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1.
J Virol ; 97(10): e0111523, 2023 10 31.
Artigo em Inglês | MEDLINE | ID: mdl-37796122

RESUMO

IMPORTANCE: Of the flaviviruses, only CSFV and bovine viral diarrhea virus express Npro as the non-structural protein which is not essential for viral replication but functions to dampen host innate immunity. We have deciphered a novel mechanism with which CSFV uses to evade the host antiviral immunity by the N-terminal domain of its Npro to facilitate proteasomal degradation of Sp1 with subsequent reduction of HDAC1 and ISG15 expression. This is distinct from earlier findings involving Npro-mediated IRF3 degradation via the C-terminal domain. This study provides insights for further studies on how HDAC1 plays its role in antiviral immunity, and if and how other viral proteins, such as the core protein of CSFV, the nucleocapsid protein of porcine epidemic diarrhea virus, or even other coronaviruses, exert antiviral immune responses via the Sp1-HDAC1 axis. Such research may lead to a deeper understanding of viral immune evasion strategies as part of their pathogenetic mechanisms.


Assuntos
Vírus da Febre Suína Clássica , Peste Suína Clássica , Endopeptidases , Histona Desacetilase 1 , Imunidade Inata , Complexo de Endopeptidases do Proteassoma , Fator de Transcrição Sp1 , Proteínas Virais , Animais , Peste Suína Clássica/imunologia , Peste Suína Clássica/metabolismo , Peste Suína Clássica/virologia , Vírus da Febre Suína Clássica/enzimologia , Vírus da Febre Suína Clássica/imunologia , Vírus da Febre Suína Clássica/metabolismo , Vírus da Febre Suína Clássica/patogenicidade , Endopeptidases/química , Endopeptidases/metabolismo , Histona Desacetilase 1/biossíntese , Histona Desacetilase 1/metabolismo , Fator Regulador 3 de Interferon , Proteínas do Nucleocapsídeo/metabolismo , Complexo de Endopeptidases do Proteassoma/metabolismo , Fator de Transcrição Sp1/metabolismo , Suínos/virologia , Proteínas do Core Viral/metabolismo , Proteínas Virais/química , Proteínas Virais/metabolismo , Ubiquitinas/metabolismo , Citocinas/metabolismo , Vírus da Diarreia Epidêmica Suína/imunologia , Vírus da Diarreia Epidêmica Suína/metabolismo , Domínios Proteicos
2.
Front Immunol ; 12: 688758, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34220846

RESUMO

Coronaviruses (CoVs) are a known global threat, and most recently the ongoing COVID-19 pandemic has claimed more than 2 million human lives. Delays and interference with IFN responses are closely associated with the severity of disease caused by CoV infection. As the most abundant viral protein in infected cells just after the entry step, the CoV nucleocapsid (N) protein likely plays a key role in IFN interruption. We have conducted a comprehensive comparative analysis and report herein that the N proteins of representative human and animal CoVs from four different genera [swine acute diarrhea syndrome CoV (SADS-CoV), porcine epidemic diarrhea virus (PEDV), severe acute respiratory syndrome CoV (SARS-CoV), SARS-CoV-2, Middle East respiratory syndrome CoV (MERS-CoV), infectious bronchitis virus (IBV) and porcine deltacoronavirus (PDCoV)] suppress IFN responses by multiple strategies. In particular, we found that the N protein of SADS-CoV interacted with RIG-I independent of its RNA binding activity, mediating K27-, K48- and K63-linked ubiquitination of RIG-I and its subsequent proteasome-dependent degradation, thus inhibiting the host IFN response. These data provide insight into the interaction between CoVs and host, and offer new clues for the development of therapies against these important viruses.


