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1.
J Virol Methods ; 300: 114385, 2022 02.
Artigo em Inglês | MEDLINE | ID: mdl-34843824

RESUMO

Outbreaks of duck Tembusu virus (DTMUV) have caused serious economic losses in China since 2010. In this study, an infectious clone of the DTMUV BZ-2010strain, isolated from layer cherry duck in China, was constructed using the bacterium-free infectious subgenomic-amplicons method. The subgenomic-amplicons of the human cytomegalovirus promoter (pCMV) at the 5' terminus of the first DNA fragment, the entire genome of DTMUV, and the hepatitis delta ribozyme followed by the simian virus 40 polyadenylation signal (HDR/SV40pA) at the 3' terminus of the last DNA fragment were synthesized and amplified by PCR in three DNA fragments. The pCMV and HDR/SV40pA were used to drive the viral RNA transcription and generate a full-length RNA transcript of the virus, and were found to be effective in reassembling DTMUV in duck embryo fibroblast cells. The RNA transcripts from the infection clone were infectious in duck embryo fibroblast cells, generating the reconstituted DTMUV. This study provided a valuable reverse genetic tool for the further study DTMUV pathogenesis.


Assuntos
Infecções por Flavivirus , Flavivirus , Doenças das Aves Domésticas , Animais , Patos , Fibroblastos , Flavivirus/genética , Infecções por Flavivirus/veterinária , Humanos , Genética Reversa
2.
Sci Rep ; 11(1): 11769, 2021 06 03.
Artigo em Inglês | MEDLINE | ID: mdl-34083583

RESUMO

To study the pathogenicity of new duck reovirus (NDRV) to chickens, eighty 3-day-old SPF chickens were equally divided into two groups. The experimental group was inoculated with a NDRV challenge strain of 100 µL (10-5.00 ELD50/0.1 mL) by the subcutaneous (s.c.) route, and the control group was inoculated with 100 µL of sterile phosphate-buffered saline (PBS) by the same route. In the experimental group, chickens exhibited introflexion of claws, performing of splits, stunting syndrome, weight loss and death. Gross lesions such as enlargement and yellowish-white focal necroses were observed in the liver and spleen. Microscopic changes were typical including varying degrees of hepatocyte steatosis and necrosis, splenic lymphocyte necrosis, interstitial pneumonia. Viral loads were detected in lung, liver, heart, spleen, duodenum, burse and kidney. The liver and spleen viral loads remained a much higher level and maintained for a longer time, suggesting that these tissues might be the target organs. In summary, NDRV can cause systemic infections and death in chickens, which indicated that chickens may be infected by NDRV in poultry production.


Assuntos
Galinhas , Doenças das Aves Domésticas/transmissão , Doenças das Aves Domésticas/virologia , Infecções por Reoviridae/veterinária , Reoviridae/patogenicidade , Animais , Anticorpos Neutralizantes/sangue , Anticorpos Neutralizantes/imunologia , Anticorpos Antivirais/sangue , Anticorpos Antivirais/imunologia , Biópsia , Imuno-Histoquímica , Mortalidade , Doenças das Aves Domésticas/diagnóstico , Doenças das Aves Domésticas/mortalidade , Reoviridae/classificação , Reoviridae/imunologia , Carga Viral
3.
Arch Virol ; 165(9): 2087-2089, 2020 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-32524264

RESUMO

A novel picornavirus, referred to as Duck/FC22/China/2017, was isolated from breeding ducks in China and genetically characterized by conducting metagenomics studies. The complete genome consists of a single-stranded, positive-sense RNA made up of 7448 nucleotides (nt) and follows the common picornavirus genome layout: 5' UTR-VP0-VP3-VP1-2A-2B-2C-3A-3B-3C-3D-3' UTR. A typical type-IV internal ribosomal entry site and a conserved 'barbell-like' structure were identified in the 5' UTR and 3' UTR, respectively. The unique 6423-nt open reading frame was predicted to encode a 2141-amino-acid (aa) polyprotein precursor. A pairwise aa sequence identity comparison and phylogenetic analysis revealed that Duck/FC22/China/2017 is closely related to duck aalivirus, duck hepatitis A virus, turkey avisivirus, and red-crowned crane picornavirus.


