48 resultados para EHEC


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Microbiologia Agropecuária - FCAV

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Background: The number of Escherichia coli in the gut of Crohn's disease (CD) patients is higher than that of normal subjects, but the virulence potential of these bacteria is not fully known. Previous studies have shown that these E. coli are closely related to extraintestinal pathogenic categories (ExPEC), are able to invade epithelial cells, and usually do not produce exotoxins. We report here the detection, in a CD patient, of an E. coli which belongs to a classical enteropathogenic (EPEC) serotype and displays virulence markers of enteroinvasive (EIEC), enteroaggregative (EAEC) and enterohemorrhagic (EHEC) pathotypes. Methods: The E. coli strain was isolated, in 2009, by classical bacteriological procedures from a 56 year old woman who underwent ileo-terminal resection 1 year before, due to intestinal obstruction. The bacterial characterization was carried out by in vitro adhesion and invasion assays to cultured epithelial cells and macrophages and screening by PCR to identify virulence genetic markers of diarrheogenic E. coli (DEC) and to detect one of the gene combinations which define the phylogroups of the E. coli reference (EcoR) collection. The strain was also tested for the ability to produce biofilm and shiga cytotoxins and had its whole genome sequenced by Ion Torrent Sequencing Technology. Results: The studied strain, which was detected both in ileum biopsies and the stools of the patient, displayed the aggregative adherence (AA) phenotype to Hep-2 cells and an ability to enter Caco-2 cells 3x as high as that of EIEC reference strain and 89% of that of the prototype AIEC LF82 strain. Although it could invade cultured macrophages, the strain was unable to replicate inside these cells. PCR screening revealed the presence of eae, aggR and stx1. Tests with bacterial culture supernatants in Vero cells demonstrating cytotoxicity suggested the production of Stx1. In addition, the strain revealed to be a strong biofilm producer, belonged to the B2 EcoR phylogroup, to the O126:H27 serogroup and to the multilocus sequencing type (MLST) ST3057. The 2 later features were deduced from the whole genome sequence of the strain. Conclusions: The characterization of this E. coli isolate from a CD patient revealed a combination of virulence markers of distinct DEC pathotypes, namely eae and stx1 of EHEC, AA, aggR and biofilm formation of EAEC, and invasiveness of EIEC. These features along with its serotype and phylogroup identity seem to suggest a potential to be involved in CD, an observation which should be tested with additional studies.

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Human infections with EHEC such as O157:H7 have been a great concern for worldwide food-industry surveillance. This pathogen is commonly associated with bloody diarrhea that can evolve to the life-threatening hemolytic uremic syndrome. Animals are the natural reservoir where this pathogen remains asymptomatically, in steps of ingestion and colonization of the bowel. The bacterium is shed in the feces, contaminating the surroundings, including water and food that are directed for human consumption. A major player in this colonization process is intimin, an outer membrane adhesion molecule encoded by the E. coli attachment and effacement (eae) gene that has been shown to be essential for intimate bacterial attachment to eukaryotic host cells. In an attempt to reduce the colonization of animal reservoirs with EHEC O157:H7, we designed a vaccine model to induce an immune response against intimin gamma. The model is based on its recombinant expression in attenuated Salmonella, used as a suitable vaccine vector because of its recognized ability to deliver recombinant antigens and to elicit all forms of immunity: mucosal, systemic, and humoral responses. To test this model, mice were orally immunized with a S. enterica serovar Typhimurium strain carrying the pYA3137eaeA vector, and challenged with E. coli O157:H7. Here we show that immunization induced the production of high levels of specific IgG and IgA antibodies and promoted reduction in the fecal shedding of EHEC after challenge. The live recombinant vaccine reported herein may contribute to the efforts of reducing animal intestinal mucosa colonization.

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Enterohemorrhagic Escherichia coli (EHEC) are the causative agent of hemolytic-uremic syndrome. In the first stage of the infection, EHEC interact with human enterocytes to modulate the innate immune response. Inducible NO synthase (iNOS)-derived NO is a critical mediator of the inflammatory response of the infected intestinal mucosa. We therefore aimed to analyze the role of EHEC on iNOS induction in human epithelial cell lines. In this regard, we show that EHEC down-regulate IFN-gamma-induced iNOS mRNA expression and NO production in Hct-8, Caco-2, and T84 cells. This inhibitory effect occurs through the decrease of STAT-1 activation. In parallel, we demonstrate that EHEC stimulate the rapid inducible expression of the gene hmox-1 that encodes for the enzyme heme oxygenase-1 (HO-1). Knock-down of hmox-1 gene expression by small interfering RNA or the blockade of HO-1 activity by zinc protoporphyrin IX abrogated the EHEC-dependent inhibition of STAT-1 activation and iNOS mRNA expression in activated human enterocytes. These results highlight a new strategy elaborated by EHEC to control the host innate immune response.

