Anatomical and functional differentiation of superior laryngeal nerve fibers affecting swallowing and respiration.
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Cellular regulation by hormones that utilize a myriad of intracellular signaling pathways is recognized to be quite complex. To investigate some of these effects in an established cell line, we tested a panel of hormones and modulators for their effects on cyclic AMP (cAMP) and progesterone production, both alone and in combination with human chorionic gonadotropin (hCG), using the MA-10 cultured Leydig tumor cell line. None significantly affected intracellular levels of cAMP, and only epidermal growth factor (EGF) and 12-O-tetradecanoyl-phorbol-13-acetate (TPA) stimulated progesterone production. While EGF, basic fibroblast growth factor, insulin, insulin-like growth factor-1, and transforming growth factor beta all decreased cAMP production only, TPA decreased hCG-stimulated cAMP and progesterone production. Those factors that stimulated progesterone production also induced a characteristic morphological change ("rounding") of these cells. In addition, EGF, insulin, and TPA, like hCG, elevated mRNA levels of competence oncogenes (c-fos and c-myc), albeit to different extents. These data demonstrate the wide range of hormones to which the cultured Leydig tumor cell will respond, as well as the varying degree of responses observed in the intracellular signaling pathways that we examined.
Cryopreserved bovine mammary epithelial cells prepared from lactating mammary tissue synthesize and secrete the milk proteins alpha s1-casein, lactoferrin (Lf), and alpha-lactalbumin during in vitro culture on collagen gels in serum-free medium. Each milk protein is differently regulated by detachment and thickness of the collagen substratum, fetal calf serum, and prolactin in the medium. Collagen detachment did not modulate lactoferrin secretion but strongly induced casein secretion, with detachment on day 6 (after formation of cell sheets) inducing casein secretion to 3 micrograms/ml medium, which was 2-3-fold higher than for cells on collagen detached on day 2 (prior to cell spreading to form sheets), and ten-fold higher than for cells grown on collagen not detached. Alpha-lactalbumin secretion was also induced, but only to low levels, in cells grown on detached but not on attached collagen. Cells grown on thin collagen gels secreted lower levels of lactoferrin and casein compared to cells on thick collagen. Lactoferrin but not casein secretion was increased in cells grown in the presence of fetal calf serum. Casein but not lactoferrin secretion was completely dependent on prolactin. Cells grown serum-free on collagen gels detached on day 6 of culture showed a polarized epithelial cell layer with high differentiation evidenced by the apical microvilli, tight junctions, and fat droplets surrounded by casein-containing secretory vesicles. An underlying layer of myoepithelial-like cells was also evident. These studies show for cryopreserved primary bovine mammary cells prepared from lactating mammary tissue the induction of highly differentiated and polarized cell morphology and ultrastructure with concomitant induction of the secretion of casein, lactoferrin, and alpha-lactalbumin in vitro, and that the non-coordinate regulation of milk protein secretion by substratum, prolactin, and serum likely involves alternate routing and control of secretion pathways for casein and lactoferrin.
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Disordered growth and glucose metabolism secondary to growth hormone deficiency is associated with persistent lymphocytic choriomeningitis virus (LCMV) infection. C3H/St, BALB/WEHI, and SWR/J mice infected at birth with LCMV:ARM carried virus in their blood and organs throughout life but only C3H/St mice developed growth hormone insufficiency. BALB/WEHI and SWR/J infected mice contained normal amounts of growth hormone in their pituitaries and a relatively small proportion of the cells containing growth hormone replicated the virus. In susceptible C3H/St mice, the disease-causing viral strains (LCMV:ARM, E-350, and Pasteur) replicated to higher titers and infected the vast majority of cells producing growth hormone in the anterior lobe of the pituitary. In contrast, LCMV strains Traub and WE replicated in far fewer growth hormone-producing cells and failed to disorder growth hormone synthesis. In another paper (Y. Riviere, R. Ahmed, P. Southern, and M. B. A. Oldstone (1985), Virology 142, 175-182) these findings are used to make reassortants between LCMV:ARM (disease positive) and LCMV:WE (disease nil) and the pathogenic effect is mapped to the small RNA segment of LCMV:ARM. Peptides cleaved by trypsin and chymotrypsin from growth hormone molecules isolated from infected cells or control cells were equivalent when examined by two-dimensional electrophoresis. Further, transfer of antibody to interferon failed to alter the growth hormone insufficiency in these mice, although it corrected LCMV-induced liver disease of BALB mice, suggesting that interferon did not play a dominant role in this disease. The selective tropism of LCMV:ARM for cells containing growth hormone over cells that contain prolactin was observed in both infected animals and in cultured GH-3 cells.
