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71.
RO Cristóvão SC Silvério AP Tavares AI Brígida JM Loureiro RA Boaventura EA Macedo MA Coelho 《World journal of microbiology & biotechnology》2012,28(9):2827-2838
Commercial laccase formulation was immobilized on modified green coconut fiber silanized with 3-glycidoxypropyltrimethoxysilane, aiming to achieve a cheap and effective biocatalyst. Two different strategies were followed: one point (pH 7.0) and multipoint (pH 10.0) covalent attachment. The influence of immobilization time on enzymatic activity and the final reduction with sodium borohydride were evaluated. The highest activities were achieved after 2?h of contact time in all situations. Commercial laccase immobilized at pH 7.0 was found to have higher activity and higher affinity to the substrate. However, the immobilization by multipoint covalent attachment improved the biocatalyst thermal stability at 50?°C, when compared to soluble enzyme and to the immobilized enzyme at pH 7.0. The Schiff's bases reduction by sodium borohydride, in spite of causing a decrease in enzyme activity, showed to contribute to the increase of operational stability through bonds stabilization. Finally, these immobilized enzymes showed high efficiency in the continuous decolourization of reactive textile dyes. In the first cycle, the decolourization is mainly due to dyes adsorption on the support. However, when working in successive cycles, the adsorption capacity of the support decreases (saturation) and the enzymatic action increases, indicating the applicability of this biocatalyst for textile wastewater treatment. 相似文献
72.
González-Robles A Castañón G Cristóbal-Ramos AR Lázaro-Haller A Omaña-Molina M Bonilla P Martínez-Palomo A 《Experimental parasitology》2006,114(3):133-140
In this study we report observations on the structural mechanisms of the cytopathic effect of Acanthamoeba castellanii trophozoites on cultured MDCK cell monolayers. Co-incubations were carried out for a maximum of 24h. The first evidence of damage to the cell monolayer was detected by measuring the transepithelial resistance of cell monolayers that interacted with the amoebae. At 6h, transepithelial resistance diminished to 51% and amoebae required 5-6h to produce evidence of structural injury at the light microscopy level. Following 12h of incubation, the cell monolayer was severely damaged. After making intimate contact with the surface of target cells, trophozoites detached cells from the substrate, lysed and by means of food-cups ingested the damaged cells. There was no morphological evidence of modifications in MDCK cell membranes, membrane fusion or junction formation between the amoeba and host plasma membrane. The lytic capacity of the amoebas appears to be the result of cytotoxic factors secreted by the amoebae since, when monolayers were incubated with conditioned medium, there was also a decrease in the transepithelial resistance. Besides, mechanical injury produced by the attachment and movement of the trophozoites may contribute to the disruption of the cell monolayer. As in other pathogenic amoebae, the cytopathic action of A. castellanii on the cell monolayers can subjectively be separated into four stages: adhesion, cytolysis, phagocytosis, and intracellular degradation. 相似文献
73.
Cristóbal-Azkarate J Chavira R Boeck L Rodríguez-Luna E Veàl JJ 《Hormones and behavior》2006,49(2):261-267
The challenge hypothesis asserts that testosterone levels and aggression in male adult animals are closely associated with one another in the context of intense reproductive competition, particularly when males challenge one another for the access to females. For mantled howler monkeys (Alouatta palliata), the presence of a solitary male in the vicinity of a social group can be considered a threat for the reproductive success of the resident males, as group takeovers by solitary males are followed by a reestablishment of the access to females among group males and sometimes by infanticide. Therefore, these episodes should be accompanied by an increase in testosterone secretion according to the challenge hypothesis. In order to test our prediction, we relate different group and subpopulation variables to the testosterone levels measured in feces collected from 10 groups living in 6 forest fragments, at Los Tuxtlas, Mexico. Our results suggest that resident A. palliata males regard solitary individuals as potential contesters for their reproductive success and that they respond to interactions with them with an increase in testosterone levels, that is increasing their aggressiveness. Our results also suggest that in the studied groups all males have at least certain access to mates and that the entrance of a new male would affect their reproductive success negatively. Finally, the negative effects of chronically high testosterone levels may be negatively affecting the fitness of our study groups living in high population densities and small fragments. 相似文献
74.
Chrysoula Vasileiou Kin Sing Stephen Lee Rachael M. Crist Soheila Vaezeslami Sarah M. Goins James H. Geiger Babak Borhan 《Proteins》2009,76(2):281-290
The binding of retinoic acid to mutants of Cellular Retinoic Acid Binding Protein II (CRABPII) was evaluated to better understand the importance of the direct protein/ligand interactions. The important role of Arg111 for the correct structure and function of the protein was verified and other residues that directly affect retinoic acid binding have been identified. Furthermore, retinoic acid binding to CRABPII mutants that lack all previously identified interacting amino acids was rescued by providing a carboxylic acid dimer partner in the form of a Glu residue. Proteins 2009. © 2008 Wiley‐Liss, Inc. 相似文献
75.
