945 resultados para Viral mningoencephalitis


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Bacteria are central to human health and disease, but existing tools to edit microbial consortia are limited. For example, broad-spectrum antibiotics are unable to precisely manipulate bacterial communities. Bacteriophages can provide highly specific targeting of bacteria, but assembling well-defined phage cocktails solely with natural phages can be a time-, labor- and cost-intensive process. Here, we present a synthetic biology strategy to modulate phage host ranges by engineering phage genomes in Saccharomyces cerevisiae. We used this technology to redirect Escherichia coli phage scaffolds to target pathogenic Yersinia and Klebsiella bacteria, and conversely, Klebsiella phage scaffolds to target E. coli by modular swapping of phage tail components. The synthetic phages achieved efficient killing of their new target bacteria and were used to selectively remove bacteria from multi-species bacterial communities with cocktails based on common viral scaffolds. We envision this approach accelerating phage biology studies and enabling new technologies for bacterial population editing.

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Invasive cervical cancer (ICC) is the third most frequent cancer among women worldwide and is associated with persistent infection by carcinogenic human papillomaviruses (HPVs). The combination of large populations of viral progeny and decades of sustained infection may allow for the generation of intra-patient diversity, in spite of the assumedly low mutation rates of PVs. While the natural history of chronic HPVs infections has been comprehensively described, within-host viral diversity remains largely unexplored. In this study we have applied next generation sequencing to the analysis of intra-host genetic diversity in ten ICC and one condyloma cases associated to single HPV16 infection. We retrieved from all cases near full-length genomic sequences. All samples analyzed contained polymorphic sites, ranging from 3 to 125 polymorphic positions per genome, and the median probability of a viral genome picked at random to be identical to the consensus sequence in the lesion was only 40%. We have also identified two independent putative duplication events in two samples, spanning the L2 and the L1 gene, respectively. Finally, we have identified with good support a chimera of human and viral DNA. We propose that viral diversity generated during HPVs chronic infection may be fueled by innate and adaptive immune pressures. Further research will be needed to understand the dynamics of viral DNA variability, differentially in benign and malignant lesions, as well as in tissues with differential intensity of immune surveillance. Finally, the impact of intralesion viral diversity on the long-term oncogenic potential may deserve closer attention.

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La batata se ubica en el séptimo lugar como cultivo destinado a la alimentación humana, y en el quinto luego de arroz, trigo, maíz y mandioca. Globalmente, existen 8 millones de hectáreas plantadas con batata y, aproximadamente el 95% de esa superficie se ubica en más de un centenar de países en desarrollo. En Argentina, la región pampeana (Buenos Aires, Córdoba y Santa Fe) y el NEA representan el 83% de la superficie plantada. Córdoba y Buenos Aires constituyen las principales provincias productoras. A pesar de su importancia potencial en la alimentación humana y animal, como producto exportable y para industrialización, se viene registrando una marcada reducción en el área cultivada con esta hortícola y, entre las causas más relevantes que determinan este fenómeno, se encuentran las enfermedades virales. Históricamente estas patologías han sido la principal limitante en la producción de este cultivo en Argentina y, especialmente en Córdoba. Recientemente y, tras brindar solución al grave problema ocasionado por el “enanismo clorótico” (Sweet potato chlorotic dwarf disease), virosis que afectó al cv Morada INTA en la década del 90, se observó, en nuestra provincia, la aparición de una severa sintomatología viral en lotes de producción implantados con el cv Arapey INIA, genotipo de creciente difusión en el cultivo por sus buenas características agronómicas. En virtud de dicha sintomatología, se sugiere que en la nueva patología viral se halla involucrado más de un agente etiológico y que la misma produce daños económicos en la producción de Arapey INIA. Por otra parte, la identificación de el/los virus presentes en la nueva patología es el primer eslabón para la búsqueda de resistencia a los mismos. Se supone, además, que, en germoplasma selecto de batata existen fuentes de resistencia a el/los virus involucrados y, que, al menos uno de los agentes patógenos de esta virosis de Arapey INIA, es transmitido por moscas blancas. Se propone, como paso inicial para el control de la nueva etiología: caracterizar biológica, serológica y molecularmente a el/los virus involucrados en ella; preparar reactivos de diagnóstico para los mismos y evaluar la gravedad de esta virosis a través de la estimación de su incidencia, prevalencia y severidad y de los daños que provoca sobre los componentes de rendimiento, en zonas productoras de la provincia de Córdoba. Por otra parte y, debido a que una de las principales formas de control de estas enfermedades es a través del empleo de germoplasma resistente y, considerando que la mayoría de los cultivares comerciales de batata, incluído Arapey INIA poseen escasa variabilidad genética por ser monoclonales, se pretende explorar molecularmente para genes de resistencia en aproximadamente 30 genotipos (clones) promisorios procedentes de la EEA INTA San Pedro ( Bs.As.), empleados como parentales en policruzamientos, además de hacerlo en el genotipo bajo estudio (Arapey INIA).