Assuntos
Proteínas do Nucleocapsídeo de Coronavírus/genética , Proteínas do Nucleocapsídeo de Coronavírus/imunologia , Proteína DEAD-box 58/metabolismo , Interferons/antagonistas & inibidores , Interferons/imunologia , Receptores Imunológicos/metabolismo , Sequência de Aminoácidos/genética , Animais , COVID-19/patologia , Proteína DEAD-box 58/imunologia , Deltacoronavirus/genética , Deltacoronavirus/imunologia , Humanos , Vírus da Bronquite Infecciosa/genética , Vírus da Bronquite Infecciosa/imunologia , Fator Regulador 3 de Interferon/metabolismo , Coronavírus da Síndrome Respiratória do Oriente Médio/genética , Coronavírus da Síndrome Respiratória do Oriente Médio/imunologia , Fosforilação , Vírus da Diarreia Epidêmica Suína/genética , Vírus da Diarreia Epidêmica Suína/imunologia , Receptores Imunológicos/imunologia , Coronavírus Relacionado à Síndrome Respiratória Aguda Grave/genética , Coronavírus Relacionado à Síndrome Respiratória Aguda Grave/imunologia , SARS-CoV-2/genética , SARS-CoV-2/imunologia , Suínos , Ubiquitinação/fisiologia
3.
Proc Natl Acad Sci U S A ; 118(18)2021 05 04.
Artigo em Inglês | MEDLINE | ID: mdl-33858942

RESUMO

As the coronavirus disease 2019 (COVID-19) pandemic rages on, it is important to explore new evolution-resistant vaccine antigens and new vaccine platforms that can produce readily scalable, inexpensive vaccines with easier storage and transport. We report here a synthetic biology-based vaccine platform that employs an expression vector with an inducible gram-negative autotransporter to express vaccine antigens on the surface of genome-reduced bacteria to enhance interaction of vaccine antigen with the immune system. As a proof-of-principle, we utilized genome-reduced Escherichia coli to express SARS-CoV-2 and porcine epidemic diarrhea virus (PEDV) fusion peptide (FP) on the cell surface, and evaluated their use as killed whole-cell vaccines. The FP sequence is highly conserved across coronaviruses; the six FP core amino acid residues, along with the four adjacent residues upstream and the three residues downstream from the core, are identical between SARS-CoV-2 and PEDV. We tested the efficacy of PEDV FP and SARS-CoV-2 FP vaccines in a PEDV challenge pig model. We demonstrated that both vaccines induced potent anamnestic responses upon virus challenge, potentiated interferon-γ responses, reduced viral RNA loads in jejunum tissue, and provided significant protection against clinical disease. However, neither vaccines elicited sterilizing immunity. Since SARS-CoV-2 FP and PEDV FP vaccines provided similar clinical protection, the coronavirus FP could be a target for a broadly protective vaccine using any platform. Importantly, the genome-reduced bacterial surface-expressed vaccine platform, when using a vaccine-appropriate bacterial vector, has potential utility as an inexpensive, readily manufactured, and rapid vaccine platform for other pathogens.


Assuntos
Vacinas contra COVID-19/imunologia , COVID-19/prevenção & controle , Vírus da Diarreia Epidêmica Suína/imunologia , SARS-CoV-2/imunologia , Proteínas Virais de Fusão/imunologia , Vacinas Virais/imunologia , Animais , Anticorpos Antivirais/sangue , Modelos Animais de Doenças , Escherichia coli/genética , Genoma Bacteriano , Interferon gama/sangue , RNA Viral/análise , Suínos , Vacinas de Produtos Inativados/imunologia , Vacinas Sintéticas/imunologia
4.
Vet Microbiol ; 254: 108994, 2021 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-33486326

