998 resultados para Human rhinovirus


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Mass spectrometry and fluorescent probes have provided direct evidence that alkylating agents permeate the protein capsid of naked viruses and chemically inactivate the nucleic acid. N-acetyl-aziridine and a fluorescent alkylating agent, dansyl sulfonate aziridine, inactivated three different viruses, flock house virus, human rhinovirus-14, and foot and mouth disease virus. Mass spectral studies as well as fluorescent probes showed that alkylation of the genome was the mechanism of inactivation. Because particle integrity was not affected by selective alkylation (as shown by electron microscopy and sucrose gradient experiments), it was reasoned that the dynamic nature of the viral capsid acts as a conduit to the interior of the particle. Potential applications include fluorescent labeling for imaging viral genomes in living cells, the sterilization of blood products, vaccine development, and viral inactivation in vivo.

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Neuropathogenicity of poliovirus can be attenuated by mutations in the internal ribosomal entry site (IRES) within the 5' nontranslated region of its genome. The Sabin vaccine strains used in prevention of poliomyelitis carry such mutations in their IRES elements. In addition, mutations within the structural and nonstructural proteins of Sabin strains may equally contribute to the attenuation phenotype. Despite their effectiveness as vaccines, the Sabin strains retain a neuropathogenic potential in animal models for poliomyelitis and, at a very low rate, they can cause poliomyelitis in vaccine recipients. The elimination of the neurocytopathic phenotype was achieved through the exchange of the entire poliovirus IRES with its counterpart from human rhinovirus type 2 without affecting growth properties in nonneuronal cells. The attenuating effect of the human rhinovirus type 2 IRES within the context of a poliovirus genome has been mapped to the 3' portion of this genetic element.

