6 resultados para Pili

em Repositório Institucional UNESP - Universidade Estadual Paulista "Julio de Mesquita Filho"


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Atypical enteropathogenic Escherichia coli (aEPEC) strains are diarrheal pathogens that lack bundle-forming pilus production but possess the virulence-associated locus of enterocyte effacement. aEPEC strain 1551-2 produces localized adherence (LA) on HeLa cells; however, its isogenic intimin (eae) mutant produces a diffuse-adherence (DA) pattern. In this study, we aimed to identify the DA-associated adhesin of the 1551-2 eae mutant. Electron microscopy of 1551-2 identified rigid rod-like pili composed of an 18-kDa protein, which was identified as the major pilin subunit of type 1 pilus (T1P) by mass spectrometry analysis. Deletion of fimA in 1551-2 affected biofilm formation but had no effect on adherence properties. Analysis of secreted proteins in supernatants of this strain identified a 150-kDa protein corresponding to SslE, a type 2 secreted protein that was recently reported to be involved in biofilm formation of rabbit and human EPEC strains. However, neither adherence nor biofilm formation was affected in a 1551-2 sslE mutant. We then investigated the role of the EspA filament associated with the type 3 secretion system (T3SS) in DA by generating a double eae espA mutant. This strain was no longer adherent, strongly suggesting that the T3SS translocon is the DA adhesin. In agreement with these results, specific anti-EspA antibodies blocked adherence of the 1551-2 eae mutant. Our data support a role for intimin in LA, for the T3SS translocon in DA, and for T1P in biofilm formation, all of which may act in concert to facilitate host intestinal colonization by aEPEC strains. ©2013, American Society for Microbiology.

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

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Foram utilizadas 99 vacas prenhes distribuídas em oito grupos que receberam os seguintes tratamentos: grupo I, com 29 vacas não vacinadas e seus bezerros que não receberam probiótico, ficando como controle; grupo II, com 10 vacas vacinadas e seus bezerros que não receberam probiótico; grupos III, IV e V, com 10 animais cada, vacas vacinadas e seus bezerros que receberam probiótico durante 5, 15 e 30 dias, respectivamente; os grupos VI, VII e VIII, com 10 animais cada, vacas não vacinadas e seus bezerros que receberam probiótico durante 5, 15 e 30 dias, respectivamente. Cada animal dos grupos vacinados recebeu duas doses vacinais contendo os pili K99 e A14 de Escherichia coli na dose de 5,0ml por via subcutânea. O probiótico contendo Ruminobacter amylophilum, Ruminobacter succinogenes, Succinovibrio dextrinosolvens, Bacillus cereus, Lactobacillus acidophilus e Streptococcus faecium, na dose de 3,0× 10(8) células vivas (UFC) de cada amostra em 250ml de leite, era adiministrado por via oral. Os animais foram observados diariamente e foram determinados os títulos de anticorpos anti-K99 e anti-A14 no soro e no colostro. Anotaram-se os pesos dos bezerros ao nascimento e aos 30 dias. Os resultados mostraram que a associação de vacina com probiótico administrado por 15 e 30 dias foram os tratamentos mais eficientes no controle da diarréia e ganho de peso.

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Xylella fastidiosa 9a5c (XF-9a5c) and Xanthomonas axonopodis pv. citri (XAC) are bacteria that infect citrus plants. Sequencing of the genomes of these strains is complete and comparative analyses are now under way with the genomes of other bacteria of the same genera. In this review, we present an overview of this comparative genomic work. We also present a detailed genomic comparison between XF-9a5a and XAC. Based on this analysis, genes and operons were identified that might be relevant for adaptation to citrus. XAC has two copies of a type II secretion system, a large number of cell wall-degrading enzymes and sugar transporters, a complete energy metabolism, a whole set of avirulence genes associated with a type III secretion system, and a complete flagellar and chemotatic system. By contrast, XF-9a5c possesses more genes involved with type IV pili biosynthesis than does XAC, contains genes encoding for production of colicins, and has 4 copies of Type I restriction/modification system while XAC has only one.

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A total of 99 pregnant cows were divided into eight groups submitted to the following treatments: group I (n = 29) consisted of unvaccinated cows whose calves did not receive a probiotic and was used as control. Group II (n = 10) consisted of vaccinated cows whose calves did not receive a probiotic. Groups III, IV and V (n = 10 neach) consisted of vaccinated cows whose calves received a probiotic for 5, 15 and 30 days, respectively. Groups VI, VII and VIII (n = 10 each) consisted of unvaccinated cows whose calves received a probiotic for 5, 15 and 30 days, respectively. Each animal in the vaccinated groups received two 5.0 ml vaccine doses containing pili K99 and A14 of Escherichia coli by the subcutaneous route. The probiotic containing Lactobacillus acidophilus at the dose of 2.0 x 10(8) live cells in 250 ml milk, was administered orally. All animals were observed clinically and bacteriologically and anti-K99 and anti-A14 antibody titers were determined in serum and colostrum. Mean calf weight was measured at birth and at 30 days of age. The results showed that a combination of the vaccine with the probiotic administered for 15 and 30 days was the most efficient treatment for the control of diarrhea.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)