Assuntos
Genoma Viral , Infecções por Picornaviridae/veterinária , Picornaviridae/isolamento & purificação , Doenças das Aves Domésticas/virologia , Animais , Sequência de Bases , China , Patos/virologia , Filogenia , Picornaviridae/classificação , Picornaviridae/genética , Infecções por Picornaviridae/virologia , Proteínas Virais/genética
4.
Arch Virol ; 164(12): 2995-3006, 2019 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-31576460

RESUMO

Reticuloendotheliosis virus (REV) is an important representative avian retrovirus. To improve our understanding of the host cellular responses to virus infection and the pathogenesis of REV infection, we applied isobaric tags for relative and absolute quantification (iTRAQ) labeling coupled with multidimensional liquid chromatography-tandem mass spectrometry to detect changes in protein levels in chicken embryo fibroblast cells (CEFs) that were infected with REV or mock infected. In total, 605 cellular proteins were differentially expressed, among which 196, 345, and 286 were differentially expressed in REV-infected CEFs at 1, 3, and 5 days postinfection, respectively. Gene Ontology analysis indicated that the biological processes of the differentially expressed proteins were primarily related to cellular processes, metabolic processes, biological regulation, response to stimulus, and immune system processes and that the molecular functions in which the differentially expressed proteins were mainly involved were binding, catalytic activity, and enzyme regulator activity. Pathway analysis showed that a total of 143, 167, and 179 pathways, including protein digestion and absorption, focal adhesion, ECM-receptor interaction, cytokine-cytokine receptor interaction, Toll-like receptors, and JAK-STAT signaling, were enriched in REV-infected CEFs at 1, 3, and 5 days postinfection, respectively. In conclusion, this study is the first to analyze the protein profile of REV-infected CEFs using an iTRAQ approach. The results of this study provide valuable information for better understanding the host response to REV infection.


Assuntos
Fibroblastos/metabolismo , Doenças das Aves Domésticas/genética , Proteoma/genética , Vírus da Reticuloendoteliose/fisiologia , Infecções por Retroviridae/veterinária , Animais , Embrião de Galinha , Galinhas , Fibroblastos/química , Fibroblastos/virologia , Doenças das Aves Domésticas/metabolismo , Doenças das Aves Domésticas/virologia , Proteoma/química , Proteoma/metabolismo , Proteômica , Vírus da Reticuloendoteliose/genética , Infecções por Retroviridae/genética , Infecções por Retroviridae/metabolismo , Infecções por Retroviridae/virologia , Espectrometria de Massas em Tandem
5.
Microb Pathog ; 136: 103707, 2019 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-31491549

RESUMO

Riemerella anatipestifer (R. anatipestifer) causes septicemia and infectious serositis in domestic ducks, leading to high mortality and great economic losses worldwide. Vaccination is currently considered the best strategy to prevent R. anatipestifer infection in ducklings. In this study, we fused the duck IgY Fc gene to the outer membrane protein A (ompA) of R. anatipestifer. The eukaryotic expression plasmid carrying the fusion gene was transformed into Pichia pastoris (P. pastoris) to express the recombinant ompA and ompA-Fc proteins. Then, the effects of fused Fc on the vitality and antigen processing efficiency of duck peritoneal macrophages (PMø) were evaluated in vitro, whereas their immunogenicity was evaluated in vivo. Furthermore, Schisandra chinensis polysaccharide (SCP) was used to evaluate its immune-conditioning effects on the activation of PMø. SCP was also used as adjuvant to investigate immunomodulation on immunoresponses induced by the fused ompA-Fc in ducklings. The conventional Freund's incomplete adjuvant served as the control of SCP. Notably, ompA-Fc promoted phagocytosis of PMø and significantly increased serum antibody titers, CD4+ and CD8+ T-lymphocyte counts, lymphocyte transformation rate, and serum levels of IL-2 and IL-4. In addition, ducklings injected with the ompA-Fc vaccine exhibited considerably greater resistance to the R. anatipestifer challenge than those that received vaccines based on standalone ompA. Of note, SCP was demonstrated to boost the secretion of nitric oxide (NO), IL-1ß, IL-6, TNF-α, and IFN-ß by duck macrophages. In addition, the supplementation of SCP adjuvant to the ompA-Fc vaccines led to the further enhancement of immune response and vaccine protection. The dose of 200 µg/mL showed the most pronounced effects. This study provided valuable insights into protective strategies against R. anatipestifer infection.