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O vírus da gripe é uma das maiores causas de morbilidade e mortalidade em todo o mundo, afetando um elevado número de indivíduos em cada ano. Em Portugal a vigilância epidemiológica da gripe é assegurada pelo Programa Nacional de Vigilância da Gripe (PNVG), através da integração da informação das componentes clínica e virológica, gerando informação detalhada relativamente à atividade gripal. A componente clínica é suportada pela Rede Médicos-Sentinela e tem um papel especialmente relevante por possibilitar o cálculo de taxas de incidência permitindo descrever a intensidade e evolução da epidemia de gripe. A componente virológica tem por base o diagnóstico laboratorial do vírus da gripe e tem como objetivos a deteção e caraterização dos vírus da gripe em circulação. Para o estudo mais completo da etiologia da síndrome gripal foi efectuado o diagnóstico diferencial de outros vírus respiratórios: vírus sincicial respiratório tipo A (RSV A) e B (RSV B), o rhinovírus humano (hRV), o vírus parainfluenza humano tipo 1 (PIV1), 2 (PIV2) e 3 (PIV3), o coronavírus humano (hCoV), o adenovírus (AdV) e o metapneumovirus humano (hMPV). Desde 2009 a vigilância da gripe conta também com a Rede Portuguesa de Laboratórios para o Diagnóstico da Gripe que atualmente é constituída por 15 hospitais onde se realiza o diagnóstico laboratorial da gripe. A informação obtida nesta Rede Laboratorial adiciona ao PNVG dados relativos a casos de doença respiratória mais severa com necessidade de internamento. Em 2011/2012, foi lançado um estudo piloto para vigiar os casos graves de gripe admitidos em Unidades de Cuidados Intensivos (UCI) que deu origem à atual Rede de vigilância da gripe em UCI constituída em 2015/2016 por 31 UCI (324 camas). Esta componente tem como objetivo a monitorização de novos casos de gripe confirmados laboratorialmente e admitidos em UCI, permitindo a avaliação da gravidade da doença associada à infeção pelo vírus da gripe. O Sistema da Vigilância Diária da Mortalidade constitui uma componente do PNVG que permite monitorizar a mortalidade semanal por “todas as causas” durante a época de gripe. É um sistema de vigilância epidemiológica que pretende detetar e estimar de forma rápida os impactos de eventos ambientais ou epidémicos relacionados com excessos de mortalidade. A notificação de casos de Síndrome Gripal (SG) e a colheita de amostras biológicas foi realizada em diferentes redes participantes do PNVG: Rede de Médicos-Sentinela, Rede de Serviços de Urgência/Obstetrícia, médicos do Projeto EuroEVA, Rede Portuguesa de Laboratórios para o Diagnóstico da Gripe e Rede vigilância da gripe em UCI. Na época de vigilância da gripe de 2015/2016 foram notificados 1.273 casos de SG, 87% dos quais acompanhados de um exsudado da nasofaringe para diagnóstico laboratorial. No inverno de 2015/2016 observou-se uma atividade gripal de baixa intensidade. O período epidémico ocorreu entre a semana 53/2015 e a semana 8/2016 e o valor mais elevado da taxa de incidência semanal de SG (72,0/100000) foi observado na semana 53/2015. De acordo com os casos notificados à Rede Médicos-Sentinela, o grupo etário dos 15 aos 64 anos foi o que apresentou uma incidência cumulativa mais elevada. O vírus da gripe foi detetado em 41,0% dos exsudados da nasofaringe recebidos tendo sido detetados outros vírus respiratórios em 24% destes. O vírus da gripe A(H1)pdm09 foi o predominantemente detetado em 90,4% dos casos de gripe. Foram também detetados outros vírus da gripe, o vírus B - linhagem Victoria (8%), o vírus A(H3) (1,3%) e o vírus B- linhagem Yamagata (0,5%). A análise antigénica dos vírus da gripe A(H1)pdm09 mostrou a sua semelhança com a estirpe vacinal 2015/2016 (A/California/7/2009), a maioria dos vírus pertencem ao novo grupo genético 6B.1, que foi o predominantemente detetado em circulação na Europa. Os vírus do tipo B apesar de detetados em número bastante mais reduzido comparativamente com o subtipo A(H1)pdm09, foram na sua maioria da linhagem Victoria que antigenicamente se distinguem da estirpe vacinal de 2015/2016 (B/Phuket/3073/2013). Esta situação foi igualmente verificada nos restantes países da Europa, Estados Unidos da América e Canadá. Os vírus do subtipo A(H3) assemelham-se antigenicamente à estirpe selecionada para a vacina de 2016/2017 (A/Hong Kong/4801/2014). Geneticamente a maioria dos vírus caraterizados pertencem ao grupo 3C.2a, e são semelhantes à estirpe vacinal para a época de 2016/2017. A avaliação da resistência aos antivirais inibidores da neuraminidase, não revelou a circulação de estirpes com diminuição da suscetibilidade aos inibidores da neuraminidase (oseltamivir e zanamivir). A situação verificada em Portugal é semelhante à observada a nível europeu. A percentagem mais elevada de casos de gripe foi verificada nos indivíduos com idade inferior a 45 anos. A febre, as cefaleias, o mal-estar geral, as mialgias, a tosse e os calafrios mostraram apresentar uma forte associação à confirmação laboratorial de um caso de gripe. Foi nos doentes com imunodeficiência congénita ou adquirida que a proporção de casos de gripe foi mais elevada, seguidos dos doentes com diabetes e obesidade. A percentagem total de casos de gripe em mulheres grávidas foi semelhante à observada nas mulheres em idade fértil não grávidas. No entanto, o vírus da gripe do tipo A(H1)pdm09 foi detetado em maior proporção nas mulheres grávidas quando comparado as mulheres não grávidas. A vacina como a principal forma de prevenção da gripe é especialmente recomendada em indivíduos com