635 resultados para eNOS uncoupling


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The cellular response to an inflammatory stressor requires a proinflammatory cellular activation followed by a controlled resolution of the response to restore homeostasis. We hypothesized that biliverdin reductase (BVR) by binding biliverdin (BV) quells the cellular response to endotoxin-induced inflammation through phosphorylation of endothelial nitric oxide synthase (eNOS). The generated NO, in turn, nitrosylates BVR, leading to nuclear translocation where BVR binds to the Toll-like receptor-4 (TLR4) promoter at the Ap-1 sites to block transcription. We show in macrophages that BV-induced eNOS phosphorylation (Ser-1177) and NO production are mediated in part by Ca(2+)/calmodulin-dependent kinase kinase. Furthermore, we show that BVR is S-nitrosylated on one of three cysteines and that this posttranslational modification is required for BVR-mediated signaling. BV-induced nuclear translocation of BVR and inhibition of TLR4 expression is lost in macrophages derived from Enos(-/-) mice. In vivo in mice, BV provides protection from acute liver damage and is dependent on the availability of NO. Collectively, we elucidate a mechanism for BVR in regulating the inflammatory response to endotoxin that requires eNOS-derived NO and TLR4 signaling in macrophages.

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Epidemiological studies in humans have demonstrated a relationship between pathological events during fetal development and increased cardiovascular risk later in life and have led to the so called "Fetal programming of cardiovascular disease hypothesis". The recent observation of generalised vascular dysfunction in young apparently healthy children conceived by assisted reproductive technologies (ART) provides a novel and potentially very important example of this hypothesis. This review summarises recent data in ART children demonstrating premature subclinical atherosclerosis in the systemic circulation and pulmonary vascular dysfunction predisposing to exaggerated hypoxia-induced pulmonary hypertension. These problems appear to be related to the ART procedure per se. Studies in ART mice demonstrating premature vascular aging and arterial hypertension further demonstrate the potential of ART to increase cardiovascular risk and have allowed to unravel epigenetic alterations of the eNOS gene as an underpinning mechanism. The roughly 25% shortening of the life span in ART mice challenged with a western style high-fat-diet demonstrates the potential importance of these alterations for the long-term outcome. Given the young age of the ART population, data on cardiovascular endpoints will not be available before 20 to 30 years from now. However, already now cohort studies of the ART population are needed to early detect cardiovascular alterations with the aim to prevent or at least optimally treat cardiovascular complications. Finally, a debate needs to be engaged on the future of ART and the consequences of its exponential growth for public health.

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In ovarian follicles, cumulus cells provide the oocyte with small molecules that permit growth and control maturation. These nutrients reach the germinal cell through gap junction channels, which are present between the cumulus cells and the oocyte, and between the cumulus cells. In this study the involvement of intercellular communication mediated by gap junction channels on oocyte maturation of in vitro cultured bovine cumulus-oocyte complexes (COCs) was investigated. The stages of oocyte maturation were determined by Hoechst 33342 staining, which showed that 90% of COCs placed in the maturation medium for 24 h progress to the metaphase II stage. Bovine COC gap junction communication was disrupted initially using n-alkanols, which inhibit any passage through gap junctions. In the presence of 1-heptanol (3 mmol l(-1)) or octanol (3.0 mmol l(-1) and 0.3 mmol l(-1)), only 29% of the COCs reached metaphase II. Removal of the uncoupling agent was associated with restoration of oocyte maturation, indicating that treatment with n-alkanols was neither cytotoxic nor irreversible. Concentrations of connexin 43 (Cx43), the major gap junction protein expressed in the COCs, were decreased specifically using a recombinant adenovirus expressing the antisense Cx43 cDNA (Ad-asCx43). The efficacy of adenoviral infection was > 95% in cumulus cells evaluated after infection with recombinant adenoviruses expressing the green fluorescence protein. RT-PCR performed on total RNA isolated from Ad-asCx43-infected COCs showed that the rat Cx43 cDNA was transcribed. Western blot analysis revealed a three-fold decrease in Cx43 expression in COCs expressing the antisense RNA for Cx43. Injection of cumulus cells with Lucifer yellow demonstrated further that the resulting lower amount of Cx43 in infected COCs is associated with a two-fold decrease in the extent of coupling between cumulus cells. In addition, oocyte maturation was decreased by 50% in the infected COC cultures. These results indicate that Cx43-mediated communication between cumulus cells plays a crucial role in maturation of bovine oocytes.