Assuntos
Proteínas da Membrana Bacteriana Externa/imunologia , Vacinas Bacterianas/imunologia , Vacinas Bacterianas/isolamento & purificação , Doenças das Aves/prevenção & controle , Patos , Infecções por Flavobacteriaceae/veterinária , Riemerella/imunologia , Adjuvantes Imunológicos/administração & dosagem , Adjuvantes Imunológicos/isolamento & purificação , Animais , Anticorpos Antibacterianos/sangue , Proteínas da Membrana Bacteriana Externa/genética , Vacinas Bacterianas/genética , Linfócitos T CD4-Positivos/imunologia , Linfócitos T CD8-Positivos/imunologia , Citocinas/metabolismo , Infecções por Flavobacteriaceae/prevenção & controle , Fragmentos Fc das Imunoglobulinas/genética , Imunoglobulinas/genética , Macrófagos Peritoneais/imunologia , Polissacarídeos/administração & dosagem , Polissacarídeos/imunologia , Proteínas Recombinantes de Fusão/genética , Proteínas Recombinantes de Fusão/imunologia , Riemerella/genética , Schisandra/química , Vacinas Sintéticas/genética , Vacinas Sintéticas/imunologia , Vacinas Sintéticas/isolamento & purificação
6.
Biomed Res Int ; 2019: 1582709, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30809531

RESUMO

Outbreaks of duck Tembusu virus (DTMUV) have caused substantial economic losses in the major duck-producing regions of China since 2010. To improve our understanding of the host cellular responses to virus infection and the pathogenesis of DTMUV infection, we applied isobaric tags for relative and absolute quantification (iTRAQ) labeling coupled with multidimensional liquid chromatography-tandem mass spectrometry to detect the protein changes in duck embryo fibroblast cells (DEFs) infected and mock-infected with DTMUV. In total, 434 cellular proteins were differentially expressed, among which 116, 76, and 339 proteins were differentially expressed in the DTMUV-infected DEFs at 12, 24, and 42 hours postinfection, respectively. The Gene Ontology analysis indicated that the biological processes of the differentially expressed proteins were primarily related to cellular processes, metabolic processes, biological regulation, response to stimulus, and cellular organismal processes and that the molecular functions in which the differentially expressed proteins were mainly involved were binding and catalytic activity. Some selected proteins that were found to be differentially expressed in DTMUV-infected DEFs were further confirmed by real-time PCR. The results of this study provide valuable insight into DTMUV-host interactions. This could lead to a better understanding of DTMUV infection mechanisms.


Assuntos
Patos/virologia , Flavivirus/genética , Interações Hospedeiro-Patógeno/genética , Proteoma/genética , Animais , China , Cromatografia Líquida , Patos/genética , Embrião não Mamífero/virologia , Fibroblastos/virologia , Flavivirus/patogenicidade , Proteômica/métodos , Espectrometria de Massas em Tandem
7.
PLoS One ; 13(11): e0208314, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30496273

RESUMO

The natural polysaccharides extracted from the pollen of Pinus massoniana (TPPPS) have been shown to be a promising immune adjuvant against several viral chicken diseases. However, the exact mechanism through which TPPPS enhances the host immune response in chicken remains poorly understood. In the current study, chicken peripheral blood lymphocytes were treated with varying concentrations of TPPPS and pro-inflammatory cytokines such as IFN-γ, iIL-2 and IL-6 were measured to determine the optimal dose of the polysaccharide. A comparative analysis was subsequently performed between the proteome of lymphocytes subjected to the best treatment conditions and that of untreated cells. Protein identification and quantitation revealed a panel of three up-regulated and seven down-regulated candidates in TPPPS-treated chicken peripheral blood lymphocytes. Further annotation and functional analysis suggested that a number of those protein candidates were involved in the regulation of host innate immune response, inflammation and other immune-related pathways. We believe that our results could serve as a stepping stone for further research on the immune-enhancing properties of TPPPS and other polysaccharide-based immune adjuvants.