idade igual ou superior a 65 anos, doentes crónicos e imunodeprimidos, grávidas e profissionais de saúde. A vacinação antigripal foi referida em 13% dos casos notificados. A deteção do vírus da gripe ocorreu em 25% dos casos vacinados e sujeitos a diagnóstico laboratorial estando essencialmente associados ao vírus da gripe A(H1)pdm09, o predominante na época de 2015/2016. Esta situação foi mais frequentemente verificada em indivíduos com idade compreendida entre os 15 e 45 anos. A confirmação de gripe em indivíduos vacinados poderá estar relacionada com uma moderada efetividade da vacina antigripal na população em geral. A informação relativa à terapêutica antiviral foi indicada em 67% casos de SG notificados, proporção superior ao verificado em anos anteriores. Os antivirais foram prescritos a um número reduzido de doentes (9,0%) dos quais 45.0% referiam pelo menos a presença de uma doença crónica ou gravidez. O antiviral mais prescrito foi o oseltamivir. A pesquisa de outros vírus respiratórios nos casos de SG negativos para o vírus da gripe, veio revelar a circulação e o envolvimento de outros agentes virais respiratórios em casos de SG. Os vírus respiratórios foram detetados durante todo o período de vigilância da gripe, entre a semana 40/2015 e a semana 20/2016. O hRV, o hCoV e o RSV foram os agentes mais frequentemente detetados, para além do vírus da gripe, estando o RSV essencialmente associado a crianças com idade inferior a 4 anos de idade e o hRV e o hCoV aos adultos e população mais idosa (≥ 65 anos). A Rede Portuguesa de Laboratórios para o Diagnóstico da Gripe, efetuou o diagnóstico da gripe em 7443 casos de infeção respiratória sendo o vírus da gripe detetado em 1458 destes casos. Em 71% dos casos de gripe foi detetado o vírus da gripe A(H1)pdm09. Os vírus da gripe do tipo A(H3) foram detetados esporadicamente e em número muito reduzido (2%), e em 11% o vírus da gripe A (não subtipado). O vírus da gripe do tipo B foi detetado em 16% dos casos. A frequência de cada tipo e subtipo do vírus da gripe identificados na Rede Hospitalar assemelha-se ao observado nos cuidados de saúde primários (Rede Médicos-Sentinela e Serviços de Urgência). Foi nos indivíduos adultos, entre os 45-64 anos, que o vírus A(H1)pdm09 representou uma maior proporção dos casos de gripe incluindo igualmente a maior proporção de doentes que necessitaram de internamento hospitalar em unidades de cuidados intensivos. O vírus da gripe do tipo B esteve associado a casos de gripe confirmados nas crianças entre os 5 e 14 anos. Outros vírus respiratórios foram igualmente detetados sendo o RSV e os picornavírus (hRV, hEV e picornavírus) os mais frequentes e em co circulação com o vírus da gripe. Durante a época de vigilância da gripe, 2015/2016, não se observaram excessos de mortalidade semanais. Nas UCI verificou-se uma franca dominância do vírus da gripe A(H1)pdm09 (90%) e a circulação simultânea do vírus da gripe B (3%). A taxa de admissão em UCI oscilou entre 5,8% e 4,7% entre as semanas 53 e 12 tendo o valor máximo sido registado na semana 8 de 2016 (8,1%). Cerca de metade dos doentes tinha entre 45 e 64 anos. Os mais idosos (65+ anos) foram apenas 20% dos casos, o que não será de estranhar, considerando que o vírus da gripe A(H1)pdm09 circulou como vírus dominante. Aproximadamente 70% dos doentes tinham doença crónica subjacente, tendo a obesidade sido a mais frequente (37%). Comparativamente com a pandemia, em que circulou também o A(H1)pdm09, a obesidade, em 2015/2016, foi cerca de 4 vezes mais frequente (9,8%). Apenas 8% dos doentes tinha feito a vacina contra a gripe sazonal, apesar de mais de 70% ter doença crónica subjacente e de haver recomendações da DGS nesse sentido. A taxa de letalidade foi estimada em 29,3%, mais elevada do que na época anterior (23,7%). Cerca de 80% dos óbitos ocorreram em indivíduos com doença crónica subjacente que poderá ter agravado o quadro e contribuído para o óbito. Salienta-se a ausência de dados históricos publicados sobre letalidade em UCI, para comparação. Note-se que esta estimativa se refere a óbitos ocorridos apenas durante a hospitalização na UCI e que poderão ter ocorrido mais óbitos após a alta da UCI para outros serviços/enfermarias. Este sistema de vigilância da gripe sazonal em UCI poderá ser aperfeiçoado nas próximas épocas reduzindo a subnotificação e melhorando o preenchimento dos campos necessários ao estudo da doença. A época de vigilância da gripe 2015/2016 foi em muitas caraterísticas comparável ao descrito na maioria dos países europeus. A situação em Portugal destacou-se pela baixa intensidade da atividade gripal, pelo predomínio do vírus da gripe do subtipo A(H1)pdm09 acompanhada pela deteção de vírus do tipo B (linhagem Victoria) essencialmente no final da época gripal. A mortalidade por todas as causas durante a epidemia da gripe manteve-se dentro do esperado, não tendo sido observados excessos de mortalidade. Os vírus da gripe do subtipo predominante na época 2015/2016, A(H1)pdm09, revelaram-se antigénicamente semelhantes à estirpe vacinal. Os vírus da gripe do tipo B detetados distinguem-se da estirpe vacinal de 2015/2016. Este facto conduziu à atualização da composição da vacina antigripal para a época 2016/2017. A monitorização contínua da epidemia da gripe a nível nacional e mundial permite a cada inverno avaliar o impacto da gripe na saúde da população, monitorizar a evolução dos vírus da gripe e atuar de forma a prevenir e implementar medidas eficazes de tratamento da doença, especialmente quando esta se apresenta acompanhada de complicações graves.