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Aids steht für die letzte grosse Krise der westlichen Welt im ausgehenden 20. Jahrhundert. Heute hat sich die Situa­tion normalisiert: Aus der verheerenden Seuche ist eine zwar ernste, doch einschätzbare Krankheit geworden. Im Rückblick zeigen sich die dreissig Jahre des gesellschaftlichen Umgangs mit Aids als dicht gedrängte Zeit, in der der Umgang mit der neuen, höchst bedrohlich erscheinenden Krankheit ausgehandelt wurde. Der Band zeichnet die Entwicklung des Aids-Diskurses im deutschsprachigen Raum von den Anfängen in den 1980er Jahren bis zur Gegenwart nach. In der Rückschau werden die dominanten Strömungen und Gegenströmungen charakterisiert und die entscheidenden Drehpunkte des Diskurses akzentuiert. Besonderes Augenmerk gilt dem Beitrag von Literatur, Theater und Film zur gesellschaftlichen Verarbeitung von Aids. Die systematische Analyse macht die komplexen Wechselverhältnisse zwischen den Massen­medien, den fiktionalen Gattungen sowie der medizinischen Kommunikation sichtbar. Die regelmässige Wiederkehr von epidemischen Szenarien – BSE, SARS, Vogel- und Schweinegrippe und jüngst EHEC – zeigt, dass ein prüfender Blick auf die sich wiederholenden dramaturgischen Muster der Auseinandersetzung mit ansteckenden Krankheiten nottut. In diesem Zusammenhang trägt das gleichermassen auf wissenschaftliche Genauigkeit wie auf Anschaulichkeit und Allgemeinverständlichkeit angelegte Buch zur kritischen Reflexion der jüngsten Zeitgeschichte bei.

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Gegenstand / Untersuchungskorpus Die massenmediale Aufbereitung von Aids ist bereits seit den Anfängen der geisteswissenschaftlichen Beschäftigung mit diesem Thema ein zentraler Gegenstand kritischer Betrachtung. Demgegenüber stellt sich die systematische Erforschung des Beitrages von eher fiktionalen Gattungen zur gesellschaftlichen Verarbeitung von Aids ein Forschungsdesiderat dar. Die Dissertation „Dramaturgie der Seuche“ schliesst mit der Fokussierung auf Literatur, Theater und Film diese Lücke. Die dezidiert interdisziplinäre Auswahl des Untersuchungskorpus’ liefert eine Zusammenschau der Funktionen, die diese Gattungen im Laufe der Zeit innerhalb des Aids-Diskurses übernommen haben. Die Arbeit zeigt die komplexen Wechselverhältnisse zwischen den Massenmedien, den fiktionalen Gattungen sowie der medizinischen Kommunikation auf. Fragedesign auf der Höhe der aktuellen Forschung Gegenwärtig ist erneut ein Interesse kultur- und sozialwissenschaftlicher Disziplinen am Thema Aids zu beobachten. Eine junge Forschergeneration nimmt sich des Themas an und beleuchtet die Auseinandersetzung mit Aids an Hand neuer Fragestellungen und mit neuen Methoden. Im Mittelpunkt dieser wissenschaftlichen Auseinandersetzung stehen die reflektierte Historisierung und Kontextualisierung des Aids-Diskurses seit den 1980er-Jahren. Die Dissertation „Dramaturgie der Seuche“ positioniert sich mit ihrer Frage nach der Struktur und der Entwicklung der gesellschaftlichen Auseinandersetzung mit Aids seit den Anfängen bis zur Gegenwart innerhalb dieses aktuellen Forschungsfeldes. Die Herangehensweise unterscheidet sich damit deutlich von den Forschungen der 1990er-Jahre, die eher von Betroffenheit und/oder unmittelbarer Kritik am Aids-Diskurs in den Massenmedien geprägt war. Zugleich verschafft die kritische Re-Lektüre der zentralen Publikationen zum Thema Aids, etwa von Susan Sontag oder Sander L. Gilman, diesen eine kritische Aktualisierung. Innovatives Methodendesign Um dem interdiszplinären Korpus und der kulturwissenschaftlich inspirierten Fragestellung gerecht zu werden, entwirft die Dissertation ein innovatives Methodendesign, das diskursanalytische und systemtheoretische Ansätze mit theater-, literatur- und filmwissenschaftlichen Analyseinstrumenten synthetisiert. Dieses leistet in der Anwendung sowohl eine präzise und adäquate Tiefenanalyse der untersuchten Texte, Bilder und Filme als auch eine Auswertung dieser Ergebnisse auf einer abstrakteren Ebene, die die komplexe Struktur der Entwicklung des Aids-Diskurses seit den 1980er-Jahren bis heute überzeugend und anschaulich darlegt. Das entworfene Methodendesign lässt sich auf andere Gegenstände anwenden und verspricht ebenso präzise wie innovative Ergebnisse. Ergebnisse: Nutzen für die Öffentlichkeit Die analytische Auseinandersetzung mit der letzten grossen Seuche innerhalb der westlichen Welt birgt nicht nur in der Rückschau auf die letzten Dekaden einen Mehrwert für die Öffentlichkeit. Die regelmässige Wiederkehr von epidemischen Szenarien – BSE, SARS, Vogel- und Schweinegrippe und jüngst EHEC – zeigt, dass ein kritischer Blick auf die sich wiederholenden dramaturgischen Muster des Redens über ansteckende Krankheiten nottut. Die Dissertation „Dramaturgie der Seuche“ trägt dazu bei, die Muster des Seuchendiskurses zu erkennen und reflektiert und kritisch mit der Berichterstattung in den Medien wie auch mit den kursierenden Urban Legends umzugehen. Der Aufbau der Argumentation und der sprachliche Stil verbinden wissenschaftliche Genauigkeit mit Allgemeinverständlichkeit. Dadurch wird die Arbeit breit rezipierbar.

