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Biomedical subjects

F Castillo

Publications and source records attributed to F Castillo.

At least 19 recordsLinked to original sources

Arginine catabolism in the phototrophic bacterium Rhodobacter capsulatus E1F1. Purification and properties of arginase.

The phototrophic bacterium Rhodobacter capsulatus E1F1 grew with L-arginine or L-homoarginine as nitrogen source under light/anaerobiosis. However, when L-arginine was used as the only source of both carbon and nitrogen, the bacterium exhibited weak growth levels and the excess of nitrogen was excreted to the medium as ammonia. By contrast, L-ornithine was used under phototrophic conditions as either nitrogen or carbon source. Other compounds of the arginine catabolic pathways, such as putrescine or proline, also supported phototrophic growth of this bacterium. Under heterotrophic/dark conditions, R. capsulatus always showed a low growth rate with those nitrogen compounds. Cells growing on media containing L-arginine, L-homoarginine or L-ornithine induced an Mn(2+)-dependent arginase activity regardless of the presence of ammonium ions and other readily utilizable nitrogen sources. Arginase activity was strongly inhibited by Zn2+, Cu2+, borate, L-cysteine, L-ornithine and gamma-guanidinobutyrate. Mercurials also inactivated arginase, the activity being partially restored by the presence of thiols. Arginase was purified to electrophoretic homogeneity and found to consist of four identical subunits of 31 kDa. The molecular parameters and kinetic constants of arginase from R. capsulatus E1F1 resembled those previously described for the Saccharomyces cerevisiae enzyme rather than those of bacterial arginases.

Arginase

Light-dependent degradation of nitrophenols by the phototrophic bacterium Rhodobacter capsulatus E1F1.

Rhodobacter capsulatus E1F1, a phototrophic purple nonsulfur bacterium capable of photoassimilating nitrate or nitrite, grew phototrophically in the presence of mono- and dinitrophenols with acetate as a carbon source, the highest growth levels being obtained under microaerobic conditions. Utilization of 2,4-dinitrophenol was strictly light dependent, was inhibited by O2 and by ammonium, and took place with the simultaneous and stoichiometric production of 2-amino-4-nitrophenol, which accumulated in the medium and was poorly used for further growth in anaerobiosis. Metabolism of mononitrophenols was also light dependent but was activated by O2 and by ammonium. Metabolism of nitrophenols seemed to depend on inducible systems which were repressed in nitrogen-starved cells. Induction of the in vivo 2,4-dinitrophenol reducing system was strongly inhibited by chloramphenicol.

2,4-Dinitrophenol

Purification and properties of L-alanine dehydrogenase of the phototrophic bacterium Rhodobacter capsulatus E1F1.

In the phototrophic nonsulfur bacterium Rhodobacter capsulatus E1F1, L-alanine dehydrogenase aminating activity functions as an alternative route for ammonia assimilation when glutamine synthetase is inactivated. L-Alanine dehydrogenase deaminating activity participates in the supply of organic carbon to cells growing on L-alanine as the sole carbon source. L-Alanine dehydrogenase is induced in cells growing on pyruvate plus nitrate, pyruvate plus ammonia, or L-alanine under both light-anaerobic and dark-heterotrophic conditions. The enzyme has been purified to electrophoretic and immunological homogeneity by using affinity chromatography with Red-120 agarose. The native enzyme was an oligomeric protein of 246 kilodaltons (kDa) which consisted of six identical subunits of 42 kDa each, had a Stokes' radius of 5.8 nm, an s20.w of 10.1 S, a D20,w of 4.25 x 10(-11) m2 s-1, and a frictional quotient of 1.35. The aminating activity was absolutely specific for NADPH, whereas deaminating activity was strictly NAD dependent, with apparent Kms of 0.25 (NADPH), 0.15 (NAD+), 1.25 (L-alanine), 0.13 (pyruvate), and 16 (ammonium) mM. The enzyme was inhibited in vitro by pyruvate or L-alanine and had two sulfhydryl groups per subunit which were essential for both aminating and deaminating activities.

Alanine Dehydrogenase

[Education for health and for death].

The development of the concept of health education has evolved. Man in good health is he who succeeds in adapting to the varying conditions in his environment (physical, biological, and psycho-social). To say that man sustains the changes in his physical environment does not mean he adapts well to his psychosocial environment, for the latter is much more difficult to do. Individual death is only an element in the endless chain which is life. An individual can disappear, but the species continues, despite everything, to carry on. The author specifies that the fear of death enters in the health education domain; this is in the back of our anxieties and shapes our way of confronting life and our attitudes when dealing with others. To learn to live is necessary to us. However it is also necessary to learn to die to accept death and to demistify it, thus limiting the anxiety which is caused by it.

Attitude to Death

O2-dependent nitrogenase switch-off in Rhodobacter capsulatus E1F1.