Assuntos
Adjuvantes Imunológicos/farmacologia , Galinhas/imunologia , Linfócitos/efeitos dos fármacos , Polissacarídeos/farmacologia , Doenças das Aves Domésticas/imunologia , Adjuvantes Imunológicos/química , Animais , Galinhas/virologia , Citocinas/análise , Citocinas/imunologia , Imunidade Inata/efeitos dos fármacos , Linfócitos/imunologia , Linfócitos/virologia , Pinus/química , Pólen/química , Polissacarídeos/química , Doenças das Aves Domésticas/tratamento farmacológico , Doenças das Aves Domésticas/virologia , Proteômica
8.
Transbound Emerg Dis ; 65(5): 1170-1174, 2018 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-29923685

RESUMO

Gyrovirus 3 (GyV3) has been identified in faeces from children with acute gastroenteritis. However, whether GyV3 is prevalent in poultry has not been determined to date. To the best of our knowledge, this study is the first to isolate GyV3 from commercial broiler chickens with transmissible viral proventriculitis (TVP) in China. The complete genome of the virus shares 98.4% sequence identity with the FecGy strain that causes acute gastroenteritis in children. Epidemiological investigation from 2013 to 2017 revealed that the infection rate of GyV3 reached 12.5% (42/336) in commercial broiler chickens with TVP, indicating that the infection of GyV3 was ubiquitous in chickens. The emergence of GyV3 in commercial broiler chickens should be highly concerning for public health.


Assuntos
Galinhas/virologia , Infecções por Circoviridae/veterinária , Gyrovirus/isolamento & purificação , Doenças das Aves Domésticas/virologia , Proventrículo/virologia , Animais , China/epidemiologia , Infecções por Circoviridae/epidemiologia , Fezes/virologia , Doenças das Aves Domésticas/epidemiologia
9.
Immunol Invest ; 47(5): 443-456, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-29768058

RESUMO

Immunosuppressive virus, which can cause suppressed immunity and vaccination failure, frequently occurs in chicken flocks and seriously destroys the poultry industry. Our previous studies have reported that Taishan Pinus massoniana pollen polysaccharide (TPPPS) possess immunomodulatory effects and improve the immune effects of vaccines. In this study, avian leukosis virus subgroup B (ALV-B) was chosen as immunosuppressive virus to artificially establish immunosuppressive models in chickens, and the immune modulatory ability of TPPPS on the immune response of chickens was evaluated. Four randomly assigned groups (Group I-IV) of these immunosuppressed chickens were administered with TPPPS at doses of 0, 100, 200, and 400 mg/kg (every kilogram chick), respectively. Group V was administered with saline as control. At seven day old, 10 chickens randomly selected from Group I-V were inoculated with the attenuated Newcastle disease (ND) vaccine. The results showed that during the monitoring period, TPPPS significantly enhanced weight of immune organs, peripheral lymphocyte proliferation, the percentage of CD4+ and the ratio of CD4+/CD8+, IL-2 and IFN-γ production, and ALV-B antibody positive rate of chickens in a dose-dependent manner, with 400 mg/kg TPPPS being the most effective. In addition, the antibody titer against Newcastle disease virus (NDV) in Group IV with 400 mg/kg was significantly higher than those in other groups. We observed the stronger immunity in the TPPPS group, which indicates that TPPPS could be used as an immunoenhancer to relieve immunosuppression caused by ALV-B in the poultry industry.


Assuntos
Vírus da Leucose Aviária/imunologia , Leucose Aviária/imunologia , Leucose Aviária/virologia , Galinhas/imunologia , Galinhas/virologia , Imunomodulação , Pólen/imunologia , Polissacarídeos/imunologia , Adjuvantes Imunológicos , Animais , Anticorpos Antivirais/imunologia , Antígenos de Plantas/imunologia , Leucose Aviária/metabolismo , Citocinas/metabolismo , Sistema Imunitário/citologia , Sistema Imunitário/imunologia , Sistema Imunitário/metabolismo , Ativação Linfocitária , Linfócitos/imunologia , Linfócitos/metabolismo , Pinus , Carga Viral , Vacinas Virais/administração & dosagem , Replicação Viral/imunologia
10.
Biomed Chromatogr ; 32(4)2018 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-29178369