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Escherichia coli-based bioreporters for arsenic detection are typically based on the natural feedback loop that controls ars operon transcription. Feedback loops are known to show a wide range linear response to the detriment of the overall amplification of the incoming signal. While being a favourable feature in controlling arsenic detoxification for the cell, a feedback loop is not necessarily the most optimal for obtaining highest sensitivity and response in a designed cellular reporter for arsenic detection. Here we systematically explore the effects of uncoupling the topology of arsenic sensing circuitry on the developed reporter signal as a function of arsenite concentration input. A model was developed to describe relative ArsR and GFP levels in feedback and uncoupled circuitry, which was used to explore new ArsR-based synthetic circuits. The expression of arsR was then placed under the control of a series of constitutive promoters, which differed in promoter strength, and which could be further modulated by TetR repression. Expression of the reporter gene was maintained under the ArsR-controlled Pars promoter. ArsR expression in the systems was measured by using ArsR-mCherry fusion proteins. We find that stronger constitutive ArsR production decreases arsenite-dependent EGFP output from Pars and vice versa. This leads to a tunable series of arsenite-dependent EGFP outputs in a variety of systematically characterized circuitries. The higher expression levels and sensitivities of the response curves in the uncoupled circuits may be useful for improving field-test assays using arsenic bioreporters.

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The carbon dioxide production of the chick embryo cultured in vitro has been determined during the first 24 h of post-laying development using a non-invasive conductometric microtechnique. The mean CO2 production of the whole blastoderm (1) increased from 16 nmol/h at laying to 231 nmol/h at early neurulation, (2) became dependent on exogenous glucose and (3) was closely linked to mechanical tension generated in the blastoderm (loosening from vitelline membrane resulted in a decrease of 56%). In our experimental conditions, no significant influence of carbonic anhydrase on the CO2 production has been detected. The value of the respiratory exchange ratio varied from about 3 at pregastrular stages to 1 at neurula stage and CO2 was produced transiently in presence of antimycin A. Such results indicate that the source of CO2 is not exclusively mitochondrial and that the relative proportions of mitochondrial and non-mitochondrial CO2 productions might vary significantly throughout the early development. Our findings confirm that the metabolism of the chick embryo becomes more and more oxidative from laying onwards and suggest that the modifications of metabolism observed during the studied period of development could be associated with functional differentiation.

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Connexin 40 (Cx40) is expressed by the renin-producing cells (RSCs) of the kidneys and the endothelial cells of blood vessels. Cx40 null mice (Cx40(-/-)) feature a much increased renin synthesis and secretion, which results in chronic hypertension, and also display an altered endothelium-dependent relaxation of the aorta because of reduced eNOS levels and nitric oxide production. To discriminate the effect of Cx40 in renin secretion and vascular signaling, we targeted Cx40 to either the RSCs or the endothelial cells of Cx40 null mice. When compared with Cx40(-/-) controls, the animals expressing Cx40 in RSCs were less hypertensive and featured reduced renin levels, still numerous RSCs outside the wall of the afferent arterioles. In contrast, mice expressing Cx40 in the endothelial cells were as hypertensive as Cx40(-/-) mice, in spite of control levels of Cx37 and eNOS. Our data show that blood pressure is improved by restoration of Cx40 expression in RSCs but not in endothelial cells, stressing the prominent role of renin in the mouse hypertension linked to loss of Cx40.

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Nitric oxide (NO) plays a major role in the regulation of cardiovascular and metabolic homeostasis, as evidenced by insulin resistance and arterial hypertension in endothelial NO synthase (eNOS) null mice. Extrapolation of these findings to humans is difficult, however, because eNOS gene deficiency has not been reported. eNOS gene polymorphism and impaired NO synthesis, however, have been reported in several cardiovascular disease states and could predispose to insulin resistance. High-fat diet induces insulin resistance and arterial hypertension in normal mice. To test whether partial eNOS deficiency facilitates the development of insulin resistance and arterial hypertension during metabolic stress, we examined effects of an 8-week high-fat diet on insulin sensitivity (euglycemic clamp) and arterial pressure in eNOS(+/-) mice. When fed a normal diet, these mice had normal insulin sensitivity and were normotensive. When fed a high-fat diet, however, eNOS(+/-) mice developed exaggerated arterial hypertension and had fasting hyperinsulinemia and a 35% lower insulin-stimulated glucose utilization than control mice. The partial deletion of the eNOS gene does not alter insulin sensitivity or blood pressure in mice. When challenged with nutritional stress, however, partial eNOS deficiency facilitates the development of insulin resistance and arterial hypertension, providing further evidence for the importance of this gene in linking metabolic and cardiovascular disease.