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Rhinoviruses are important triggers of pulmonary exacerbations and possible contributors to long-term respiratory morbidity in cystic fibrosis (CF), but mechanisms leading to rhinovirus-induced CF exacerbations are poorly understood. It is hypothesised that there is a deficient innate immune response of the airway epithelium towards rhinovirus infection in CF.

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The normal function of human intercellular adhesion molecule-1 (ICAM-1) is to provide adhesion between endothelial cells and leukocytes after injury or stress. ICAM-1 binds to leukocyte function-associated antigen (LFA-1) or macrophage-1 antigen (Mac-1). However, ICAM-1 is also used as a receptor by the major group of human rhinoviruses and is a catalyst for the subsequent viral uncoating during cell entry. The three-dimensional atomic structure of the two amino-terminal domains (D1 and D2) of ICAM-1 has been determined to 2.2-Å resolution and fitted into a cryoelectron microscopy reconstruction of a rhinovirus–ICAM-1 complex. Rhinovirus attachment is confined to the BC, CD, DE, and FG loops of the amino-terminal Ig-like domain (D1) at the end distal to the cellular membrane. The loops are considerably different in structure to those of human ICAM-2 or murine ICAM-1, which do not bind rhinoviruses. There are extensive charge interactions between ICAM-1 and human rhinoviruses, which are mostly conserved in both major and minor receptor groups of rhinoviruses. The interaction of ICAMs with LFA-1 is known to be mediated by a divalent cation bound to the insertion (I)-domain on the α chain of LFA-1 and the carboxyl group of a conserved glutamic acid residue on ICAMs. Domain D1 has been docked with the known structure of the I-domain. The resultant model is consistent with mutational data and provides a structural framework for the adhesion between these molecules.