RESUMO

Porcine epidemic diarrhea virus (PEDV) encodes many multifunctional proteins that inhibit host innate immune response during virus infection. As one of important structural proteins, PEDV E protein has been found to block the production of type I interferon (IFN) in virus life cycle, but little is known about this process that E protein subverts host innate immune. Thus, in this present study, we initiated the construction of eukaryotic expression vectors to express PEDV E protein. Subsequently, cellular localization analysis was performed and the results showed that the majority of PEDV E protein distributed at cytoplasm and localized in endoplasmic reticulum (ER). Over-expression of PEDV E protein significantly inhibited poly(I:C)-induced IFN-ß and IFN-stimulated genes (ISGs) productions. We also found that PEDV E protein remarkably suppressed the protein expression of RIG-I signaling-associated molecules, but all their corresponding mRNA levels remained unaffected and unchanged. Furthermore, PEDV E protein obviously interfered with the translocation of IRF3 from cytoplasm to nucleus through direct interaction with IRF3, which is crucial for the IFN-ß production induced by poly(I:C). Taken together, our results suggested that PEDV E protein acts as an IFN-ß antagonist through suppression of the RIG-I-mediated signaling. This study will pave the way for the further investigation into the molecular mechanisms by which PEDV E protein evades host innate immune response.


Assuntos
Proteína DEAD-box 58/metabolismo , Interações Hospedeiro-Patógeno/imunologia , Interferon beta/imunologia , Vírus da Diarreia Epidêmica Suína/imunologia , Receptores Imunológicos/metabolismo , Transdução de Sinais , Proteínas Virais/genética , Animais , Proteína DEAD-box 58/genética , Proteína DEAD-box 58/imunologia , Células HEK293 , Células HeLa , Interações Hospedeiro-Patógeno/genética , Humanos , Evasão da Resposta Imune , Imunidade Inata , Fator Regulador 3 de Interferon/genética , Fator Regulador 3 de Interferon/imunologia , Fator Regulador 3 de Interferon/metabolismo , Interferon beta/antagonistas & inibidores , Interferon beta/biossíntese , Interferon beta/genética , Poli I-C/farmacologia , Vírus da Diarreia Epidêmica Suína/química , Vírus da Diarreia Epidêmica Suína/efeitos dos fármacos , Vírus da Diarreia Epidêmica Suína/genética , Receptores Imunológicos/genética , Receptores Imunológicos/imunologia , Suínos , Proteínas Virais/metabolismo
5.
Vet Microbiol ; 251: 108892, 2020 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-33126183

RESUMO

Porcine epidemic diarrhea virus (PEDV) is an enveloped, single-stranded positive-sense RNA virus that belongs to a porcine entero-pathogenic alphacoronavirus, causing lethal watery diarrhea in piglets. Despite existing study reports the sole accessory protein ORF3 identified as NF-κB antagonist, the contribution of PEDV ORF3 to production of the pro-inflammatory cytokines mediated by NF-κB signaling remains largely unknown. Thus in this present study, we showed that PEDV ORF3 protein significantly inhibited the productions of pro-inflammatory cytokines interleukin-6 (IL-6) and IL-8. The phosphorylation of IκBα was inhibited by ORF3 protein, but no degradation of IκBα was induced in ORF3-expressing cells. Furthermore, PEDV ORF3 inhibited NF-κB activation through preventing nuclear factor p65 phosphorylation and down-regulating p65 expression level, as well as interfering nuclear translocation of p65, eventually resulting into the inhibition of IL-6 and IL-8 production. Our study definitely links PEDV ORF3 to inhibition of pro-inflammatory cytokines production, which will provide new insight into the molecular mechanisms of NF-κB activity inhibited by PEDV proteins to facilitate virus evasion of host innate immune.


Assuntos
Interleucina-6/antagonistas & inibidores , Interleucina-8/antagonistas & inibidores , Vírus da Diarreia Epidêmica Suína/genética , Fator de Transcrição RelA/genética , Proteínas Virais/genética , Proteínas Virais/imunologia , Animais , Chlorocebus aethiops , Células HEK293 , Células HeLa , Humanos , Interleucina-6/imunologia , Interleucina-8/imunologia , Vírus da Diarreia Epidêmica Suína/imunologia , Transdução de Sinais , Suínos , Fator de Transcrição RelA/imunologia , Células Vero , Replicação Viral
6.
Arch Virol ; 165(10): 2279-2289, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-32719955