Lymphocytic choriomeningitis virus (LCMV) Armstrong caused disordered growth and glucose metabolism secondary to growth hormone deficiency in infected C3H/St mice. In contrast, LCMV strain WE replicated in fewer growth hormone-producing cells, failed to disrupt growth hormone synthesis, and did not cause growth hormone-induced disease in infected, matched controls. The generation of genetic reassortant viruses between the virulent strain of LCMV:Armstrong and the avirulent strain, LCMV:WE, is reported. Using such reassortants and both parental strains of virus in C3H/St mice, the perturbation of growth hormone synthesis was clearly mapped to the S RNA segment of LCMV:ARM.
Lymphocytic choriomeningitis virus (LCMV) persistent infection that results from the inoculation of C3H/St newborn mice causes growth hormone (GH) deficiency and associated disease characterized by both reduced weight and serum glucose levels. Molecular analysis of pituitary nucleic acids shows GH deficient mice have, on average, fivefold reduced levels of GH mRNA although the histopathology of such GH producing cells is normal. Northern blots indicate that the length of GH mRNA is comparable in the GH deficient, virus infected mice and the GH normal, uninfected age-matched controls. Hence, truncated GH mRNA cannot account for hormonal defect. Mice infected congenitally through mating of persistently infected parents have normal growth and blood glucose levels. GH mRNA levels in pituitaries of these mice are equivalent to those of uninfected age-matched controls but significantly greater than those seen in neonatally infected GH deficient mice. Although infectious virus titers in the sera are equivalent in congenitally and neonatally infected age- and sex-matched mice, virus titers are significantly lower in pituitaries and brains of the congenitally infected mice when compared to neonatally inoculated mice. Additionally, the number of GH-producing pituitary cells expressing viral proteins is less in congenitally infected mice relative to those in neonatally inoculated mice. Hence there is a direct association between viral replication in GH-producing cells, lowered GH mRNA, and GH deficiency.
Rat and mouse fibroblasts which do not secrete the third component of complement (or secrete it at a very low rate), were respectively hybridized with mouse and rat hepatoma cells which actively produce C3. These interspecific hybrids actively secrete both mouse and rat C3. The production of C3 coded by the hepatoma cell genome is thus retained, but in addition, the secretion of C3 coded by the fibroblast genome is activated. On the other hand, intraspecific hybrids have been isolated from normal diploid C3 producing cells and non-producing cells. These cell hybrids also retain the capacity to secret C3. Retention of C3 production thus does not appear to be peculiar to hybrides derived from hepatoma cells.
The ontogeny of dopamine (DA) presynaptic receptor regulation was examined neuropharmacologically in 7-, 14-, 21-, 28- and 35-day-old and adult rats. In striatum, gamma-butyrolactone (GBL) significantly increased DA levels as early as 7 days postnatally; apomorphine attenuated this increase beginning at 14 days postnatally. However, in olfactory tubercles, no increase in DA was observed after GBL until 21 days postnatally, and not until 35 days postnatally was apomorphine consistently able to attenuate this increase. Thus, DA presynaptic receptors in mesolimbic regions may mature several weeks later than in striatum.