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Picornaviruses are the most common human viruses and the identification of the picornaviruses is nowadays based on molecular techniques, for example, reverse transcriptase polymerase chain reaction (RT-PCR). One aim of this thesis was to improve the identification of picornaviruses, especially rhino- and enteroviruses, with a real-time assay format and, also, to improve the differentiation of the viruses with genus-specific locked nucleic acid (LNA) probes. Another aim was to identify and study the causative agent of the enterovirus epidemics that appeared in Finland during seasons 2008-2010. In this thesis, the first version of picornavirus qRT-PCR with a melting curve analysis was used in a study of rhinovirus transmission within families with a rhinovirus positive index child where rhinovirus infection was monitored in all family members. In conclusion, rhinoviruses spread effectively within families causing mostly symptomatic infections in children and asymptomatic infections in adults. To improve the differentiation between rhino- and enterovirus the picornavirus qRT-PCR was modified with LNA-incorporated probes. The LNA probes were validated with picornavirus prototypes and different clinical specimen types. The LNA probe-based picornavirus qRT-PCR was able to differentiate all rhino- and enteroviruses correctly, which makes it suitable for diagnostic use. Moreover, in this thesis enterovirus outbreaks were studied with a well-observed method to create a strain-specific qRT-PCR from the typing region VP1 protein. In a hand-foot-and-mouth-disease (HFMD) outbreak in 2008, the causative agent was identified as CV-A6 and when the molecular evolution of the new HFMD CV-A6 strain was studied it was found that CV-A6 was the emerging agent for HFMD and onychomadesis. Furthermore, unusual E-30 meningitis epidemics that apeared during seasons 2009 and 2010 were studied with strain-specific qRT-PCR. The E-30 affected mostly adolescents and was probably spread in sports teams.

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Fast-track Diagnostics respiratory pathogens (FTDRP) multiplex real-time RT-PCR assay was compared with in-house singleplex real-time RT-PCR assays for detection of 16 common respiratory viruses. The FTDRP assay correctly identified 26 diverse respiratory virus strains, 35 of 41 (85%) external quality assessment samples spiked with cultured virus and 232 of 263 (88%) archived respiratory specimens that tested positive for respiratory viruses by in-house assays. Of 308 prospectively tested respiratory specimens selected from children hospitalized with acute respiratory illness, 270 (87.7%) and 265 (86%) were positive by FTDRP and in-house assays for one or more viruses, respectively, with combined test results showing good concordance (K=0.812, 95% CI = 0.786-0.838). Individual FTDRP assays for adenovirus, respiratory syncytial virus and rhinovirus showed the lowest comparative sensitivities with in-house assays, with most discrepancies occurring with specimens containing low virus loads and failed to detect some rhinovirus strains, even when abundant. The FTDRP enterovirus and human bocavirus assays appeared to be more sensitive than the in-house assays with some specimens. With the exceptions noted above, most FTDRP assays performed comparably with in-house assays for most viruses while offering enhanced throughput and easy integration by laboratories using conventional real-time PCR instrumentation. Published by Elsevier B.V.

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BACKGROUND Rhinovirus infections are the dominant cause of asthma exacerbations, and deficient virus induction of IFN-α/β/λ in asthmatic patients is important in asthma exacerbation pathogenesis. Mechanisms causing this interferon deficiency in asthmatic patients are unknown. OBJECTIVE We sought to investigate the expression of suppressor of cytokine signaling (SOCS) 1 in tissues from asthmatic patients and its possible role in impaired virus-induced interferon induction in these patients. METHODS We assessed SOCS1 mRNA and protein levels in vitro, bronchial biopsy specimens, and mice. The role of SOCS1 was inferred by proof-of-concept studies using overexpression with reporter genes and SOCS1-deficient mice. A nuclear role of SOCS1 was shown by using bronchial biopsy staining, overexpression of mutant SOCS1 constructs, and confocal microscopy. SOCS1 levels were also correlated with asthma-related clinical outcomes. RESULTS We report induction of SOCS1 in bronchial epithelial cells (BECs) by asthma exacerbation-related cytokines and by rhinovirus infection in vitro. We found that SOCS1 was increased in vivo in bronchial epithelium and related to asthma severity. SOCS1 expression was also increased in primary BECs from asthmatic patients ex vivo and was related to interferon deficiency and increased viral replication. In primary human epithelium, mouse lung macrophages, and SOCS1-deficient mice, SOCS1 suppressed rhinovirus induction of interferons. Suppression of virus-induced interferon levels was dependent on SOCS1 nuclear translocation but independent of proteasomal degradation of transcription factors. Nuclear SOCS1 levels were also increased in BECs from asthmatic patients. CONCLUSION We describe a novel mechanism explaining interferon deficiency in asthmatic patients through a novel nuclear function of SOCS1 and identify SOCS1 as an important therapeutic target for asthma exacerbations.