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Cardiac morphogenesis and function are known to depend on both aerobic and anaerobic energy-producing pathways. However, the relative contribution of mitochondrial oxidation and glycogenolysis, as well as the determining factors of oxygen demand in the distinct chambers of the embryonic heart, remains to be investigated. Spontaneously beating hearts isolated from stage 11, 20, and 24HH chick embryos were maintained in vitro under controlled metabolic conditions. O(2) uptake and glycogenolytic rate were determined in atrium, ventricle, and conotruncus in the absence or presence of glucose. Oxidative capacity ranged from 0.2 to 0.5 nmol O(2)/(h.microg protein), did not depend on exogenous glucose, and was the highest in atria at stage 20HH. However, the highest reserves of oxidative capacity, assessed by mitochondrial uncoupling, were found at the youngest stage and in conotruncus, representing 75 to 130% of the control values. At stage 24HH, glycogenolysis in glucose-free medium was 0.22, 0.17, and 0.04 nmol glucose U(h.microg protein) in atrium, ventricle, and conotruncus, respectively. Mechanical loading of the ventricle increased its oxidative capacity by 62% without altering glycogenolysis or lactate production. Blockade of glycolysis by iodoacetate suppressed lactate production but modified neither O(2) nor glycogen consumption in substrate-free medium. These findings indicate that atrium is the cardiac chamber that best utilizes its oxidative and glycogenolytic capacities and that ventricular wall stretch represents an early and major determinant of the O(2) uptake. Moreover, the fact that O(2) and glycogen consumptions were not affected by inhibition of glyceraldehyde-3-phosphate dehydrogenase provides indirect evidence for an active glycerol-phosphate shuttle in the embryonic cardiomyocytes.

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Molecular mechanisms by which exercise exerts cardiovascular benefits are poorly understood. Exercise-induced increase of endothelial NO synthase (eNOS) phosphorylation through the protein kinase Akt has been shown to be a key mechanism underlying the beneficial effect of exercise in coronary artery disease patients. We examined whether this protective pathway might also be activated in long-term-exercised healthy mice. C57BL/6 wild-type mice swam for 24 weeks. A group of sedentary animals were used as controls. Aortic levels of total protein kinase Akt (protein kinase B), phosphorylated Akt at ser473 (p-Akt), total eNOS, phosphorylated eNOS at Ser1177 (p-eNOS), and PECAM-1 (platelet endothelial cell adhesion molecule-1) were assessed by Western blotting. Protein expressions of Akt, p-Akt, eNOS, p-eNOS, and PECAM-1 were not modulated by 24 weeks of exercise. The Akt-dependent eNOS phosphorylation did not seem to be a primary molecular adaptation in response to long-term exercise in healthy mice.

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Describe las condiciones hidroquímicas del mar peruano a comienzos de otoño 1997, efectuado en el BIC Humboldt 9704, encontrando en la superfie del mar las concentraciones de nutrientes (oxígeno, fosfatos, silicatos, nitratos y nititos) fueron bajas afuera de las cinco millas naúticas debido a las influencia de las aguas ecuatoriales superficiales y a las aguas subtropicales superficiales, masas de aguas caracterizadas por ser pobres en nutrientes y cuya presencia se debe a las condiciones anómalas de un año cálido ENOS.

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Describe información acerca del desove de la anchoveta mediante la recolección de planctoncon red hansen. Así mimso, presenta investigaciones sobre la presencia de cardúmenes de peces por medio del eco-sonda y sonar, observaciones de aves y mamiferos marinos.

