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Biomedical subjects

P Navas

Publications and source records attributed to P Navas.

At least 91 records · Page 5Linked to original sources

GNRH induces activation of Leydig-like cells in Pleurodeles waltlii. A morphometric study.

The ultrastructure of the interstitial cells of the glandular tissue of Pleurodeles waltlii was studied in testis of animals obtained in early breeding season (January) under gonadotropic releasing hormone (GNRH) treatments and controls. These cells (parenchymal or Leydig-like cells) displayed the structural characteristics of steroid-producing cells. GNRH administration for 24 hours induced a significant decrease of both medial volume and volume density of lipid droplets. On the other hand, cell volume, nucleus, mitochondria, mitochondrial cristae and tubules of smooth endoplasmic reticulum were increased. The surface density of mitochondrial cristae was also increased.

Animals↗

Diferric transferrin reductase in the plasma membrane is inhibited by adriamycin.

Diferric transferrin which is often necessary for growth of cells is reduced by the transplasma membrane electron transport system of HeLa cells with release of ferrous iron outside the cell. Reduction of external diferric transferrin is reflected in oxidation of internal NADH. Adriamycin, an antitumor drug, inhibits diferric transferrin reduction by the HeLa cells and inhibits concomittant oxidation of cytosolic NADH at concentrations, 10(-8)-10(-6)M, which inhibit cell growth. Isolated liver plasma membranes have an NADH diferric transferrin reductase activity which is inhibited by similar adriamycin concentrations. We propose that inhibition of cell growth by adriamycin can be based on inhibition of transplasmalemma diferric transferrin reductase.

Cell Membrane↗

Transplasmalemma electron transport from cells is part of a diferric transferrin reductase system.

Intact cells are known to reduce external, impermeable electron acceptors. We now show that cells can reduce the iron in diferric transferrin at the cell surface and that this reduction reaction depends on the transferrin receptor as well as the transmembrane electron transport system. Reduction of external diferric transferrin is accompanied by oxidation of internal NADH which indicates that the transmembrane enzyme is an NADH diferric transferrin reductase. Highly purified liver plasma membranes have NADH diferric transferrin reductase activity which shows properties similar to the diferric transferrin reductases activity of intact cells. Cell growth stimulation by diferric transferrin and other impermeable oxidants which can react with the diferric transferrin reductase can be based on electron transport through he plasma membrane.

Cell Membrane↗

NADP phosphatase as a marker in free-flow electrophoretic separations for cisternae of the Golgi apparatus midregion.

Based on cytochemical analysis, the enzyme NADP phosphatase is most concentrated in the so-called intercalary cisternae from the mid-region of the Golgi apparatus stack. Using free-flow electrophoresis to separate different Golgi regions of rat liver Golgi apparatus, the NADP phosphatase activity, based on estimation of the rate of release of inorganic phosphate from NADP under standard conditions, was similarly localized to membrane fractions from the center of electrophoretic separations. Peak specific activities for both a putative cis marker (NADH-cytochrome c reductase) and an established trans marker (galactosyltransferase) coincided with minima in NADP phosphatase activity, in agreement with the cytochemical observations. The pattern of distribution of enzyme activity for NADP phosphatase differed from that of both acid phosphatase and glucose-6-phosphatase. The pH optimum was 5.0, the Km for NADP was 0.6 mM and a corresponding production of NAD and inorganic phosphorus was shown. Taken together with other markers for free-flow electrophoresis separation, the NADP phosphatase will provide considerable utility as a specific marker to help identify intercalary cisternae of the mammalian Golgi apparatus and to monitor electrophoretic separations.

Animals↗

Decrease of NADH in HeLa cells in the presence of transferrin or ferricyanide.

The short-term incubation of HeLa cells in the presence of diferric transferrin or ferricyanide, which are reduced externally by the transplasma membrane reductase, produces a stoichiometric decrease in NADH and increase in NAD+, which is stimulated by insulin. The NADP/NADPH ratio does not change during 15 min incubation with the oxidants. The total pyridine nucleotide pool of HeLa cells is not affected. Incubation with apotransferrin and ferrocyanide, which cannot act as oxidants for transmembrane electron transport, does not change the pyridine nucleotide concentrations in the cells. Our results show that NADH can act as the internal electron donor for the reduction of external oxidants by the transmembrane reductase. It appears that oxidation of NADH by the transmembrane electron transport using ferricyanide or iron transferrin as external electron acceptors is sufficient to stimulate growth in HeLa cells.

Apoproteins↗

Transplasmalemma electron transport is changed in simian virus 40 transformed liver cells.