RESUMO

In the early stage of virus infection, the pattern recognition receptor (PRR) signaling pathway of the host cell is activated to induce interferon production, activating interferon-stimulated genes (ISGs) that encode antiviral proteins that exert antiviral effects. Viperin is one of the innate antiviral proteins that exert broad-spectrum antiviral effects by various mechanisms. Porcine epidemic diarrhea virus (PEDV) is a coronavirus that causes huge losses to the pig industry. Research on early antiviral responses in the gastrointestinal tract is essential for developing strategies to prevent the spread of PEDV. In this study, we investigated the mechanisms of viperin in PEDV-infected IPEJ-C2 cells. Increased expression of interferon and viperin and decreased replication of PEDV with a clear reduction in the viral load were observed in PEDV-infected IPEC-J2 cells. Amino acids 1-50 of porcine viperin contain an endoplasmic reticulum signal sequence that allows viperin to be anchored to the endoplasmic reticulum and are necessary for its function in inhibiting PEDV proliferation. The interaction of the viperin S-adenosylmethionine domain with the N protein of PEDV was confirmed via confocal laser scanning microscopy and co-immunoprecipitation. This interaction might interfere with viral replication or assembly to reduce virus proliferation. Our results highlight a potential mechanism whereby viperin is able to inhibit PEDV replication and play an antiviral role in innate immunity.


Assuntos
Antivirais/metabolismo , Interações entre Hospedeiro e Microrganismos/fisiologia , Proteínas do Nucleocapsídeo/fisiologia , Vírus da Diarreia Epidêmica Suína/fisiologia , Animais , Linhagem Celular , Infecções por Coronavirus/genética , Infecções por Coronavirus/imunologia , Infecções por Coronavirus/virologia , Interações entre Hospedeiro e Microrganismos/genética , Interações entre Hospedeiro e Microrganismos/imunologia , Imunidade Inata , Interferons/biossíntese , Camundongos , Camundongos Endogâmicos BALB C , Proteínas do Nucleocapsídeo/antagonistas & inibidores , Proteínas do Nucleocapsídeo/química , Vírus da Diarreia Epidêmica Suína/imunologia , Vírus da Diarreia Epidêmica Suína/patogenicidade , Domínios e Motivos de Interação entre Proteínas , Proteínas/química , Proteínas/genética , Proteínas/fisiologia , Interferência de RNA , Suínos , Replicação Viral
7.
Arch Virol ; 165(3): 609-618, 2020 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-31950289

RESUMO

Porcine epidemic diarrhea virus (PEDV) targets the intestinal mucosa in pigs. To protect against PEDV invasion, a mucosal vaccine is utilized effectively. In this study, we generated a recombinant adenovirus vaccine encoding the heat-labile enterotoxin B (LTB) and the core neutralizing epitope (COE) of PEDV (rAd-LTB-COE). The fusion protein LTB-COE was successfully expressed by the recombinant adenovirus in HEK293 cells, and the immunogenicity of the vaccine candidate was assessed in BALB/c mice and piglets. Three intramuscular or oral vaccinations with rAd-LTB-COE at two-week intervals induced robust humoral and mucosal immune responses. Moreover, a cell-mediated immune response was promoted in immunized mice, and the neutralizing antibody inhibited both the vaccine strain and the emerging PEDV isolate. Immunization experiments in piglets revealed that rAd-LTB-COE was immunogenic and induced good immune responses in piglets. Further studies are required to evaluate the efficacy of rAd-LTB-COE against a highly virulent PEDV challenge.


Assuntos
Infecções por Coronavirus/prevenção & controle , Infecções por Coronavirus/veterinária , Vírus da Diarreia Epidêmica Suína/imunologia , Doenças dos Suínos/prevenção & controle , Vacinas Virais/imunologia , Adenoviridae/genética , Adenoviridae/imunologia , Animais , Linhagem Celular , Infecções por Coronavirus/imunologia , Enterotoxinas/genética , Enterotoxinas/imunologia , Epitopos/genética , Epitopos/imunologia , Escherichia coli/imunologia , Escherichia coli/patogenicidade , Feminino , Células HEK293 , Humanos , Camundongos , Camundongos Endogâmicos BALB C , Vírus da Diarreia Epidêmica Suína/genética , Proteínas Recombinantes de Fusão/imunologia , Suínos , Doenças dos Suínos/imunologia , Doenças dos Suínos/virologia , Vacinas Virais/administração & dosagem , Vacinas Virais/uso terapêutico
8.
Biomed Res Int ; 2019: 8530273, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31687402