Manuel J. Díaz Encarnación Ruiz Inmaculada Romero Cristóbal Cara Manuel Moya Eulogio Castro 《World journal of microbiology & biotechnology》2009,25(5):891-899
The ethanolic fermentation of liquid fractions (hydrolysates) issued from dilute acid pre-treatment of olive tree biomass
by Pichia stipitis is reported for the first time. On the one side, P. stipitis has been reported as the most promising naturally occurring C5 fermenting microorganism; on the other side, olive tree biomass
is a renewable, low cost, and lacking of alternatives agricultural residue especially abundant in Mediterranean countries.
The study was performed in two steps. First, the fermentation performance of P. stipitis was evaluated on a fermentation medium also containing the main inhibitors found in these hydrolysates (acetic acid, formic
acid, and furfural), as well as glucose and xylose as carbon sources. The effect of inhibitors, individually or in a mixture,
on kinetic and yield parameters was calculated. In a second step, hydrolysates obtained from 1% (w/w) sulfuric acid pre-treatment
of olive tree biomass at 190°C for 10 min were used as a real fermentation medium with the same microorganism. Due to inhibition,
effective fermentation required dilution of the hydrolysate and either overliming or activated charcoal treatment. Results
show that ethanol yields obtained from hydrolysates, ranging from 0.35 to 0.42 g/g, are similar to those from synthetic medium,
although the process proceeds at lower rates. Inhibiting compounds affect the fermentation performance in a synergistic way.
Furfural is rapidly assimilated by the yeast; acetic acid and formic acid concentrations decrease slowly during the process.
Activated charcoal or overliming detoxification improve the fermentability of diluted hydrolysates. 相似文献
76.
Cristóvão RO Tavares AP Ferreira LA Loureiro JM Boaventura RA Macedo EA 《Bioresource technology》2009,100(3):1094-1099
Degradation of a mixture of three reactive textile dyes (Reactive Black 5, Reactive Yellow 15 and Reactive Red 239), simulating a real textile effluent, by commercial laccase, was investigated in a batch reactor. The discoloration was appraised as a percentage of the absorbance reduction at the wavelength of maximum absorbance for each dye and as total color removal based in all visible spectrum. A significantly high discoloration was achieved in both cases, indicating the applicability of this method for textile wastewater treatment. Mathematical models were developed to simulate the kinetics of laccase catalyzed degradation of reactive dyes in mixtures. Like in single dye degradation, some of the reactions present an unusual kinetic behavior, corresponding to the activation of the laccase-mediator system. The kinetic constants of the models were estimated by minimizing the difference between the predicted and the experimental time courses. Although not perfect, the ability of the models in representing the experimental results suggests that they could be used in design and simulation applications. 相似文献
77.
Richard C. Crist Jacquelyn J. Roth Amy A. Baran Benjamin J. McEntee Linda D. Siracusa Arthur M. Buchberg 《Mammalian genome》2010,21(9-10):450-457
The adenomatous polyposis coli (APC) gene is known to act as a tumor suppressor gene in both sporadic and hereditary colorectal cancer by negatively regulating WNT signaling. Familial adenomatous polyposis (FAP) patients develop intestinal polyps due to the presence of a single germline mutation in APC. The severity of the FAP phenotype is a function of the position of the APC mutation, indicating a complex role for APC that extends beyond the canonical WNT pathway. APC encodes a large protein with multiple functional domains, including an armadillo repeat domain that has been linked to protein–protein interactions. To determine the effect of the armadillo repeat domain on intestinal tumorigenesis, we generated a congenic mouse line (Apc Δ242 ) carrying a gene trap cassette between exons 7 and 8 of the murine Apc gene. Apc Δ242/+ mice express a truncated Apc product lacking the armadillo repeat domain as part of a fusion protein with β-geo. Expression of the fusion product was confirmed by X-gal staining, ensuring that Apc Δ242 is not a null allele. In contrast, Apc Min/+ mice produce a truncated Apc product that contains an intact armadillo repeat domain. On the C57BL/6J background, Apc Δ242/+ mice develop more polyps than do Apc Min/+ mice along the entire length of the small intestine; however, polyps were significantly smaller in Apc Δ242/+ mice. In addition, polyp multiplicity in Apc Δ242/+ mice is affected by polymorphisms between inbred strains. These data suggest that the armadillo repeat domain of the Apc protein suppresses tumor initiation in the murine intestine while also promoting tumor growth. 相似文献
78.
79.