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This study aimed at evaluating whether human papillomavirus (HPV) groups and E6/E7 mRNA of HPV 16, 18, 31, 33, and 45 are prognostic of cervical intraepithelial neoplasia (CIN) 2 outcome in women with a cervical smear showing a low-grade squamous intraepithelial lesion (LSIL). This cohort study included women with biopsy-confirmed CIN 2 who were followed up for 12 months, with cervical smear and colposcopy performed every three months. Women with a negative or low-risk HPV status showed 100% CIN 2 regression. The CIN 2 regression rates at the 12-month follow-up were 69.4% for women with alpha-9 HPV versus 91.7% for other HPV species or HPV-negative status (P < 0.05). For women with HPV 16, the CIN 2 regression rate at the 12-month follow-up was 61.4% versus 89.5% for other HPV types or HPV-negative status (P < 0.05). The CIN 2 regression rate was 68.3% for women who tested positive for HPV E6/E7 mRNA versus 82.0% for the negative results, but this difference was not statistically significant. The expectant management for women with biopsy-confirmed CIN 2 and previous cytological tests showing LSIL exhibited a very high rate of spontaneous regression. HPV 16 is associated with a higher CIN 2 progression rate than other HPV infections. HPV E6/E7 mRNA is not a prognostic marker of the CIN 2 clinical outcome, although this analysis cannot be considered conclusive. Given the small sample size, this study could be considered a pilot for future larger studies on the role of predictive markers of CIN 2 evolution.

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Understanding the molecular mechanisms of oral carcinogenesis will yield important advances in diagnostics, prognostics, effective treatment, and outcome of oral cancer. Hence, in this study we have investigated the proteomic and peptidomic profiles by combining an orthotopic murine model of oral squamous cell carcinoma (OSCC), mass spectrometry-based proteomics and biological network analysis. Our results indicated the up-regulation of proteins involved in actin cytoskeleton organization and cell-cell junction assembly events and their expression was validated in human OSCC tissues. In addition, the functional relevance of talin-1 in OSCC adhesion, migration and invasion was demonstrated. Taken together, this study identified specific processes deregulated in oral cancer and provided novel refined OSCC-targeting molecules.

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Human bocavirus 1 (HBoV1) is associated with respiratory infections worldwide, mainly in children. Similar to other parvoviruses, it is believed that HBoV1 can persist for long periods of time in humans, probably through maintaining concatemers of the virus single-stranded DNA genome in the nuclei of infected cells. Recently, HBoV-1 was detected in high rates in adenoid and palatine tonsils samples from patients with chronic adenotonsillar diseases, but nothing is known about the virus replication levels in those tissues. A 3-year prospective hospital-based study was conducted to detect and quantify HBoV1 DNA and mRNAs in samples of the adenoids (AD), palatine tonsils (PT), nasopharyngeal secretions (NPS), and peripheral blood (PB) from patients undergoing tonsillectomy for tonsillar hypertrophy or recurrent tonsillitis. HBoV1 was detected in 25.3% of the AD samples, while the rates of detection in the PT, NPS, and PB samples were 7.2%, 10.5%, and 1.7%, respectively. The viral loads were higher in AD samples, and 27.3% of the patients with HBoV had mRNA detectable in this tissue. High viral loads and detectable mRNA in the AD were associated with HBoV1 detection in the other sample sites. The adenoids are an important site of HBoV1 replication and persistence in children with tonsillar hypertrophy. The adenoids contain high HBoV1 loads and are frequently positive for HBoV mRNA, and this is associated with the detection of HBoV1 in secretions.