RESUMO

In recent years, many studies have shown that recombinant adenovirus live vector-based vaccines are a promising novel vaccine candidate against virus infection. Therefore, in this study, a new type of recombinant adenovirus expressing the spike (S) protein of porcine epidemic diarrhea virus (PEDV), rAd-PEDV-S, was generated, and its characteristics were determined. Then, its efficacy as a vaccine candidate was evaluated in 4-week-old pigs. The results showed that the S protein could be well expressed at a high level in rAd-PEDV-S-infected cells and that the viral titers could reach 1011 PFU/mL. Further animal experimental results showed that rAd-PEDV-S elicited a significant PEDV-specific humoral immune response after vaccination (P < 0.05). In addition, rAd-PEDV-S provided partial protection for pigs against the highly virulent PEDV challenge. The results presented in this study indicate that the adenovirus vector can be used as a vaccine delivery vector for the development of a PEDV vaccine and is a promising novel vaccine candidate for future prevention and control of porcine epidemic diarrhea (PED), but its efficacy still needs to be improved in the future.


Assuntos
Adenoviridae/metabolismo , Infecções por Coronavirus/virologia , Vírus da Diarreia Epidêmica Suína/metabolismo , Glicoproteína da Espícula de Coronavírus/metabolismo , Doenças dos Suínos/virologia , Adenoviridae/imunologia , Infecções por Adenoviridae/imunologia , Infecções por Adenoviridae/virologia , Animais , Anticorpos Antivirais/imunologia , Linhagem Celular , Chlorocebus aethiops , Infecções por Coronavirus/imunologia , Vírus da Diarreia Epidêmica Suína/imunologia , Suínos , Doenças dos Suínos/imunologia , Vacinas Sintéticas/imunologia , Células Vero , Vacinas Virais/imunologia
9.
Biomed Res Int ; 2019: 1862531, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31781594

RESUMO

Porcine epidemic diarrhea virus (PEDV) infection causes watery diarrhea, dehydration, and high mortality in neonatal pigs, due to its clinical pathogenesis of the intestinal mucosal barrier dysfunction. The host's innate immune system is the first line of defence upon virus invasion of the small intestinal epithelial cells. In turn, the virus has evolved to modulate the host's innate immunity during infection, resulting in pathogen virulence, survival, and the establishment of successful infection. In this review, we gather current knowledge concerning the interplay between PEDV and components of host innate immunity, focusing on the role of cytokines and interferons in intestinal antiviral innate immunity, and the mechanisms underlying the immune evasion strategies of PEDV invasion. Finally, we provide some perspectives on the potential prevention and treatment for PEDV infection.


Assuntos
Antivirais/imunologia , Infecções por Coronavirus/veterinária , Evasão da Resposta Imune , Imunidade Inata , Vírus da Diarreia Epidêmica Suína/imunologia , Doenças dos Suínos/imunologia , Animais , Infecções por Coronavirus/imunologia , Infecções por Coronavirus/prevenção & controle , Infecções por Coronavirus/virologia , Citocinas/imunologia , Células Epiteliais/imunologia , Células Epiteliais/virologia , Mucosa Intestinal/imunologia , Intestinos/imunologia , Intestinos/virologia , Suínos , Doenças dos Suínos/prevenção & controle , Doenças dos Suínos/virologia
10.
Can J Microbiol ; 65(5): 343-352, 2019 May.
Artigo em Inglês | MEDLINE | ID: mdl-30707600