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Argentina es el tercer exportador mundial de maíz luego de Estados Unidos y Brasil. La estimación de la campaña 2009/10 indica que la producción mundial de maíz alcanzaría los 832,37 millones de toneladas, cerca de 23 millones de toneladas más que lo cosechado durante la campaña anterior y 21 millones de toneladas mas que lo cosechado en la campaña récord de 2007/08 (USDA, 2010). La cosecha de maíz 2009/10 en Argentina sería récord, llegando a los 22,5 millones de toneladas lo que significaría un incremento de 53% respecto de la campaña anterior, igualando el récord de la campaña 2006/07. El aumento de la potencialidad de rendimiento se concibe desde un cultivo sin incidencia de enfermedades. La predicción de la ocurrencia y del riesgo de daño asociado a las enfermedades de los cultivos a gran escala, la determinación del riesgo de distribución de pestes exóticas o emergentes en la agricultura sustentable, la evaluación de riesgo/beneficio del control biológico y la evaluación de enfermedades asociadas con el calentamiento global o el cambio de prácticas culturales son tópicos importantes en la ciencia agropecuaria moderna. Las enfermedades del maíz, en especial las producidas por virus y mollicutes se han incrementado en los últimos años debido, entre otras causas, al cultivo continuo desde el norte del país y países vecinos desde donde migran los vectores, a los cultivares de alto rendimiento que en muchos casos son susceptibles a estos patógenos y en gran medida a los cambios climáticos globales que generan que virosis de zonas tropicales y subtropicales se extiendan a zonas templadas. El principal enfoque para el control es el conocimiento del ciclo epidemiológico de la enfermedad ubicado para cada ambiente. En este marco es que desde el Departamento de Graduados de la Fac. de Cs. Agropecuarias, junto con la Secretaría de Extensión surgió la necesidad de la transferencia de los resultados de la investigación. Los conocimientos adquiridos en investigación hasta el presente, en toda la extensión de la Provincia de Córdoba, servirán a profesionales asesores, empresas semilleras y de insumos agropecuarios, productores y estudiantes próximos a graduarse a conocer estas enfermedades, sus vectores, las condiciones predisponentes y tener acceso a información actualizada para lograr su manejo con medidas preventivas desde el momento de la compra de los insumos agropecuarios, el sistema de labranza y de las fechas de siembra. Entrenar al productor para que adquiera esta habilidad le permitirá escapar a pérdidas de hasta 60% del lote, como son las producidas en la Provincia por algunas virosis como el Mal de Río Cuarto (March et al., 1993, Gaceta agronómica 76: 384), o pérdidas no perceptibles pero reales, de 14% en plantas con esta enfermedad respecto a plantas sanas (Ornaghi et a., 1995, IX J. Fitosanitarias Argentinas: 84). Otras virosis, como el mosaico común, no producen grandes epidemias sino son incidiosas, están presentes todos los años con pérdidas de producción a niveles tan significativos como 5,5 qq/ha e incidencias de hasta 44% en la Provincia (Lenardón y Giolitti, 1999, Proyecto de Investig. en Fitovirología INTA-JICA) y requiere certificación sanitaria para la exportación del grano pues se transmite por semilla. Por su parte, mollicutes emergentes como el Corn stunt spiroplasma, se han detectado en Córdoba con incidencias de 61% en lotes de Justiniano Posse y de 80% en Sarmiento, habiéndose detectado en la campaña 2009/10 en 4 localidades de la Provincia. Virosis re-emergentes como el MCMV, que produce necrosis letal del maíz en sinergismo con otras virosis, han hecho su reaparición con niveles de hasta 18% de infección. Reconocer sus síntomas y conocer las formas de dispersión y transmisión permitirá al profesional y al productor la evaluación del problema y tomar medidas de prevención y manejo de estas enfermedades para lograr los rendimientos esperados.

