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The selective protein kinase C inhibitor GF 109203X inhibits phorbol ester-induced morphological and functional differentiation of SH-SY5Y human neuroblastoma cells.

Previous attempts to inhibit the phorbol ester 12-O-tetradecanoyl phorbol 13-acetate (TPA) -induced differentiation of SH-SY5Y neuroblastoma cells by non-specific inhibitors of protein kinases have failed. In the present study we have used the bisindolylmaleimide GF 109203X, which is a potent and selective inhibitor of protein kinase C (PKC). GF 109203X effectively antagonized TPA-stimulated phosphorylation of an endogenous 80 kDa PKC substrate. The compound blocked neurite outgrowth and rounding up of cells induced by the phorbol ester. In addition, GF 109203X completely inhibited TPA-induced increase in cellular content of noradrenaline as well as stimulation of expression of neuropeptide Y, growth-associated protein-43 and c-fos proto-oncogene mRNA by TPA. The inhibition of the TPA-induced effects by GF 109203X was dose-dependent.

Blotting, Northern↗

Nonnuclear effects of the steroid hormone 1 alpha,25(OH)2-vitamin D3: analogs are able to functionally differentiate between nuclear and membrane receptors.

The steroid hormone 1 alpha,25-dihydroxyvitamin D3 [1 alpha,25(OH)2D3] stimulates biological responses via both genomic mechanisms and nongenomic mechanisms (opening of voltage-gated Ca2+ channels). We report here that the two closed B-ring steroid analogs of 1 alpha,25(OH)2D3, 1 alpha,25(OH)2-7-dehydrocholesterol and 1 alpha,25(OH)2-lumisterol3, are able to generate the nongenomic response, transcaltachia, without the ability to compete with the natural metabolite for binding to its nuclear receptor. We propose that the nongenomic membrane associated receptor can accept the ligand in its closed "6-s-cis" conformation whereas the nuclear receptor prefers the extended "6-s-trans" conformer.

Animals↗

The distinct and developmentally regulated patterns of expression of members of the mouse Cdc25 gene family suggest differential functions during gametogenesis.

Cdc25 genes encode protein threonine/tyrosine phosphatases that activate cyclin-dependent kinases. A cDNA encoding the murine homologue of the human Cdc25C gene was isolated in studies designed to identify those genes involved in regulating the mitotic and meiotic cell cycles of developing mouse germ cells. Northern blot and in situ hybridization along with immunoblot analyses were performed to determine the patterns of expression of Cdc25C compared to those of a second Cdc25 family member, Cdc25B. Murine Cdc25C transcripts of 2.1 kb were detected in midgestation embryos and in several adult tissues, including testis and ovary. The highest levels of Cdc25C transcripts were detected in the testis, with low levels of the 2.1-kb transcript and abundant levels of a 1.9-kb transcript that was not detected in the other tissues examined. In the testis, Cdc25C expression was localized in germ cells, specifically in late pachytene-diplotene spermatocytes and round spermatids, whereas Cdc25B expression was most readily detected in the somatic cells. In the ovary, Cdc25C expression was apparent in cumulus granulosa cells, whereas the expression of Cdc25B was detected in both growing oocytes and somatic cells, including the granulosa cells. These results not only indicate that the expression of the murine Cdc25 genes is lineage- and developmental stage-specific in the mouse testis and ovary but also suggest that the Cdc25 genes may have different functions in the germinal and somatic compartments of the ovary and the testis, only some of which are involved in cellular proliferation.

Animals↗

Functional differentiation of the pituitary gland during development of the domestic ring dove (Streptopelia roseogrisea).

The development and differentiation of the anterior pituitary gland was studied in the domestic ring dove (Streptopelia roseogrisea) and compared with the pattern of body growth. By combining histochemical staining techniques with immunohistochemical methods, cells producing prolactin (PRL), growth hormone (GH), thyrotropic hormone (TSH), and adrenocorticotropic hormone were identified in the pituitary of the developing ring dove. The distribution of the four cell types within the anterior pituitary was illustrated by three-dimensional reconstruction from immunohistochemically stained serial sections. The pattern, which was shown to change through embryonic and juvenile development, was described and compared with examples from other vertebrate classes. The analysis of body growth showed that the development of the nestlings could be divided into two distinct growth phases. The first seven days were characterized by a consistently high rate of body growth, whereas after Day seven the growth rate was markedly reduced. Although GH-immunoreactive cells formed the dominant cell type in the pituitary during the whole postembryonic development, there was no correlation between the rate of body growth and the abundance of GH-immunoreactive cells in the pituitary. In contrast, changes in the abundance of PRL- and TSH-immunoreactive cells were observed simultaneously with the transition from the first to the second growth phase. The proportion of PRL-immunoreactive cells was relatively high during the first seven days, whereas TSH-immunoreactive cells became more abundant during the second growth phase. It is therefore postulated that PRL and TSH play an important role in the regulation of the growth pattern in the ring dove.