Ferreira R Xapelli S Santos T Silva AP Cristóvão A Cortes L Malva JO 《The Journal of biological chemistry》2010,285(53):41921-41934
Given the modulatory role of neuropeptide Y (NPY) in the immune system, we investigated the effect of NPY on the production of NO and IL-1β in microglia. Upon LPS stimulation, NPY treatment inhibited NO production as well as the expression of inducible nitric-oxide synthase (iNOS). Pharmacological studies with a selective Y(1) receptor agonist and selective antagonists for Y(1), Y(2), and Y(5) receptors demonstrated that inhibition of NO production and iNOS expression was mediated exclusively through Y(1) receptor activation. Microglial cells stimulated with LPS and ATP responded with a massive release of IL-1β, as measured by ELISA. NPY inhibited this effect, suggesting that it can strongly impair the release of IL-1β. Furthermore, we observed that IL-1β stimulation induced NO production and that the use of a selective IL-1 receptor antagonist prevented NO production upon LPS stimulation. Moreover, NPY acting through Y(1) receptor inhibited LPS-stimulated release of IL-1β, inhibiting NO synthesis. IL-1β activation of NF-κB was inhibited by NPY treatment, as observed by confocal microscopy and Western blotting analysis of nuclear translocation of NF-κB p65 subunit, leading to the decrease of NO synthesis. Our results showed that upon LPS challenge, microglial cells release IL-1β, promoting the production of NO through a NF-κB-dependent pathway. Also, NPY was able to strongly inhibit NO synthesis through Y(1) receptor activation, which prevents IL-1β release and thus inhibits nuclear translocation of NF-κB. The role of NPY in key inflammatory events may contribute to unravel novel gateways to modulate inflammation associated with brain pathology. 相似文献
80.
Alberto González Jovanka Trebotich Eva Vergara Cristóbal Medina Bernardo Morales Alejandra Moenne 《Plant signaling & behavior》2010,5(12):1647-1649
The marine alga Ulva compressa (Chlorophyta) showed a triphasic release of intracellular calcium with maximal levels at 2, 3 and 12 h and a biphasic accumulation of intracellular hydrogen peroxide with peaks at 3 and 12 h when cultivated with copper excess. Intracellular hydrogen peroxide originated exclusively in organelles. In this work, we analyzed the intracellular origin of calcium release and the type of calcium channels activated in response to copper excess. U. compressa was treated with thapsigargin, an inhibitor of endoplasmic reticulum (ER) calcium ATPase, ryanodine, an inhibitor of ryanodine-sensitive channels and xestospongin C, an inhibitor of inositol 1, 4, 5-triphosphate (IP3)-sensitive channels. Thapsigargin induced the depletion of calcium stored in ER at 75 min and completely inhibited calcium release at 2, 3 and 12 h of copper exposure indicating that calcium release originated in ER. In addition, ryanodine and xestospogin C inhibited calcium release at 2 and 3 h of copper exposure whereas the peak at 12 h was only inhibited by ryanodine. Thus, copper induced the activation of ryanodine-sensitive and IP3-sensitive calcium channels in ER of U. compressa.Key words: calcium release, endoplasmic reticulum, calcium channels, marine alga, Ulva compressaPlants showed common responses to biotic and abiotic stresses, mainly the accumulation of reactive oxygen species (ROS), in particular hydrogen peroxide, and the release of intracellular calcium.1,2 Regarding abiotic stress, it has been shown that ozone triggers a NADPH oxidase-dependent biphasic oxidative burst in Arabidopsis thaliana that activates antioxidant and defense enzymes.3,4 In addition, cadmium induced a NADPH oxidase-dependent monophasic accumulation of extracellular hydrogen peroxide in tobacco cells.5 On the other hand, ozone as well as absicic acid treatment, dessication, cold, heat, salinity, UV light and anoxia induce intracellular calcium release and the activation of antioxidant enzymes.6–8 Regarding abiotic stress in algae, copper induced a monophasic increase of intracellular hydrogen peroxide at 2 h of copper exposure in the brown seaweeds Lessonia nigrecsens and Scytosiphon lomentaria.9 On the other hand, strontium induced calcium release in the green microalga Eremosphaera viridis as did osmotic stress in the zygote of the brown macroalga Fucus serratus.10,11 U. compressa is a cosmopolitan marine macroalga (Chlorophyta) growing in copper-impacted coastal areas in northern Chile.12 U. compressa cultivated in seawater with copper excess (10 µM) showed co-occuring increases of intracellular calcium and hydrogen peroxide.13 Copper induced a triphasic release of calcium with maximal levels at 2, 3 and 12 h and a biphasic production of hydrogen peroxide with peaks at 3 and 12 h. Interestingly, the production of hydrogen peroxide occurred exclusively in organelles, i.e., mitochondria and chloroplasts. In addition, calcium and hydrogen peroxide act as signals in the differential activation of antioxidant and defense enzymes.13 In this work, we analyzed the intracellular origin of copper-induced calcium release and the type of calcium channels activated in response to copper excess in U. compressa. 相似文献