RESUMO

Porcine epidemic diarrhea virus (PEDV) causes severe infectious diseases in all ages of swine and leads to serious economic losses. Serologic tests are widely accepted and used to detect anti-PEDV antibodies that could indicate PEDV infection or vaccination. In this study, PEDV recombinant S1 protein (rS1) was expressed with the Bac-to-Bac system and purified by nickel-affinity chromatography. An indirect enzyme-linked immunosorbent assay based on rS1 (rS1-ELISA) was then developed and optimized by checkerboard assays with serial dilutions of antigen and serum. Serum samples from 453 domestic pigs and 42 vaccinated pigs were analyzed by the indirect fluorescent antibody (IFA) test and rS1-ELISA. Taking IFA as a gold standard, rS1-ELISA produced a high sensitivity (90.7%) and specificity (94.6%) by a receiver operating characteristic (ROC) curve. In addition, ROC analysis also revealed that rS1-ELISA was consistent with IFA (area under the curve 0.9583 ± 0.0082). This rS1-ELISA was then applied to antibody detection in inactivated PEDV vaccinated pigs. The antibody could be detected 2-4 weeks after the first inoculation. These results indicated that the rS1-ELISA established in this study provides a promising and reliable tool for serologic detection of anti-PEDV IgG antibodies in infected or vaccinated pigs.


Assuntos
Infecções por Coronavirus/veterinária , Ensaio de Imunoadsorção Enzimática/veterinária , Vírus da Diarreia Epidêmica Suína/isolamento & purificação , Doenças dos Suínos/diagnóstico , Proteínas Estruturais Virais/imunologia , Animais , Anticorpos Antivirais/sangue , Chlorocebus aethiops , Infecções por Coronavirus/diagnóstico , Infecções por Coronavirus/virologia , Ensaio de Imunoadsorção Enzimática/métodos , Técnica Indireta de Fluorescência para Anticorpo , Vírus da Diarreia Epidêmica Suína/imunologia , Proteínas Recombinantes/genética , Proteínas Recombinantes/imunologia , Sensibilidade e Especificidade , Suínos , Doenças dos Suínos/virologia , Células Vero , Proteínas Estruturais Virais/genética
11.
Braz J Microbiol ; 50(1): 279-286, 2019 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-30637649

RESUMO

Porcine rotavirus (PoRV) and porcine epidemic diarrhea virus (PEDV) usually co-infect pigs in modern large-scale piggery, which both can cause severe diarrhea in newborn piglets and lead to significant economic losses to the pig industry. The VP7 protein is the main coat protein of PoRV, and the S protein is the main structural protein of PEDV, which are capable of inducing neutralizing antibodies in vivo. In this study, a DNA vaccine pPI-2.EGFP.VP7.S co-expressing VP7 protein of PoRV and S protein of PEDV was constructed. Six 8-week-old mice were immunized with the recombinant plasmid pPI-2.EGFP.VP7.S. The high humoral immune responses (virus specific antibody) and cellular immune responses (IFN-γ, IL-4, and spleen lymphocyte proliferation) were evaluated. The immune effect through intramuscular injection increased with plasmid dose when compared with subcutaneous injection. The immune-enhancing effect of IFN-α adjuvant was excellent compared with pig spleen transfer factor and IL-12 adjuvant. These results demonstrated that pPI-2.EGFP.VP7.S possess the immunological functions of the VP7 proteins of PoRV and S proteins of PEDV, indicating that pPI-2.EGFP.VP7.S is a candidate vaccine for porcine rotaviral infection (PoR) and porcine epidemic diarrhea (PED).