RESUMO

A specific, sensitive and stable high-performance liquid chromatography (HPLC)-based analytical method was established to determine the level of pefloxacin mesylate (PM) in the plasma and various tissues of chickens. Chickens were randomly assigned to 12 equal experiment groups, including 11 treatment groups and one control group. The chickens in the treatment groups received oral administration of PM and were sacrificed at different pre-determined time points, with their blood and various organs harvested, extracted and analyzed by HPLC to quantify the level of the residual antibiotic. Method validation studies indicated that the HPLC measurement showed excellent precision, reproducibility, stability and robustness. The obtained pharmacokinetic parameters suggested that PM reached peak levels in various tissues within 1-2 h after its oral administration, and was mainly concentrated in liver and kidney. The antibiotic was also found to be cleared from chicken crureus, brain, testes, ovaries and pancreas at higher rates compared with other organs. Overall, the rapid accumulation of PM could at least be partially attributed to its relatively slow organ clearance. These results could serve as a useful guidance for the rational use of PM and other quinolone-derived antimicrobials in the treatment of infectious diseases in chickens and other animals.


Assuntos
Galinhas/metabolismo , Cromatografia Líquida de Alta Pressão/métodos , Pefloxacina/análise , Pefloxacina/farmacocinética , Animais , Feminino , Modelos Lineares , Masculino , Pefloxacina/química , Reprodutibilidade dos Testes , Sensibilidade e Especificidade , Distribuição Tecidual
11.
Microb Pathog ; 112: 70-75, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28935204

RESUMO

Robinia pseudoacacia flower, a common component in traditional Chinese medicine, has long been well-known for its high pharmaceutical value. This study aimed to assess the immunopotentiating effects of Taishan Robinia Pseudoacacia polysaccharides (TRPPS) in rabbits inoculated with a rabbit haemorrhagic disease virus (RHDV) inactivated vaccine. The rabbits were administered with the RHDV vaccine in conjunction with varying concentrations of TRPPS, and their blood samples were collected at different time points to analyze the ratio and number of blood lymphocytes. In addition, sera were prepared and analyzed to determine the overall antibody titer and the level of IL-2, a cytokine commonly used as an indicator of immune activity. The various TRPPS-supplemented vaccines were shown to be more effective in enhancing the immune functions of the inoculated rabbits compared to their polysaccharide-free counterpart, with 200 mg/mL of TRPPS exhibiting the most pronounced benefits that were comparable to those of propolis. In addition, the TRPPS-supplemented RHDV inactivated vaccines could significantly improve the survival rates of the immunized rabbits against RHDV infection. Our studies offered convincing experimental evidence for the development of TRPPS as a new type of plant-derived immunopotentiator.


Assuntos
Adjuvantes Imunológicos/farmacologia , Infecções por Caliciviridae/prevenção & controle , Medicamentos de Ervas Chinesas/farmacologia , Vírus da Doença Hemorrágica de Coelhos/imunologia , Polissacarídeos/imunologia , Polissacarídeos/farmacologia , Robinia/química , Vacinas de Produtos Inativados/imunologia , Vacinas de Produtos Inativados/farmacologia , Adjuvantes Imunológicos/administração & dosagem , Adjuvantes Imunológicos/uso terapêutico , Animais , Anticorpos Antivirais/sangue , Infecções por Caliciviridae/imunologia , Citocinas/metabolismo , Modelos Animais de Doenças , Combinação de Medicamentos , Vírus da Doença Hemorrágica de Coelhos/patogenicidade , Imunização , Interleucina-2/análise , Linfócitos , Medicina Tradicional Chinesa , Polissacarídeos/isolamento & purificação , Polissacarídeos/uso terapêutico , Própole/farmacologia , Coelhos , Taxa de Sobrevida , Vacinação , Vacinas de Produtos Inativados/administração & dosagem , Vacinas de Produtos Inativados/uso terapêutico , Vacinas Virais/imunologia , Vacinas Virais/farmacologia , Vacinas Virais/uso terapêutico
12.
J Clin Microbiol ; 54(8): 1999-2007, 2016 08.
Artigo em Inglês | MEDLINE | ID: mdl-27194692