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Magdeburg, Univ., Fak. für Verfahrens- und Systemtechnik, Diss., 2011

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Quantitative method of viral pollution determination for large volume of water using ferric hydroxide gel impregnated on the surface of glassfibre cartridge filter. The use of ferric hydroxide gel, impregnated on the surface of glassfibre cartridge filter enable us to recover 62.5% of virus (Poliomylitis type I, Lsc strain) exsogeneously added to 400 liters of tap-water. The virus concentrator system consists of four cartridge filters, in which the three first one are clarifiers, where the contaminants are removed physically, without significant virus loss at this stage. The last cartridge filter is impregnated with ferric hydroxide gel, where the virus is adsorbed. After the required volume of water has been processed, the last filter is removed from the system and the viruses are recovered from the gel, using 1 liter of glycine/NaOH buffer, at pH 11. Immediately the eluate is clarified through series of cellulose acetate membranes mounted in a 142mm Millipore filter. For the second step of virus concentration, HC1 1N is added slowly to the eluate to achieve pH 3.5-4. MgC1, is added to give a final concentration of 0.05M and the viruses are readsorbed on a 0.45 , porosity (HA) cellulose acetate membrane, mounted in a 90 mm Millipore filter. The viruses are recovered using the same eluent plus 10% of fetal calf serum, to a final volume of 3 ml. In this way, it was possible to concentrate virus from 400 liters of tap-water, into 1 liter in the first stage of virus concentration and just to 3 ml of final volume in a second step. The efficiency, simplicity and low operational cost, provded by the method, make it feasible to study viral pollution of recreational and tap-water sources.

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Toddia França, 1912 under the light microscope occurs as inclusion corpuscles in the cytoplasm of erythrocytes of cold-blooded vertebrates sometimes accompanied by crystalloid bodies. Its position among the protozoans or the viruses has been discussed by some authors, but remained unclear. To elucidate this problem we studied Toddia from a Brazilian frog (Leptodactylus ocellatus) by electron microscopy. In the cytoplasm of the infected cells we found no protozoan, but rather virus-like particles often hexagonal in outline, averaging 195 nm excluding their two involving membranes, and presenting a central area of variable electron density. Particles at different stages of development were generally found around or on area lighter density than the cytoplasm. which resembled a virus synthesis site. At high magnification, the nuclear or cytoplasmic crystals allied to Toddia resembled the crystalline lattice of the inclusion bodies associated with the polyhedrosis viruses and poxviruses from insects, of the capsules of granulosis viruses and of other protein crystals in ultrathin sections. Cytochemical tests in Toddia corpuscles displayed exclusively the presence of deoxyribonucleic acid. These findings indicate that Toddia is not a protozoan and demonstrate that it is in all probability a viral inclusion corpuscle. Taking into account the nucleic acid type found in its structure (DNA) and the hexagonal shape usually shown in ultrathin sections by its component particles, which have a cytoplasmic site of synthesis and assembly, we tentatively relate Toddia with the so-called "Icosahedral Cytoplasmic Deoxyriboviruses". We believe that the present paper gives the first report of virus-like particles in L. ocellatus.