Assuntos
Antígenos Virais/imunologia , Proteínas do Capsídeo/imunologia , Infecções por Coronavirus/veterinária , Plasmídeos/imunologia , Infecções por Rotavirus/veterinária , Rotavirus/imunologia , Doenças dos Suínos/prevenção & controle , Proteínas Virais de Fusão/imunologia , Vacinas Virais/imunologia , Animais , Antígenos Virais/administração & dosagem , Antígenos Virais/genética , Proteínas do Capsídeo/administração & dosagem , Proteínas do Capsídeo/genética , Infecções por Coronavirus/imunologia , Infecções por Coronavirus/prevenção & controle , Infecções por Coronavirus/virologia , DNA Recombinante/administração & dosagem , DNA Recombinante/genética , DNA Recombinante/imunologia , Avaliação Pré-Clínica de Medicamentos , Camundongos , Plasmídeos/administração & dosagem , Plasmídeos/genética , Vírus da Diarreia Epidêmica Suína/genética , Vírus da Diarreia Epidêmica Suína/imunologia , Rotavirus/genética , Infecções por Rotavirus/imunologia , Infecções por Rotavirus/prevenção & controle , Infecções por Rotavirus/virologia , Suínos , Doenças dos Suínos/imunologia , Doenças dos Suínos/virologia , Proteínas Virais de Fusão/administração & dosagem , Proteínas Virais de Fusão/genética , Vacinas Virais/administração & dosagem , Vacinas Virais/genética
12.
Acta Vet Hung ; 66(2): 337-342, 2018 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-29958519

RESUMO

Over the last few years several porcine epidemic diarrhoea (PED) outbreaks have been discovered in Europe including the first PED case in Slovenia in January 2015. The aim of this study was to determine when PED virus (PEDV) infection started in Slovenia. Serum samples collected between 2012 and 2016 were tested. Three hundred and seventy-five serum samples were collected from 132 Slovenian small, one-site pig farms. Samples were tested for PEDV antibodies utilising three different serological methods: commercially-available indirect ELISA, in-house blocking ELISA test and Immunoperoxidase Monolayer Assay (IPMA) test. One hundred and seventy (45.33%) tested samples were found positive by the commercially-available ELISA test kit, and 10 (5.68%) of these 170 samples found positive were positive by the in-house blocking ELISA. Only these 10 samples were collected from a farm where clinical signs of PED infection had been observed and PEDV was confirmed by RT-PCR methodology; the other 160 samples were collected randomly. Thirty-two samples with the highest S/P value obtained with the commercial ELISA were all negative with IPMA. Reasons for the high variance in the results obtained remain unclear; more research is required to ensure higher sensitivity and specificity in terms of PEDV antibody tests and other PED diagnostic methods.


Assuntos
Anticorpos Antivirais/sangue , Infecções por Coronavirus/veterinária , Vírus da Diarreia Epidêmica Suína/imunologia , Testes Sorológicos/veterinária , Doenças dos Suínos/virologia , Animais , Infecções por Coronavirus/sangue , Infecções por Coronavirus/diagnóstico , Infecções por Coronavirus/epidemiologia , Ensaio de Imunoadsorção Enzimática/veterinária , Técnicas Imunoenzimáticas/veterinária , Testes Sorológicos/métodos , Eslovênia/epidemiologia , Suínos , Doenças dos Suínos/sangue , Doenças dos Suínos/diagnóstico , Doenças dos Suínos/epidemiologia
13.
Anal Chem ; 90(3): 2224-2229, 2018 02 06.
Artigo em Inglês | MEDLINE | ID: mdl-29290124

RESUMO

Using an enzyme-linked immunosorbent assay (ELISA) and limited dilution methods to screen and clone antigen-specific hybridoma cells is extremely time-consuming and labor-intensive. This work features a simple and rapid cell surface fluorescence immunosorbent assay (CSFIA), designed for the detection and isolation of antigen-specific hybridoma clones. In this assay, antigens are first anchored to the hybridoma cell surface through a dual-functioning molecular Oleyl-PEG4000-NHS. Specific antibodies secreted from hybridoma cells are then captured by the antigens on the cell surface. Positive hybridoma cells are stained using a fluorescently labeled anti-mouse IgG-Fc antibody. After the addition of a methylcellulose semisolid medium, positive clones are easily picked using a pipet. These positive cell clones can be used to produce monoclonal antibodies after direct expansion. Using this method, positive hybridoma clones against both malachite green and porcine epidemic diarrhea virus are selected with high efficiency. Compared to the ELISA-based method, the CSFIA-based method achieved the capability of isolating >2-fold more hybridoma clones in <25% of the corresponding processing time. In brief, the CSFIA-based method is highly efficient and inexpensive with a simple and direct operation, which is an excellent candidate method for antigen-specific positive clone isolation in a monoclonal antibody preparation.