The amphiphilic character of different plasma apolipoproteins was investigated by a combination of established hydrophobicity analysis methods. These methods proved to be powerful in the detection of amphiphilic phospholipid-binding domains. Within this class of lipid-binding domains, lecithin-cholesterol acyltransferase activating and non-activating helices could be differentiated by calculating hydrophobic moments at different angles. We conclude that the hydrophobic characteristics of the different helices determined the mode of lipid binding and the substrate properties of these phospholipid-protein complexes for the lecithin-cholesterol acyltransferase reaction.
Bovine liver rhodanese (thiosulfate:cyanide sulfurtransferase, EC 2.8.1.1) was prepared in dilute solutions and subjected to conditions that led to a time-dependent loss of enzyme activity. The rate of this activity loss was found to be dependent upon the sulfur substitution state of the enzyme, and the presence or absence of the substrates, thiosulfate and cyanide. In the absence of excess substrates, free enzyme (E), and the covalent intermediate form of the enzyme bearing a divalent sulfur atom in the active site (ES), are of approximately equal functional stability. In comparison, E, in the presence of excess cyanide, was markedly more labile, while ES, supported by 10-50 mM thiosulfate, showed no significant loss of activity under any of the conditions tested. All the enzyme solutions were shown to be losing assayable protein from solution. However, it was demonstrated that, for rhodanese in the E form, the amount of protein lost was insufficient to account for the activity lost, and a marked decline in specific activity was observed. Enzyme in the ES form, whether supported by additional thiosulfate or not, did not decline in the specific activity, though comparable protein loss did occur from these solutions. Intrinsic fluorescence measurements of rhodanese in the ES form, before and after removal of the persulfide sulfur through the addition of cyanide, indicated that loss of enzymic activity was not accompanied by loss of the bound sulfur atom. Therefore, the stabilizing effect observed with thiosulfate could not be explained simply by its ability to maintain enzyme in the sulfur-substituted state. Since the concentration of thiosulfate employed in these experiments was insufficient to maintain all the enzyme in ES.S2O3 form, thiosulfate was acting as a chemical reagent rather than a substrate in stabilizing enzyme activity.
Activity of hypoglossal motoneurons was studied in relation to the amygdaloid or cortically induced rhythmical jaw and tongue movements in the rat. Tongue protrudor and retrusor motoneurons were antidromically identified by stimulation of the medial and the lateral hypoglossal nerve branches, respectively. About 80% of protrudor motoneurons excited during the opening phase of the rhythmical jaw movements with or without prior excitation. Most of them did not respond to amygdaloid or cortical stimulation. Fifty-three percent of retrusor motoneurons were excited during the closing phase and 31% discharged around the peak opening. The majority of them and a few protrudor motoneurons responded to amygdaloid or cortical stimulation with similar latencies. Activities of the medial and the lateral hypoglossal branches corresponded with the discharge patterns of respective motoneurons. Tongue protrusion and retrusion appeared to slightly precede jaw opening and closing, respectively during the rhythmical jaw and tongue movements. This was probably due to activity of the brain stem pattern generator.
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We investigated the effects of cisplatin (cisPt) in normal PC Cl3 and in transformed and tumourigenic PC E1Araf cells. cisPt cytotoxicity was higher in PC Cl3 than in PC E1Araf cells. In both cell lines, cisPt provoked the ERK1/2 phosphorylation; this was unaltered by Gö6976, a conventional PKC inhibitor, whilst it was blocked by low doses (0.1 microM) or high doses (10 microM) of GF109203X, an inhibitor of all PKC isozymes, in PC Cl3 and in PC E1Araf cells, respectively. In PC E1Araf, the cisPt-provoked ERK phosphorylation was also blocked by the use of a myristoylated PKC-zeta pseudosubstrate peptide. Conversely, in PC Cl3 the cisPt-provoked ERK phosphorylation was blocked by the use of rottlerin, a PKC-delta inhibitor. Results show that cisPt activates both PKC (the -delta and the -zeta isozymes in PC Cl3 and in PC E1Araf cells, respectively) and ERK in association with prolonged survival of thyroid cell lines.