Transplasma membrane electron transport activity by fetal rat liver cells (RLA209-15) infected with a temperature-sensitive strain of SV40 has been measured with cells grown at the restrictive temperature (40 degrees C) and permissive temperature (33 degrees C). The transformed cells grown at 33 degrees C had only one-half the rate of external ferricyanide reduction as the nontransformed cells held at 40 degrees C. Both the Km and Vmax for ferricyanide reduction were changed in the transformed state. The change in Vmax can be based on a decrease of NADH in the transformed cells. The change in rate with ferricyanide does not depend on change in surface charge. Reduction of external ferricyanide was accompanied by release of protons from the cells. The ratio of protons released to ferricyanide reduced was higher in the transformed cells than in the non-transformed cells. Since the transplasma membrane electron transport has been shown to stimulate cell growth under limiting serum, the changes in the plasma membrane electron transport and proton release in transformed cells may relate to modification of growth control.

Animals↗

Involvement of cis and trans Golgi apparatus elements in the intracellular sorting and targeting of acid hydrolases to lysosomes.

To delineate the traffic route through the Golgi apparatus followed by newly synthesized lysosomal enzymes, we subfractionated the Golgi apparatus of rat liver by preparative free-flow electrophoresis into cisternae fractions of increasing content of trans face markers and decreasing contents of markers for the cis face. NADPase was used to mark median cisternae. Beta-Hexosaminidase, the high mannose oligosaccharide processing enzyme, alpha-mannosidase II, the two enzymes involved in the biosynthesis of the phosphomannosyl recognition marker, and the phosphomannosyl receptor itself decreased in specific activity or amount from cis to trans. Additionally, these activities were observed in a fraction consisting predominantly of cisternae, vesicles and tubules derived from trans-most Golgi apparatus elements. These results, along with preliminary pulse-labeling kinetic data for the phosphomannosyl receptor, suggest that lysosomal enzymes enter the Golgi apparatus at the cis face, are phosphorylated, and appear in trans face vesicles by a route whereby the phosphomannosyl receptor bypasses at least some median and/or trans Golgi apparatus cisternae.

Acid Phosphatase↗

Cellular types in the gill arch of the teleost Cyprinus carpio (Cyprinidae, Pisces). A histochemical and ultrastructural study.

On adult specimens of the common carp (Cyprinus carpio), we have carried out a histochemical and ultrastructural study of the epithelia which form the gill arch. Secondary lamellae have two cellular types, granular and mucous, which produce neutral carbohydrates and proteins rich in tryptophane, and another mucous cell type which contains glycosaminoglycans. In gill rakers, three cellular types show different histochemical behaviour: 1) granular cells elaborate neutral mucosubstances; 2) a second cell type contains glycosaminoglycans,, and 3) a third cell type secretes neutral and acid carbohydrates. We discuss the possible role of these cells according to their secretion. We describe pillar and chloride cells in secondary lamellae, and chloride and neuroendocrine-like cells in gill rakers.

Animals↗

Carbohydrate cytochemistry on hypodermic lymphatic endothelium of the green lizard, Lacerta hispanica.

A cytochemical study on the endothelium of the hypodermic lymphatic capillaries of the green lizard, Lacerta hispanica, has been carried out. The dialysed iron method produced a homogeneous precipitate on the surface of the endothelial cells and on the inside of the endocytic vesicles. The periodic acid-thiocarbohydrazide-silver proteinate, low pH phosphotungstic acid and high iron diamine techniques gave negative results. The carbohydrates in the capillaries thus seem to be glycosaminoglycans with carboxyl groups. The possible role of these glycosaminoglycans in the formation of the endocytic vesicles is discussed.

Animals↗

Histochemical study on the tongue of Rana ridibunda (anuran amphibian).

A structural and histochemical study of the tongue in the Anuran Amphibian Rana ridibunda was carried out. Histochemical analysis of the filiform and fungiform papillae of the dorsal epithelium has shown a variety of cellular types which may be characterized cytochemically. All of them, except the goblet cells, show a remarkable amount of neutral mucins. The intensity of histochemical positive reaction for sulphomucins, sialomucins and protein is variable according to the cell type. Other histochemical reactions show that the lingual glands are rich in neutral mucins, but not in sialomucins. Histochemically in the component the basic proteins with sulphydryl groups are demonstrated. This sulphydryl groups are more abundant in the glands located in the deep regions.

Animals↗

Mucous glands of the skin of Rana ridibunda. A histochemical and ultrastructural study.

The histochemical study of Rana ridibunda mucous glands has demonstrated the existence of neutral, sialic and sulphated mucins in their secretions. Ultrastructural studies have revealed three different granule types depending on the secretory state of the gland cells. The correlating of these data suggests the possibility of a secretory cycle within the gland.

Animals↗