Nitrogenase of Rhodobacter capsulatus E1F1 (formerly known as Rhodopseudomonas capsulata E1F1) was partially resistant to O2 inactivation in vivo. This inactivation was reversed by restoring anaerobic conditions, was independent from de novo protein synthesis and its extent was decreased upon preincubation of the cells with dioxygen at low pressures and also in the presence of H2. Illuminated cells exhibited a low rate of O2 uptake which was enhanced in the presence of H2, particularly in cells preincubated with O2. These results indicate that R. capsulatus E1F1 can develop for nitrogenase a protective system against dioxygen which, at least, consists of an uptake hydrogenase and an inducible electron transport system linked to a respiratory chain.

Enzyme Activation

[Cerebellar tuberculoma. Clinical and radiological course].

A six-year-old child with intracranial hypertension is described. Cranial computed tomography showed an expansive mass surrounded by a contrast enhancement ring in the right cerebellar hemisphere. Chest roentgenograms showed signs of pulmonary tuberculosis. Intracranial lesion was diagnosed as a tuberculoma and treated with tuberculostatic agents. Serial computed tomography scans showed a reduction of size of tuberculoma and appearance of a residual calcified image.

Antitubercular Agents

Molecular and regulatory properties of glutamine synthetase from the phototrophic bacterium Rhodopseudomonas capsulata E1F1.

The glutamine synthetase of the phototrophic bacterium Rhodopseudomonas capsulata E1F1 was purified to homogeneity by a procedure which used a single affinity chromatography step. Like enzymes from other photosynthetic procaryotes, native glutamine synthetase from R. capsulata E1F1 was found to be a dodecameric protein of approximately 660 kilodaltons with identical subunits of about 55 kilodaltons each. The Stokes radius and S20,w of the native enzyme were 8.35 nm and 19.20, respectively. The enzyme exhibited different aggregation states with detectable oligomers of 1, 2, 3, 4, 6, 8, 10, and 12 subunits. Disaggregation of the glutamine synthetase occurred after the native protein was subjected to electrophoresis in polyacrylamide gels, as well as occurring spontaneously at low ionic strength. Glutamine synthetase from R. capsulata E1F1 was regulated by an adenylylation-deadenylylation mechanism, and the adenylylation state of the protein depended on the nitrogen source, growth phase, and light intensity. Ammonia repressed glutamine synthetase, whereas glycine, serine, alanine, valine, and aspartate were noncompetitive inhibitors of the glutamine synthetase biosynthetic activity.

Adenine Nucleotides

Purification of peptides: an efficient procedure for the separation of peptides from amino acids and salt.

A novel method for the separation of peptides from amino acids and salts has been developed. Separation is achieved by passage of the sample through a column of octadecasilyl-silica (ODS). Peptides, but not amino acids and salts, are strongly retained by ODS in an aqueous mobile phase and can be recovered by elution with an aqueous-alcoholic mobile phase. The method is applicable to most peptides and is fast and simple. Moreover, it is characterized by good recovery yields and high sample capacity.

Amino Acids

Regulatory properties of the nitrogenase from Rhodopseudomonas palustris.

Ammonium salts, glutamine, asparagine, and urea cause an immediate inactivation (switch-off) of light-dependent acetylene reduction in intact cells of the photosynthetic bacterium Rhodopseudomonas palustris. This effect is reversible showing the same kinetic pattern of inactivation and reactivation with all effector compounds. Its duration depends on the amount of effector added to the cells. Both nitrogenase components are found catalytically active in a cell-free preparation after enzyme switch-off in vivo. Involvement of the ammonia assimilating system in this regulatory mechanism is indicated by the following observations: ammonia uptake during the switch-off period, resumption of acetylene reduction after disappearance of ammonia from the outer medium, and persistence of enzyme switch-off with dihydrogen and thiosulfate as electron donors in the absence of an additional carbon source. Nitrogenase activity in crude extracts is non-linear with time and is stimulated by manganese ions. After resolution of nitrogenase into its MoFe--protein and Fe--protein these properties are lost, indicating the presence of an activating factor. Nitrogenase of R. palustris cross reacts reciprocally with the complementary proteins of Azotobacter vinelandii, but not with those of Clostridium pasteurianum.

Acetylene

Nitrate reductase from Spinacea oleracea. FAD and the reactivation of the enzyme treated with p-Hydroxymercuribenzoate.

Spinach nitrate reductase complex previously inactivated by treatment with mercurials p-hydroxymercuribenzoate or p-hydroxymercuriphenyl sulphonate can be reactivated by incubation with dithioerythritol. The reactivation of NADH-diaphorase seems to be FAD-dependent, whereas that of FNH2-nitrate reductase is not. The requirement of FAD for NADH-inactivation of nitrate reductase treated with p-hydroxymercuribenzoate disappears after treatment with dithioerythritol.

Dihydrolipoamide Dehydrogenase

The preparation of membranes of some human T-mycoplasmas and the analysis of their carbohydrate content.

Purified membranes were prepared from seven human T-mycoplasmas of which four are laboratory strains and three isolates from patients with nonspecific urethritis. The T-mycoplasmas were resistant to osmotic shock and sonication. Membranes were obtained only after lysing most of the T-mycoplasmas by four passes through a cell fractionator at 40,000 psi and separating the membranes from the unlysed cells by differential centrifugation. The membranes contained between 1 and 7% carbohydrates by dry weight. Mannose, galactose, and glucose were identified with glucose in the largest concentration.

Carbohydrates