RESUMO

A recent epizootic outbreak, in China, of duck beak atrophy and dwarfism syndrome (BADS) was investigated using electron microscopic, genetic, and virological studies, which identified a parvovirus with a greater similarity to goose parvovirus (GPV) (97% protein homology) than to Muscovy duck parvovirus (MDPV) (90% protein homology). The new virus, provisionally designated GPV-QH15, was found to be antigenically more closely related to GPV than to MDPV in a virus neutralization assay. These findings were further supported by phylogenetic analysis showing that GPV-QH15 evolved from goose lineage parvoviruses, rather than from Muscovy duck- or other duck species-related parvoviruses. In all, two genetic lineages (GPV I and GPV II) were identified from the GPV samples analyzed, and GPV-QH15 was found to be closely clustered with two known goose-origin parvoviruses (GPVa2006 and GPV1995), together forming a distinctive GPV IIa sublineage. Finally, structural modeling revealed that GPV-QH15 and the closely related viruses GPVa2006 and GPV1995 possessed identical clusters of receptor-interacting amino acid residues in the VP2 protein, a major determinant of viral receptor binding and host specificity. Significantly, these three viruses differed from MDPVs and other GPVs at these positions. Taken together, these results suggest that GPV-QH15 represents a new variant of goose-origin parvovirus that currently circulates in ducklings and causes BADS, a syndrome reported previously in Europe. This new finding highlights the need for future surveillance of GPV-QH15 in poultry in order to gain a better understanding of both the evolution and the biology of this emerging parvovirus.


Assuntos
Atrofia/veterinária , Bico/patologia , Doenças das Aves/epidemiologia , Doenças das Aves/virologia , Nanismo/veterinária , Infecções por Parvoviridae/veterinária , Parvovirus/isolamento & purificação , Animais , Atrofia/patologia , Doenças das Aves/patologia , China/epidemiologia , Análise por Conglomerados , Surtos de Doenças , Nanismo/patologia , Gansos , Microscopia Eletrônica , Testes de Neutralização , Infecções por Parvoviridae/epidemiologia , Infecções por Parvoviridae/patologia , Infecções por Parvoviridae/virologia , Parvovirus/classificação , Parvovirus/genética , Filogenia , Análise de Sequência de DNA
14.
PLoS One ; 10(7): e0132982, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26173145

RESUMO

The duck hepatitis A virus (DHAV), a member of the family Picornaviridae, is the major cause of outbreaks with high mortality rates in young ducklings. It has three distinctive serotypes and among them, serotypes 1 (DHAV-1) and 3 (DHAV-3) were recognized in China. To investigate evolutionary and antigenic properties of the major capsid protein VP1 of these two serotypes, a primary target of neutralizing antibodies, we determined the VP1 coding sequences of 19 DHAV-1 (spanning 2000-2012) and 11 DHAV-3 isolates (spanning 2008-2014) associated with disease outbreaks. By bioinformatics analysis of VP1 sequences of these isolates and other DHAV strains reported previously, we demonstrated that DHAV-1 viruses evolved into two genetic lineages, while DHAV-3 viruses exhibited three distinct lineages. The rate of nucleotide substitution for DHAV-1 VP1 genes was estimated to be 5.57 x 10(-4) per site per year, which was about one-third times slower than that for DHAV-3 VP1 genes. The population dynamics analysis showed an upward trend for infection of DHAV-1 viruses over time with little change observed for DHAV-3 viruses. Antigenic study of representative DHAV-1 and DHAV-3 strains covering all observed major lineages revealed no detectable changes in viral neutralization properties within the serotype, despite the lack of cross-neutralization between serotypes 1 and 3 strains. Structural analysis identified VP1 mutations in DHAV-1 and DHAV-3 viruses that underpin the observed antigenic phenotypes. Results of our experiments described here shall give novel insights into evolution and antigenicity of duck picornaviruses.