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La drástica disminución de la longitud media de la merluza en 1992 fue hasta cierto punto inesperada para los biólogos pesqueros peruanos, acostumbrados a manejar esta población como un stock unitario controlando el rendimiento y la longitud mínima en las capturas. Durante toda la década de los años ochenta, el esfuerzo pesquero no fue muy alto y afectó principalmente a los grupos de edades IV+. Menos del 10% de los desembarques fueron de tallas menores a la longitud media de desove (35 cm). Por esto, la gran ocurrencia de tallas pequeñas de merluza a partir de marzo de 1992 en las capturas de todas las flotas dedicadas a esta especie, parecía deberse a las condiciones oceanográficas, ya que un evento El Niño Oscilación Sur (ENOS) se estaba desarrollando. Sin embargo, igual que en anteriores ENOS, se hubiera esperado un cambio de sitio de toda la población hacia el sur y lejos de la costa. Esto significaría que las merluzas jóvenes de tamaño mediano estarían mas al sur fuera del alcance de la flota de Paita. Contrario a lo esperado, durante El Niño 1991-93, debido a una intrusión de aguas oceánicas subtropicales, las merluzas grandes migraron hacia el norte. Mientras que El Niño podría haber actuado como un disparador, la causa fundamental de los cambios estructurales en la población fue la desaparición de la sardina como especie de presa principal para las merluzas grandes a partir de 1987, y la falta de pequeños Sciaenidae (bereche) durante El Niño, para las merluzas de tamaño medio. Lo primero podría deberse al alto esfuerzo pesquero sobre la sardina, en conjunto, probablemente, con una presión depredadora alta de una población sana de merluza a partir de mediados de la década de los años 80. Estudios futuros deben incluir las relaciones entre predador y presa en el ecosistema. Estas relaciones, que se desarrollaron durante largos períodos, probablemente soportan la estabilidad del sistema, y las pesquerías, que actúan como un fuerte depredador, deben ser incluidas en un modelo multiespecífico.

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Se ha analizado la variación oceanográfica y las respuestas de los ensambles de microfitoplancton, mesozooplancton, ictioplancton y macrobentos en las áreas costeras (<20 mn) frente a Paita (05°S) y a San José (06°45’S) durante el período 1994 a 2002. La variación oceanográfica presentó componentes a varias escalas temporales, moduladas por el ciclo ENOS, la propagación de ondas atrapadas hacia la costa y la intensificación estacional del afloramiento costero. La sucesión de los eventos El Niño (EN) 1997-98 y La Niña (LN) 1998-99 presentó características bien diferenciadas en las condiciones físicas superficiales y en la estructura vertical de la columna de agua. El evento EN 1997-98 fue antecedido por el impacto de una onda Kelvin en febrero de 1997, provocando anomalías positivas de temperatura, profundización de la estructura vertical y presencia de algunos indicadores de masas de agua cálida en el plancton, entre febrero y abril de 1997. Estas condiciones se mantuvieron, o se acentuaron, hasta el final del evento. El evento LN 1998-99 se caracterizó por la ausencia de masas de agua cálidas cerca de la costa y la dominancia de aguas costeras frías, la no propagación de ondas Kelvin, la posición somera de aguas frías y pobres en oxígeno, así como la hegemonía de indicadores planctónicos de aguas costeras frías. Estacionalmente, durante otoño-invierno tendieron a desarrollarse condiciones subsuperficiales más oxigenadas (una oxiclina más profunda), mientras que durante el verano las condiciones tendieron a ser menos oxigenadas (hipóxicas, con una oxiclina más somera). Tal patrón no responde a la estacionalidad del afloramiento costero y más bien coincide con la dinámica esperada de la Extensión Sur de la Corriente de Cromwell (ESCC). En general, se determinó un muy buen ajuste de los rangos de tolerancia de algunos organismos planctónicos a las características de las masas de agua dominantes en la capa superficial: Aguas Costeras Frías (ACF), Aguas Ecuatoriales Superficiales (AES) y Aguas Subtropicales Superficiales (ASS), validando la utilidad de estas especies como eficaces indicadores biológicos de masas de agua. Se determinaron los rangos de tolerancia en temperatura y salinidad de los dinoflagelados Protoperidinium obtusum (ACF), Ceratium breve (AES) y Ceratium praelongum (ASS), así como de los copépodos Centropages brachiatus (ACF), Eucalanus inermis (ACF), Centropages furcatus (AES) y Mecynocera clausi (ASS), entre otras. Los indicadores presentaron variaciones en su distribución a lo largo del período estudiado. Los indicadores de ACF fueron detectados durante la mayor parte del estudio, pero ocurrieron hechos sobresalientes durante EN 1997-98: (a) entre los dinoflagelados, Goniodoma polyedricum alcanzó su mayor frecuencia en San José y Pyrocystis lunula frente a Paita; (b) el copépodo Centropages furcatus (AES) incrementó su abundancia frente a Paita y fue hallado frente a San José; (c) se evidenciaron cambios en la composición específica del plancton, detectándose el ingreso de especies no residentes y aumento de la riqueza de especies; (d) las biomasas fitoplanctónica y zooplanctónica tendieron a mostrar una relación directa bajo condiciones neutras del ENOS; sin embargo, al ocurrir variaciones ambientales (EN y LN) presentaron una tendencia contraria; (e) las comunidades del macrobentos en estas dos áreas, mostraron disminuciones significativas en los parámetros comunitarios, contrastando con la respuesta de la macrofauna bentónica frente a la costa central. Este comportamiento frente a Paita pudo obedecer a la alteración del ambiente sedimentario por las muy altas des- cargas del río Chira; y frente a San José, pudo resultar de la disminución local de la producción primaria y del flujo de alimento particulado al bentos. Se sugiere que la disponibilidad de alimento, influenciada por los procesos erosivos sobre el fondo, marca una diferencia clave en la dinámica de estas comunidades en relación a las registradas frente a la costa central, ya que estas últimas habitan en áreas donde pre- dominan los procesos deposicionales y la acumulación de materia orgánica en los sedimentos. Los anfípodos gamáridos, especialmente de la familia Ampeliscidae, mostraron ser más sensibles a los cambios ambientales en el fondo (interfase sedimento-agua) al disminuir significativamente sus poblaciones, en ambas áreas costeras.

