-actinin is present in the nervous system. In myotubes, Z lines were stained intensely with anti-alpha-actinin while I bands were only faintly stained with anti-actin. In isolated myofibrils, both structures were stained intensely with the same antibody preparations.

Actinin

Viral nucleic acid synthesis in HSV infected neural cells.

HSV-1 replication and synthesis of viral DNA and RNA have been examined in gliomas of human (COX) and rat origin (C6) and in mouse neuroblastomas (D2). COX cells fully support HSV-1 replication and show patterns of viral DNA and RNA synthesis similar to those seen in continuous line cells. HSV-1 also grows to high titers in D2 cells but without concomitant high levels of viral DNA and RNA synthesis in the infected cells. Finally, HSV-1 established a persistent infection in C6 cells. Viral mRNA and DNA synthesis could not be detected in these cultures. At cycles of approximately 15--20 days, the persistently infected cultures exhibited massive CPE and relatively high production of infectious HSV.

Animals

Protein synthesis in neural cells in culture: role of cell density and neurohumors.

Protein sythesis was studied in C-6 glial cells and neuroblastoma (NB) cells as a function of cell density and after differentiation with dibutyryl cyclic AMP and treatment with either norepinephrine (NE), dopamine or L-dopa. In both C-6 glial cells and NB cells, unincorporated 3H-leucine decreased, whereas incorporation of 3H-leucine into protein increased with increasing cell density, particularly at high cell densities. Exposure of C-6 glial cells of NE at various dose for 60 minutes stimulated the efficiency of 3H-leucine corporation into protein. This effect was not seen with L-dopa or dopamine. In contrast to the glial cells, in neuroblastoma cells, all three neurohumors caused a decrease in the incorporation of 3H-leucine into protein. The increase in protein synthesis by NE was also seen in DBcAMP-differentiated glial cells. These findings suggest that cellular activity as reflected by protein synthesis is cell density dependent. In addition, neurohumor substances may play a regulatory role in the cellular activity of glial cells.

Bucladesine

Effect of concanavalin A on the kinetics of ecto-5'-adenosine monophosphatase (5'-adenosine monophosphate phosphohydrolase) in the outer surface of intact neural cells in culture.

Oncogenic cultured rat C6 astroblastoma cells display strikingly high ecto-5'-adenosine monophosphatase (ecto-5'-AMPase) activity, 4.23 +/- 20 mumol of Pi liberated by intact cells from 3 mM extracellular 5'-AMP (mg of protein-1 h-1, as compared with 0.15 +/- 0.01 for nononcogenic cultured hamster astroblasts. A further rise in C6 cell ecto-5'-AMPase activity occurs with increase in cell density during growth. Less than 2 pg of the lectin, concanavalin A (Con A), bound per cell reversibly inhibits most of the cellular ecto-5'-AMPase activity. Inhibition by Con A binding is independent of cellular temperature. Con A binding suppresses phosphohydrolase activity of a pK=7.4 functional group on the cell surface. A direct proportionality is observed between quantity of Con A bound to the cell surface and simultaneous relative decreases both in Michaelis constant and maximum velocity of ecto-5'-AMPase in the intact cell. The findings suggest that a major consequence of the specific high affinity binding of Con A to the C6 cell surface is the inactivation of the enzyme--substrate complex of ecto-5'-AMPase.

Adenosine Monophosphate

New neural cell lines derived from experimentally induced rat tumors and from human neuroblastomas.

We have isolated a series of new cell lines from tumors of the nervous system. Two approaches have been used. In the first, tumors were induced in neonatal rats with the potent carcinogen ethylnitrosourea. Tumors were put into cell culture and cloned after several passages. The resultant cell lines were characterized for a variety of presumptive neuronal and glial functions. Our second approach, designed to identify lines with neuronal characteristics, has been to culture and analyze cells derived from human neurolbastomas. Five lines have been characterized for the Na+ action potential ionophore and several enzyme markers.

Acetylcholine

Independent expression of the adrenergic phenotype by neural crest cells in vitro.

Neural crest cells obtained from Japanese quail and grown in vitro without other embryonic tissues differentiate into adrenergic cells. These cells show intense catecholamine-specific histochemical fluorescence, and some have long, varicose neuronal processes. Ultrastructural examination shows two populations of cells, one with small (about 90 nm) dense-core vesicles resembling principal sympathetic neurons and the other with larger (about 150 nm) dense-core granules resembling chromaffin or small intensely fluorescent cells. Neuronal cells without adrenergic characteristics are also present. These results are compatible with the hypothesis that a population of cells determined along neuronal lines exists in the neural crest prior to migration.

Animals

Surface structure of fetal rat brain cells during neoplastic transformation in cell culture.

The surface microstructure of fetal rat brain cells undergoing neoplastic transformation in long-term cell culture after a single transplacental pulse of 75 microgram N-ethyl-N-nitrosourea/g body weight to the fetal (18th day of gestation) BD IX rat was investigated by scanning electron microscopy. After about 3 weeks of culture, N-ethyl-N-nitrosourea-pretreated fetal rat brain cells showed focal proliferation of neural cells on an underlayer of flat, epithelioid cells. The neural cells exhibited varying forms of numerous dorsal ruffles and an increased number of other surface microprojections. Between the 40th and the 100th day, nodules of bipolar and multipolar neural cells were observed with a complex surface microstructure including many blebs and ruffles and an increased number of microvilli. After 100-210 days, more rapidly proliferating, morphologically altered cells formed "piled-up" foci, which resulted in a homogeneous population of cells with numerous long microvilli, large ruffles, and blebs over the whole surface. The cells retained the same altered surface structure until tumorigenicity after reimplantation into the syngeneic host was first observed (approximately 273 days). Surface alterations characteristic of the neoplastic cells were thus observable more than 100 days before the cells became tumorigenic.

Animals