Assuntos
Proteínas do Capsídeo/genética , Vírus da Hepatite A/genética , Vírus da Hepatite do Pato/genética , Proteínas Estruturais Virais/genética , Sequência de Aminoácidos , Animais , Anticorpos Neutralizantes/imunologia , Proteínas do Capsídeo/imunologia , China , Patos , Evolução Molecular , Testes Genéticos , Hepatite A/virologia , Hepatite Viral Animal/virologia , Filogenia , Picornaviridae/genética , Doenças das Aves Domésticas/virologia , Alinhamento de Sequência , Proteínas Estruturais Virais/imunologia
15.
Virus Genes ; 50(2): 189-99, 2015 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-25557928

RESUMO

H5N1 and H9N2 viruses are important causes of avian influenza in China. H5N1 is typically associated with severe to fatal disease in poultry, while H9N2 is usually associated with mild disease. Differences in viral virulence prompted us to investigate whether innate immune responses would be differentially regulated following infection by H5N1 and H9N2 viruses. To address this hypothesis, expression of a panel of innate immune-related genes including IFN-α, IFN-ß, Mx1, OASL, ISG12, IFIT5, IRF7, USP18, SST, and KHSRP in immortal DF-1 cells following H5N1 and H9N2 infection was analyzed and compared by real-time quantitative RT-PCR. Cells infected by either virus overall exhibited a similar expression profile for four ISGs (Mx1, OASL, ISG12, and IFIT5), IFN-α, IFN-ß, and SST gene. However, two immune-regulatory genes (IRF7 and KHSRP) were not responsive to highly pathogenic H5N1 infection but were strongly up-regulated in DF-1 cells infected with low pathogenic H9N2 infection. The subtype-dependent host response observed in this study offers new insights into the potential roles of IRF7 and KHSRP in control and modulation of the replication and virulence of different subtypes or strains of avian influenza A virus.


Assuntos
Imunidade Inata , Virus da Influenza A Subtipo H5N1/fisiologia , Vírus da Influenza A Subtipo H9N2/fisiologia , Influenza Aviária/genética , Doenças das Aves Domésticas/genética , Animais , Linhagem Celular Transformada , Galinhas , China , Virus da Influenza A Subtipo H5N1/genética , Virus da Influenza A Subtipo H5N1/patogenicidade , Vírus da Influenza A Subtipo H9N2/genética , Vírus da Influenza A Subtipo H9N2/patogenicidade , Influenza Aviária/imunologia , Influenza Aviária/virologia , Fatores Reguladores de Interferon/genética , Fatores Reguladores de Interferon/imunologia , Interferons/genética , Interferons/imunologia , Filogenia , Doenças das Aves Domésticas/imunologia , Doenças das Aves Domésticas/virologia
16.
Arch Virol ; 160(1): 55-9, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25248626

RESUMO

An avian influenza virus (AIV) strain belonging to the H4 subtype and provisionally designated as A/duck/China/J1/2012(H4N6) was isolated from diseased ducks with respiratory disease at a commercial poultry farm in Shandong, China, in 2012. The genomic coding sequences of all eight segments of this J1 isolate were determined and used for subsequent analysis. Phylogenetic analysis of all eight segments showed that this duck H4N6 virus was of Eurasian lineage and not American lineage. The results show that the virus probably emerged because of a reassortment event involving other avian H4N6 and H6N1 viruses. Interestingly, this H4N6 virus had all the conserved features common to low-pathogenic AIVs, including the HA cleavage sequence, receptor-binding sequences for the 2,3-linked sialic acid receptor in avian species, and the PB2 627E motif. These results suggest that the duck H4N6 isolate could not cross the species barrier to infect and replicate in mammals, including humans. In addition, screening of the duck serum samples showed that only 0.57 % (2/352) of the individuals had weak but measurable hemagglutination inhibition (HI) antibody titers. The low antibody prevalence data were also supported by the failure to detect H4N6 virus (0/56) in clinical nasal swabs of the ducks. These data indicate an alternate reservoir for the H4N6 virus.


Assuntos
Vírus da Influenza A/isolamento & purificação , Influenza Aviária/virologia , Animais , China/epidemiologia , Patos , Genoma Viral , Vírus da Influenza A/classificação , Vírus da Influenza A/genética , Influenza Aviária/epidemiologia , Filogenia
17.
Genome Announc ; 2(5)2014 Sep 18.
Artigo em Inglês | MEDLINE | ID: mdl-25237015

RESUMO

We report here the complete sequence of novel duck reovirus (N-DRV) strain SD12 isolated from diseased wild mallard ducklings in the Shandong Province of China in 2012. The complete genome consists of 23,420 nucleotide base pairs (bp), including 10 segments ranging from 1,191 bp (S4) to 3,959 bp (L1).