Adrenocorticotropic Hormone↗

Disruption of differentiated functions during viral infection in vivo. V. Mapping of a locus involved in susceptibility of mice to growth hormone deficiency due to persistent lymphocytic choriomeningitis virus infection.

Lymphocytic choriomeningitis virus (LCMV) Armstrong strain selectively and persistently infects the majority of growth hormone (GH) producing cells in the anterior lobe of pituitary glands of C3H/St mice but negligibly infects GH producing cells of BALB/WEHI mice (Oldstone et al., Virology 142, 175--182, 1985; Oldstone et al., Science 218, 1125--1127, 1982). Although infected GH cells remain free of structural damage, disrupted initiation of GH transcription (Klavinskis and Oldstone, J. Gen. Virol. 68, 1867--1873, 1989; Valsamakis et al., Virology 156, 214--220, 1987) occurs with a resultant decrease in the synthesis of GH, leading to a failure of growth and development (Oldstone et al., Science 218, 1125--1127, 1982). Microsatellite mapping of DNA obtained from 101 individual C3H/St x BALB/WEHI F1 x F1 mice shows that the growth failure correlates with host genes linked (P value 0.0008) on chromosome 17 just outside of the H-2D MHC site between D17 Mit24 and D17 Mit51, a distance of 2.5 cM. The genetic mapping done here excludes alpha-dystroglycan (alpha-DG), a known receptor for LCMV (Cao et al., Science 282, 2079--2081, 1998) in pathogenesis of GH disease, as alpha-DG is encoded in the mouse by a gene residing on chromosome 9 (Yotsumoto et al., Hum. Mol. Genet. 5, 1259--1267, 1996).

Animals↗

Morphological and functional differentiation of cultured vascular smooth-muscle cells.

In numerous investigations using cultured smooth-muscle cells, investigators have consistently added 10-20% fetal calf serum (FCS) to the medium to maintain viable cells. In the present study we utilized an optical technique to investigate whether smooth-muscle cells, cultured with or without FCS, maintain their contractile activity in vitro. With such optical measurement, we were able to detect signals due to spontaneous contractions, in muscle cells cultured in FCS-free medium for up to 8 days, and, for the first time, were also able to observe the conduction of these cell contractions. The ultrastructural characteristics of cultured smooth-muscle cells during contractile activity, were also examined by electron microscopy. The cells were mature and well-differentiated, and were packed with numerous myofilaments. They had developed long cell processes, and were linked to one another by gap junctions. These observations indicated that the smooth-muscle cells, cultured without FCS for 7 to 8 days, were morphologically mature and maintained their contractile activity, whereas the cells cultured in FCS-containing medium showed no detectable signs of contractile activity.

Animals↗

Functional differentiation of the anterior pituitary cells in the fetal pig. An ultrastructural immunocytochemical study.

The fetal porcine pituitary was investigated by means of ultrastructural immunocytochemistry (1) to identify the first cells synthesizing the adenohypophyseal hormones, (2) to follow their differentiation during fetal development, and (3) to compare their ultrastructural characteristics with those of mature adult cells. The first ACTH-cells, which produced and stored ACTH, beta-LPH, beta-MSH, and alpha- and beta-endorphin in the same granules, were very numerous at day 34 and displayed a uniform morphology. At day 50 and thereafter, until the end of gestation, the ACTH-cells differed in their appearance probably reflecting various stages of differentiation of one cell type. The GH-cells gained rapidly ultrastructural features comparable to those of mature GH-cells. In contrast, in the case of PRL-cells, which appeared only at the end of the gestation period as immature elements containing very small secretory granules, the morphological maturation seemed to take place only after birth. The first cells synthesizing the glycoprotein hormones (LH alpha, LH beta, FSH and TSH) displayed ultrastructural features of immature cells. At day 50, their ultrastructural organization started to show a different pattern. At the end of gestation, the TSH-cells and the gonadotropic cells displayed the ultrastructural features of mature cells.

Adrenocorticotropic Hormone↗

Differential function of the phosphoglucomutase isozymes PGM1 and PGM2.

A total of 13 metabolites thought to be possibly inhibitory were tested for their influence on PGM isozyme activities, each at several different concentrations. The analysis of statistical significance was based on enzyme activities obtained by densitometric measurements of starch gels. Five of the substances were found to inhibit PGM activity, three of which definitely and a further one probably led to a significantly stronger inhibition of the isozymes of the PGM2 locus than of PGM1 isozymes. They are (1) fructose-1,6-diphosphate, (2) adenosine triphosphate, (3) citrate, and (4) possibly 2,3-diphosphoglycerate. Thus, PGM1 isozymes proved to function better in hard or perhaps marginal metabolic conditions. Related evolutionary aspects are discussed.

Adenosine Triphosphate↗

Structural and functional differentiation of the embryonic chick pineal organ in vivo and in vitro. A scanning electron-microscopic and radioimmunoassay study.