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La variabilidad temporal de baja frecuencia en Ecosistema de la Corriente Humboldt (ECH) frente a Perú se caracteriza por cambios abruptos en la dominancia de anchoveta y sardinas, así como por drásticas disminuciones en los desembarques de anchoveta durante la fase calidad del ciclo El Niño Oscilación del Sur (ENOS) (e.g. 1972-73 y 1982 – 1983). Sumado a esta características, estudios recientes sugieren que existen señales de largo plazo en el ECH frente a Perú (e. G. Tendencia decreciente de la abundancia de aves guaneras y volúmenes de mesozooplancton). Sin embargo, respuestas biológicas a tales señales físicas de largo plazo son crípticas o poco conocidas. En este estudio se analiza por una parte la variabilidad internual en las variables físicas y biológicas asociadas con El Niño. Esta señal se expresó en el Índice de oscilación Peruano (IOP), basado en las temperaturas superficiales del mar (TSM), en la variabilidad del viento del área EL NIÑO 3,4 y en el Índice de Oscilación del Sur (IOS), basado en la presión superficial del mar.

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Genetically homogenous C57Bl/6 mice display differential metabolic adaptation when fed a high fat diet for 9 months. Most become obese and diabetic, but a significant fraction remains lean and diabetic or lean and non-diabetic. Here, we performed microarray analysis of "metabolic" transcripts expressed in liver and hindlimb muscles to evaluate: (i) whether expressed transcript patterns could indicate changes in metabolic pathways associated with the different phenotypes, (ii) how these changes differed from the early metabolic adaptation to short term high fat feeding, and (iii) whether gene classifiers could be established that were characteristic of each metabolic phenotype. Our data indicate that obesity/diabetes was associated with preserved hepatic lipogenic gene expression and increased plasma levels of very low density lipoprotein and, in muscle, with an increase in lipoprotein lipase gene expression. This suggests increased muscle fatty acid uptake, which may favor insulin resistance. In contrast, the lean mice showed a strong reduction in the expression of hepatic lipogenic genes, in particular of Scd-1, a gene linked to sensitivity to diet-induced obesity; the lean and non-diabetic mice presented an additional increased expression of eNos in liver. After 1 week of high fat feeding the liver gene expression pattern was distinct from that seen at 9 months in any of the three mouse groups, thus indicating progressive establishment of the different phenotypes. Strikingly, development of the obese phenotype involved re-expression of Scd-1 and other lipogenic genes. Finally, gene classifiers could be established that were characteristic of each metabolic phenotype. Together, these data suggest that epigenetic mechanisms influence gene expression patterns and metabolic fates.