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The presence of viral antigen in sections from formalin-fixed and paraffin-embedded human tissues was demonstrated by trypsin digestion followed by direct or indirect immunofluorescence. The specimens may be used for retrospective diagnosis. The immunofluorescence technique has to be adapted to the suspected virus infection on the basis of previous histopathology study. Variations of trypsin concentration time and temperature of incubation, expose different viral antigens and have to be previously tested for each unknown system. For measles virus detection in lung a stronger digestion has to be applied as compared to adenovirus or respiratory disease viruses in the same tisue. Flavivirus in liver tissue needs a weaker digestion. The reproducibility of the method makes it useful as a routine technique in diagnosis of virus infection.

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Summary : Internal ribosome entry sites (IRES) are used by viruses as a strategy to bypass inhibition of cap-dependent translation that commonly results from viral infection. IRES are also used in eukaryotic cells to control mRNA translation under conditions of cellular stress (apoptosis, heat shock) or during the G2 phase of the cell cycle when general protein synthesis is inhibited. Variation in cellular expression levels has been shown to be inherited. Expression is controlled, among others, by transcriptional factors and by the efficiency of cap-mediated translation and ribosome activity. We aimed at identifying genomic determinants of variability in IRES-mediated translation of two representative IRES [Encephalomyocarditis virus (EMCV) and X-linked Inhibitor-of-Apoptosis (XIAP) IRES]. We used bicistronic lentiviral constructions expressing two fluorescent reporter transgenes. Lentiviruses were used to transduce seven different laboratory cell lines and B lymphoblastoid cell lines from the Centre d'Etude du Polymorphisme Humain (CEPH; 15 pedigrees; n=209); representing an in vitro approach to family structure allowing genome scan analyses. The relative expression of the two markers was assessed by FACS. IRES efficiency varies according to cellular background, but also varies, for a same cell type, among individuals. The control of IRES activity presents an inherited component (h2) of 0.47 and 0.36 for EMCV and XIAP IRES, respectively. A genome scan identified a suggestive Quantitative Trait Loci (LOD 2.35) involved in the control of XIAP IRES activity. Résumé : Les sites internes d'entrée des ribosomes (IRES = internal ribosome entry sites) sont utilisés par les virus comme une stratégie afin d'outrepasser l'inhibition de traduction qui résulte communément d'une infection virale. Les IRES sont également utilisés par les cellules eucaryotes pour contrôler la traduction de l'ARN messager dans des conditions de stress cellulaire (apoptose, choc thermique) ou durant la phase G2 du cycle cellulaire, situations durant lesquelles la synthèse générale des protéines est inhibée. La variation des niveaux d'expression cellulaire de transcription est un caractère héréditaire. L'expression des gènes est contrôlée entre autre par les facteurs de transcription et par l'efficacité de la traduction initiée par la coiffe ainsi que par l'activité des ribosomes. Durant cette étude nous avons eu pour but d'identifier les déterminants génomiques responsables de la variabilité de la traduction contrôlée par l'IRES. Ceci a été effectué en étudiant deux IRES représentatifs : l'IRES du virus de l'encéphalomyocardite (EMCV) et l'IRES de l'inhibiteur de l'apoptose XIAP (X-linked Inhibitor-of-Apoptosis). Nous avons utilisés des lentivirus délivrant un transgène bicistronique codant pour deux gènes rapporteurs fluorescents. Ces lentivirus ont été utilisés pour transduire sept différentes lignées cellulaires de laboratoire et des lignées cellulaires lymphoblastoïdes B du Centre d'Etude du Polymorphisme Humain (CEPH; 15 pedigrees; n=209) qui représentent une approche in vitro de la structure familiale et qui permettent des analyses par balayage du génome. L'expression relative des deux marqueurs fluorescents a été analysée par FACS. Nos résultats montrent que l'efficacité des IRES varie en fonction du type de cellules. Il varie aussi, pour le même type de cellules, selon les individus. Le contrôle de l'activité de l'IRES est un caractère héritable (héritabilité h2) de 0.47 et 0.36 pour les IRES de EMCV et XIAP respectivement. Le balayage du génome a permis l'identification d'un locus à effets quantitatifs [QTL Quantitative Trait Loci (LOD 2.35)] impliqué dans le contôle de l'activité de l'IRES de XIAP.