The development of sensory structures in the pineal organ of the chick was examined by means of scanning electron microscopy from embryonic day 10 through day 12 post-hatching. At embryonic day 10, the wall of the tubules within the pineal primordium is composed of cells with unspecialized luminal surface. Differentiation of sensory structures starts at embryonic day 12 when pinealocytes and supporting cells can be distinguished. Pinealocytes are recognized by virtue of an inner segment only rarely endowed with a cilium, whereas supporting cells exhibit numerous short microvilli. Further differentiation of the sensory apparatus is achieved by development of an oval-shaped, biconcave swelling at the tip of the cilium, 1 x 2 microns in size, and a collar of long microvilli at the base of the inner segment. Membrane specializations of sensory cilia, however, were not detected. Since during embryonic life new tubules and follicles are continuously formed, all stages of differentiation of sensory structures are found in the chick pineal organ during the second half of the incubation period and the first two weeks after hatching. In 200-microns-thick Vibratome sections of chick-embryo pineal organs cultured in medium BM 86 Wissler for periods up to 13 days the cytodifferentiation parallels the development in vivo. Using an organ-culture system the 24-h release of melatonin into the culture medium was measured by means of radioimmunoassay after solid-phase extraction. At embryonic day 10, the 24-h secretion of melatonin was at the lower range of detection of the RIA (5 pg). The rapid increase in 24-h secretion in melatonin until hatching (approximately 50 micrograms) is approximated by an exponential curve.

Animals↗

Expression of differentiated functions in hepatoma cell hybrids: IX extinction and reexpression of liver-specific enzymes in rat hepatoma-Chinese hamster fibroblast hybrids.

Most of the hybrid clones derived from a cross of Chinese hamster fibroblasts (DON) with rat hepatoma cells (Faza 967) showed preferential loss of rat chromosomes. Two of the hybrid clones retained the rat chromosomes, and both showed extinction of 4 liver-specific enzymes: aldolase B, liver alcohol dehydrogenase, and the inducible enzymes tyrosine aminotransferase and alanine aminotransferase. Subcloning of 1 of these hybrids, which contained 2 sets of hepatoma chromosomes and 1 set of hamster chromosomes, permitted the isolation of some clones which reexpressed 1 or more of the liver-specific enzymes. Liver alcohol dehydrogenase was the most frequently reexpressed enzyme and aldolase B the least. Tyrosine aminotransferase inducibility was reexpressed independently of basal activity, and the enzyme produced by the reexpressing hybrid cells was precipitated by a specific antiserum. No correlation was detected between the presence or absence of the marker chromosomes (large metacentrics) of the hamster parent and the extinction and reexpression of the hepatic enzymes. The results reported confirm and extend to interspecific hybrids the observation of the stable and independent reexpression of tissue-specific enzymes.

Alanine Transaminase↗

Expression of differentiated functions in hepatoma cell hybrids: selection in glucose-free media of segregated hybrid cells which reexpress gluconeogenic enzymes.

Selective glucose-free media have been used to study the reexpression of liver-specific gluconeogenic enzymes in rat hepatoma X mouse lymphoblastoma somatic hybrids. The utilization for gluconeogenesis of dihydroxyacetone or oxaloacetate requires two enzymes: fructose diphosphatase as well as either triokinase for the former or phosphoenolpyruvate carboxykinase for the latter. By sequential selection with these substrates, the reexpression of the three gluconeogenic enzymes has been dissociated. The reexpression of these enzymes is correlated with the loss of mouse chromosomes. In addition, the characterization of the parental forms of aldolase B, another liver-specific enzyme, shows that reexpression corresponds to the simultaneous production of the rat and mouse enzymes. These results demonstrate the chromosomal origin of extinction and suggest that activation of mouse silent genes which accompanies reexpression can occur without loss of the parental determinations. The hypothesis that determination involves regulatory rather than structural genes is discussed.

Alcohol Oxidoreductases↗

Primary monolayer cultures of postnatal rat liver cells with extended differentiated functions.

Monolayers of liver cells cultured from postnatal rats were grown in two types of media. One set of cultures was grown in selective medium which contained ornithine but was deficient in arginine; the other set was grown in nonselective medium which contained arginine but no ornithine. The cultures that were grown in the nonselective medium contained primarily a mixture of two cell types found in the liver: parenchymal hepatocytes and fibroblast-like cells. The fibroblast cells tended to overgrow the hepatocytes after several days in culture. In contrast, fibroblast overgrowth was inhibited in cultures grown in the selective, arginine-deficient medium, thereby resulting in relatively pure cultures of functional parenchymal hepatocytes. Comparative studies of sulfobromophthalein (BSP) uptake showed that the cultures grown in selective medium continued to be active much longer than the cultures grown in the nonselective medium. Pyruvate kinase assays revealed that the cultures grown in selective medium contained primarily the L-isoenzyme type which is characteristic of parenchymal hepatocytes. Cultures grown in nonselective medium contained a mixture of L- and M-isoenzymes which is indicative of nonparenchymal liver cells. The reported results indicate that selective, arginine-deficient medium permits primarily the growth of parenchymal hepatocytes found in neonatal rat liver.

Animals↗