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Hsp90 is a molecular chaperone essential for cell viability in eukaryotes that is associated with the maturation of proteins involved in important cell functions and implicated in the stabilization of the tumor phenotype of various cancers, making this chaperone a notably interesting therapeutic target. Celastrol is a plant-derived pentacyclic triterpenoid compound with potent antioxidant, anti-inflammatory and anticancer activities; however, celastrol's action mode is still elusive. In this work, we investigated the effect of celastrol on the conformational and functional aspects of Hsp90α. Interestingly, celastrol appeared to target Hsp90α directly as the compound induced the oligomerization of the chaperone via the C-terminal domain as demonstrated by experiments using a deletion mutant. The nature of the oligomers was investigated by biophysical tools demonstrating that a two-fold excess of celastrol induced the formation of a decameric Hsp90α bound throughout the C-terminal domain. When bound, celastrol destabilized the C-terminal domain. Surprisingly, standard chaperone functional investigations demonstrated that neither the in vitro chaperone activity of protecting against aggregation nor the ability to bind a TPR co-chaperone, which binds to the C-terminus of Hsp90α, were affected by celastrol. Celastrol interferes with specific biological functions of Hsp90α. Our results suggest a model in which celastrol binds directly to the C-terminal domain of Hsp90α causing oligomerization. However, the ability to protect against protein aggregation (supported by our results) and to bind to TPR co-chaperones are not affected by celastrol. Therefore celastrol may act primarily by inducing specific oligomerization that affects some, but not all, of the functions of Hsp90α. To the best of our knowledge, this study is the first work to use multiple probes to investigate the effect that celastrol has on the stability and oligomerization of Hsp90α and on the binding of this chaperone to Tom70. This work provides a novel mechanism by which celastrol binds Hsp90α.

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Lawsonia inermis mediated synthesis of silver nanoparticles (Ag-NPs) and its efficacy against Candida albicans, Microsporum canis, Propioniabacterium acne and Trichophyton mentagrophytes is reported. A two-step mechanism has been proposed for bioreduction and formation of an intermediate complex leading to the synthesis of capped nanoparticles was developed. In addition, antimicrobial gel for M. canis and T. mentagrophytes was also formulated. Ag-NPs were synthesized by challenging the leaft extract of L. inermis with 1 mM AgNO₃. The Ag-NPs were characterized by Ultraviolet-Visible (UV-Vis) spectrophotometer and Fourier transform infrared spectroscopy (FTIR). Transmission electron microscopy (TEM), nanoparticle tracking and analysis sytem (NTA) and zeta potential was measured to detect the size of Ag-NPs. The antimicrobial activity of Ag-NPs was evaluated by disc diffusion method against the test organisms. Thus these Ag-NPs may prove as a better candidate drug due to their biogenic nature. Moreover, Ag-NPs may be an answer to the drug-resistant microorganisms.

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Avian pathogenic Escherichia coli (APEC) strains belong to a category that is associated with colibacillosis, a serious illness in the poultry industry worldwide. Additionally, some APEC groups have recently been described as potential zoonotic agents. In this work, we compared APEC strains with extraintestinal pathogenic E. coli (ExPEC) strains isolated from clinical cases of humans with extra-intestinal diseases such as urinary tract infections (UTI) and bacteremia. PCR results showed that genes usually found in the ColV plasmid (tsh, iucA, iss, and hlyF) were associated with APEC strains while fyuA, irp-2, fepC sitDchrom, fimH, crl, csgA, afa, iha, sat, hlyA, hra, cnf1, kpsMTII, clpVSakai and malX were associated with human ExPEC. Both categories shared nine serogroups (O2, O6, O7, O8, O11, O19, O25, O73 and O153) and seven sequence types (ST10, ST88, ST93, ST117, ST131, ST155, ST359, ST648 and ST1011). Interestingly, ST95, which is associated with the zoonotic potential of APEC and is spread in avian E. coli of North America and Europe, was not detected among 76 APEC strains. When the strains were clustered based on the presence of virulence genes, most ExPEC strains (71.7%) were contained in one cluster while most APEC strains (63.2%) segregated to another. In general, the strains showed distinct genetic and fingerprint patterns, but avian and human strains of ST359, or ST23 clonal complex (CC), presented more than 70% of similarity by PFGE. The results demonstrate that some zoonotic-related STs (ST117, ST131, ST10CC, ST23CC) are present in Brazil. Also, the presence of moderate fingerprint similarities between ST359 E. coli of avian and human origin indicates that strains of this ST are candidates for having zoonotic potential.