18.
PLoS One ; 8(8): e71319, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23990944

RESUMO

Since the first reported cases of ducks infected with a previously unknown flavivirus in eastern China in April 2010, the virus, provisionally designated Duck Tembusu Virus (DTMUV), has spread widely in domestic ducks in China and caused significant economic losses to poultry industry. In this study, we examined in detail structural, antigenic, and evolutionary properties of envelope (E) proteins of six DTMUV isolates spanning 2010-2012, each being isolated from individual farms with different geographical locations where disease outbreaks were documented. Structural analysis showed that E proteins of DTMUV and its closely related flavivirus (Japanese Encephalitis Virus) shared a conserved array of predicted functional domains and motifs. Among the six DTMUV strains, mutations were observed only at thirteen amino acid positions across three separate domains of the E protein. Interestingly, these genetic polymorphisms resulted in no detectable change in viral neutralization properties as demonstrated in a serum neutralization assay. Furthermore, phylogenetic analysis of the nucleotide sequences of the E proteins showed that viruses evolved into two distinct genotypes, termed as DTMUV.I and DTMUV.II, with II emerging as the dominant genotype. New findings described here shall give insights into the antigenicity and evolution of this new pathogen and provide guidance for further functional studies of the E protein for which no effective vaccine has yet been developed.


Assuntos
Flavivirus/metabolismo , Doenças das Aves Domésticas/virologia , Proteínas do Envelope Viral/química , Proteínas do Envelope Viral/genética , Sequência de Aminoácidos , Animais , Teorema de Bayes , Surtos de Doenças , Patos , Evolução Molecular , Genoma Viral , Geografia , Glicosilação , Dados de Sequência Molecular , Mutação , Testes de Neutralização , Filogenia , Polimorfismo Genético , Aves Domésticas , Estrutura Terciária de Proteína , Homologia de Sequência de Aminoácidos
19.
Virus Res ; 167(2): 297-301, 2012 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-22659296

RESUMO

Avian metapneumovirus (AMPV) is a paramyxovirus that has three membrane proteins (G, F, and SH). Among them, the SH protein is a small type II integral membrane protein that is incorporated into virions and is only present in certain paramyxoviruses. In the present study, we show that the AMPV SH protein is modified by N-linked glycans and can be released into the extracellular environment. Furthermore, we demonstrate that glycosylated AMPV SH proteins form homodimers through cysteine-mediated disulfide bonds, which has not been reported previously for SH proteins of paramyxoviruses.


Assuntos
Metapneumovirus/fisiologia , Proteínas da Matriz Viral/metabolismo , Animais , Células COS , Chlorocebus aethiops , Dissulfetos , Glicosilação , Interações Hidrofóbicas e Hidrofílicas , Polissacarídeos/metabolismo , Multimerização Proteica , Processamento de Proteína Pós-Traducional , Proteínas da Matriz Viral/química
20.
Virus Res ; 160(1-2): 102-7, 2011 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-21683102

RESUMO

The small hydrophobic protein (SH) is a type II integral membrane protein that is packaged into virions and is only present in certain paramyxoviruses including metapneumovirus. In addition to a highly divergent primary sequence, SH proteins vary significantly in size amongst the different viruses. Human respiratory syncytial virus (HRSV) encodes the smallest SH protein consisting of only 64 amino acids, while metapneumoviruses have the longest SH protein ranging from 174 to 179 amino acids in length. Little is currently known about the cellular localization and topology of the metapneumovirus SH protein. Here we characterize for the first time metapneumovirus SH protein with respect to topology, subcellular localization, and transport using avian metapneumovirus subgroup C (AMPV-C) as a model system. We show that AMPV-C SH is an integral membrane protein with N(in)C(out) orientation located in both the plasma membrane as well as within intracellular compartments, which is similar to what has been described previously for SH proteins of other paramyxoviruses. Furthermore, we demonstrate that AMPV-C SH protein localizes in the endoplasmic reticulum (ER), Golgi, and cell surface, and is transported through ER-Golgi secretory pathway.


Assuntos
Metapneumovirus/química , Metapneumovirus/metabolismo , Proteínas Oncogênicas de Retroviridae/química , Proteínas Oncogênicas de Retroviridae/metabolismo , Membrana Celular/química , Citoplasma/química , Retículo Endoplasmático/química , Complexo de Golgi/química , Transporte Proteico
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