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This report analyzes the basis of hydrogen and power integration strategies, by using water electrolysis processes as a means of flexible energy storage at large scales.

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Several pathogenic strains of Escherichia coli exploit type III secretion to inject effector proteins into human cells, which then subvert eukaryotic cell biology to the bacterium's advantage. We have exploited bioinformatics and experimental approaches to establish that the effector repertoire in the Sakai strain of enterohemorrhagic E. coli (EHEC) O157:H7 is much larger than previously thought. Homology searches led to the identification of > 60 putative effector genes. Thirteen of these were judged to be likely pseudogenes, whereas 49 were judged to be potentially functional. In total, 39 proteins were confirmed experimentally as effectors: 31 through proteomics and 28 through translocation assays. At the protein level, the EHEC effector sequences fall into > 20 families. The largest family, the NleG family, contains 14 members in the Sakai strain alone. EHEC also harbors functional homologs of effectors from plant pathogens (HopPtoH, HopW, AvrA) and from Shigella (OspD, OspE, OspG), and two additional members of the Map/IpgB family. Genes encoding proven or predicted effectors occur in > 20 exchangeable effector loci scattered throughout the chromosome. Crucially, the majority of functional effector genes are encoded by nine exchangeable effector loci that lie within lambdoid prophages. Thus, type III secretion in E. coli is linked to a vast phage metagenome, acting as a crucible for the evolution of pathogenicity.

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UNLABELLED: Translocation of effector proteins via a type III secretion system (T3SS) is a widespread infection strategy among Gram-negative bacterial pathogens. Each pathogen translocates a particular set of effectors that subvert cell signaling in a way that suits its particular infection cycle. However, as effector unbalance might lead to cytotoxicity, the pathogens must employ mechanisms that regulate the intracellular effector concentration. We present evidence that the effector EspZ controls T3SS effector translocation from enteropathogenic (EPEC) and enterohemorrhagic (EHEC) Escherichia coli. Consistently, an EPEC espZ mutant is highly cytotoxic. Following ectopic expression, we found that EspZ inhibited the formation of actin pedestals as it blocked the translocation of Tir, as well as other effectors, including Map and EspF. Moreover, during infection EspZ inhibited effector translocation following superinfection. Importantly, while EspZ of EHEC O157:H7 had a universal "translocation stop" activity, EspZ of EPEC inhibited effector translocation from typical EPEC strains but not from EHEC O157:H7 or its progenitor, atypical EPEC O55:H7. We found that the N and C termini of EspZ, which contains two transmembrane domains, face the cytosolic leaflet of the plasma membrane at the site of bacterial attachment, while the extracellular loop of EspZ is responsible for its strain-specific activity. These results show that EPEC and EHEC acquired a sophisticated mechanism to regulate the effector translocation.

IMPORTANCE: Enteropathogenic Escherichia coli (EPEC) and enterohemorrhagic E. coli (EHEC) are important diarrheal pathogens responsible for significant morbidity and mortality in developing countries and the developed world, respectively. The virulence strategy of EPEC and EHEC revolves around a conserved type III secretion system (T3SS), which translocates bacterial proteins known as effectors directly into host cells. Previous studies have shown that when cells are infected in two waves with EPEC, the first wave inhibits effector translocation by the second wave in a T3SS-dependent manner, although the factor involved was not known. Importantly, we identified EspZ as the effector responsible for blocking protein translocation following a secondary EPEC infection. Interestingly, we found that while EspZ of EHEC can block protein translocation from both EPEC and EHEC strains, EPEC EspZ cannot block translocation from EHEC. These studies show that EPEC and EHEC employ a novel infection strategy to regulate T3SS translocation.