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Viruses have evolved many distinct strategies to avoid the host's apoptotic response. Here we describe a new family of viral inhibitors (v-FLIPs) which interfere with apoptosis signalled through death receptors and which are present in several gamma-herpesviruses (including Kaposi's-sarcoma-associated human herpesvirus-8), as well as in the tumorigenic human molluscipoxvirus. v-FLIPs contain two death-effector domains which interact with the adaptor protein FADD, and this inhibits the recruitment and activation of the protease FLICE by the CD95 death receptor. Cells expressing v-FLIPs are protected against apoptosis induced by CD95 or by the related death receptors TRAMP and TRAIL-R. The herpesvirus saimiri FLIP is detected late during the lytic viral replication cycle, at a time when host cells are partially protected from CD95-ligand-mediated apoptosis. Protection of virus-infected cells against death-receptor-induced apoptosis may lead to higher virus production and contribute to the persistence and oncogenicity of several FLIP-encoding viruses.

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The proprotein convertases (PCs) are a family of nine mammalian enzymes that play key roles in the maintenance of cell homeostasis by activating or inactivating proteins via limited proteolysis under temporal and spatial control. A wide range of pathogens, including major human pathogenic viruses can hijack cellular PCs for their own purposes. In particular, productive infection with many enveloped viruses critically depends on the processing of their fusion-active viral envelope glycoproteins by cellular PCs. Based on their crucial role in virus-host interaction, PCs can be important determinants for viral pathogenesis and represent promising targets of therapeutic antiviral intervention. In the present review we will cover basic aspects and recent developments of PC-mediated maturation of viral envelope glycoproteins of selected medically important viruses. The molecular mechanisms underlying the recognition of PCs by viral glycoproteins will be described, including recent findings demonstrating differential PC-recognition of viral and cellular substrates. We will further discuss a possible scenario how viruses during co-evolution with their hosts adapted their glycoproteins to modulate the activity of cellular PCs for their own benefit and discuss the consequences for virus-host interaction and pathogenesis. Particular attention will be given to past and current efforts to evaluate cellular PCs as targets for antiviral therapeutic intervention, with emphasis on emerging highly pathogenic viruses for which no efficacious drugs or vaccines are currently available.

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The specific interactions of the pairs laminin binding protein (LBP)-purified tick-borne encephalitis viral surface protein E and certain recombinant fragments of this protein, as well as West Nile viral surface protein E and certain recombinant fragments of that protein, are studied by combined methods of single-molecule dynamic force spectroscopy (SMDFS), enzyme immunoassay and optical surface waves-based biosensor measurements. The experiments were performed at neutral pH (7.4) and acid pH (5.3) conditions. The data obtained confirm the role of LBP as a cell receptor for two typical viral species of the Flavivirus genus. A comparison of these data with similar data obtained for another cell receptor of this family, namely human αVβ3 integrin, reveals that both these receptors are very important. Studying the specific interaction between the cell receptors in question and specially prepared monoclonal antibodies against them, we could show that both interaction sites involved in the process of virus-cell interaction remain intact at pH 5.3. At the same time, for these acid conditions characteristic for an endosome during flavivirus-cell membrane fusion, SMDFS data reveal the existence of a force-induced (effective already for forces as small as 30-70 pN) sharp globule-coil transition for LBP and LBP-fragments of protein E complexes. We argue that this conformational transformation, being an analog of abrupt first-order phase transition and having similarity with the famous Rayleigh hydrodynamic instability, might be indispensable for the flavivirus-cell membrane fusion process. Copyright © 2014 John Wiley & Sons, Ltd.