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Attaching and effacing (A/E) lesions and actin polymerization, the hallmark of enteropathogenic Escherichia coli (EPEC), enterohemorrhagic E. coli (EHEC) and Citrobacter rodentium (CR) infections, are dependent on the effector Tir. Phosphorylation of Tir(EPEC/CR) Y474/1 leads to recruitment of Nck and neural Wiskott-Aldrich syndrome protein (N-WASP) and strong actin polymerization in cultured cells. Tir(EPEC/CR) also contains an Asn-Pro-Tyr (NPY(454/1)) motif, which triggers weak actin polymerization. In EHEC the NPY(458) actin polymerization pathway is amplified by TccP/EspF(U), which is recruited to Tir via IRSp53 and/or insulin receptor tyrosine kinase substrate (IRTKS). Here we used C. rodentium to investigate the different Tir signalling pathways in vivo. Following infection with wild-type C. rodentium IRTKS, but not IRSp53, was recruited to the bacterial attachment sites. Similar results were seen after infection of human ileal explants with EHEC. Mutating Y471 or Y451 in Tir(CR) abolished recruitment of Nck and IRTKS respectively, but did not affect recruitment of N-WASP or A/E lesion formation. This suggests that despite their crucial role in actin polymerization in cultured cells the Tir:Nck and Tir:IRTKS pathways are not essential for N-WASP recruitment or A/E lesion formation in vivo. Importantly, wild-type C. rodentium out-competed the tir tyrosine mutants during mixed infections. These results uncouple the Tir:Nck and Tir:IRTKS pathways from A/E lesion formation in vivo but assign them an important in vivo role.

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The human pathogen enterohemorrhagic Escherichia coli (EHEC) O157:H7 colonizes human and animal gut via formation of attaching and effacing lesions. EHEC strains use a type III secretion system to translocate a battery of effector proteins into the mammalian host cell, which subvert diverse signal transduction pathways implicated in actin dynamics, phagocytosis, and innate immunity. The genomes of sequenced EHEC O157:H7 strains contain two copies of the effector protein gene nleH, which share 49% sequence similarity with the gene for the Shigella effector OspG, recently implicated in inhibition of migration of the transcriptional regulator NF-kappaB to the nucleus. In this study we investigated the role of NleH during EHEC O157:H7 infection of calves and lambs. We found that while EHEC DeltanleH colonized the bovine gut more efficiently than the wild-type strain, in lambs the wild-type strain exhibited a competitive advantage over the mutant during mixed infection. Using the mouse pathogen Citrobacter rodentium, which shares many virulence factors with EHEC O157:H7, including NleH, we observed that the wild-type strain exhibited a competitive advantage over the mutant during mixed infection. We found no measurable differences in T-cell infiltration or hyperplasia in colons of mice inoculated with the wild-type or the nleH mutant strain. Using NF-kappaB reporter mice carrying a transgene containing a luciferase reporter driven by three NF-kappaB response elements, we found that NleH causes an increase in NF-kappaB activity in the colonic mucosa. Consistent with this, we found that the nleH mutant triggered a significantly lower tumor necrosis factor alpha response than the wild-type strain.

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Enterohemorrhagic Escherichia coli (EHEC) O157:H7 is an important human pathogen that colonizes the gut mucosa via attaching and effacing (A/E) lesions; A/E lesion formation in vivo and ex vivo is dependent on the type III secretion system (T3SS) effector Tir. Infection of cultured cells by EHEC leads to induction of localized actin polymerization, which is dependent on Tir and a second T3SS effector protein, TccP, also known as EspF(U). Recently, cortactin was shown to bind both the N terminus of Tir and TccP via its SH3 domain and to play a role in EHEC-triggered actin polymerization in vitro. In this study, we investigated the recruitment of cortactin to the site of EHEC adhesion during infection of in vitro-cultured cells and mucosal surfaces ex vivo (using human terminal ileal in vitro organ cultures [IVOC]). We have shown that cortactin is recruited to the site of EHEC adhesion in vitro downstream of TccP and N-WASP. Deletion of the entire N terminus of Tir or replacing the N-terminal polyproline region with alanines did not abrogate actin polymerization or cortactin recruitment. In contrast, recruitment of cortactin to the site of EHEC adhesion in IVOC is TccP independent. These results imply that cortactin is recruited to the site of EHEC adhesion in vitro and ex vivo by different mechanisms and suggest that cortactin might have a role during EHEC infection of mucosal surfaces.