Assuntos
Antígenos/imunologia , Separação Celular/métodos , Hibridomas/classificação , Animais , Anticorpos Monoclonais/química , Anticorpos Monoclonais/imunologia , Linhagem Celular Tumoral , Hibridomas/imunologia , Técnicas de Imunoadsorção , Camundongos Endogâmicos BALB C , Vírus da Diarreia Epidêmica Suína/imunologia , Corantes de Rosanilina/imunologia
14.
Virus Res ; 247: 84-93, 2018 03 02.
Artigo em Inglês | MEDLINE | ID: mdl-29288673

RESUMO

Porcine epidemic diarrhea virus (PEDV) is one of the most important causative pathogens of swine diarrhea, which is widely prevalent throughout the world and is responsible for significant economic losses in the commercial pig industry, both domestic and abroad. The spike (S) protein in the PEDV capsid structure can carry the major B lymphocyte epitope, which induces production of neutralizing antibodies and provides immunoprotective effects. Moreover, the conserved region encoded by the S gene can be considered a target for establishing a new diagnostic method and is a new candidate for vaccine design. In this study, use of anchorin pgsA' allowed the fusion protein of S-DCpep to express on the surface of recombinant Lactobacillus plantarum (NC8-pSIP409-pgsA'-S-DCpep) NC8 strain. Mice were immunized by lavage administration of the recombinant NC8-pSIP409-pgsA'-S-DCpep, which was observed to induce DC activation and high production of sIgA and IgG antibodies in experimental animals, while also eliciting production of significantly more IgA+B220+ B cells. More importantly, secretion of cytokines IFN-γ, IL-4 and IL-17 in mice that were vaccinated with NC8-pSIP409-pgsA'-S-DCpep was remarkably increased. The results of our study suggest that NC8-pSIP409-pgsA'-S-DCpep potently triggers cellular and humoral immune responses. The obtained experimental results can provide a theoretical basis that lays the foundation for production of a novel oral vaccine against PED.


Assuntos
Anticorpos Antivirais/biossíntese , Lactobacillus plantarum/genética , Peptídeos/imunologia , Vírus da Diarreia Epidêmica Suína/imunologia , Glicoproteína da Espícula de Coronavírus/imunologia , Vacinas Virais/administração & dosagem , Administração Oral , Animais , Linfócitos B/imunologia , Linfócitos B/virologia , Proliferação de Células , Feminino , Expressão Gênica , Imunogenicidade da Vacina , Imunoglobulina A/biossíntese , Imunoglobulina G/biossíntese , Interferon gama/genética , Interferon gama/imunologia , Interleucina-17/genética , Interleucina-17/imunologia , Interleucina-4/genética , Interleucina-4/imunologia , Lactobacillus plantarum/metabolismo , Ativação Linfocitária , Camundongos , Camundongos Endogâmicos BALB C , Peptídeos/genética , Vírus da Diarreia Epidêmica Suína/genética , Proteínas Recombinantes de Fusão/administração & dosagem , Proteínas Recombinantes de Fusão/genética , Proteínas Recombinantes de Fusão/imunologia , Glicoproteína da Espícula de Coronavírus/genética , Vacinação , Vacinas Virais/biossíntese , Vacinas Virais/genética
15.
Viruses ; 9(11)2017 10 25.
Artigo em Inglês | MEDLINE | ID: mdl-29068402

RESUMO

Porcine epidemic diarrhea virus (PEDV), an enteric coronavirus, is the causative agent of porcine epidemic diarrhea (PED) that damages intestinal epithelial cells and results in severe diarrhea and dehydration in neonatal suckling pigs with up to 100% mortality. The oral vaccine route is reported as a promising approach for inducing protective immunity against PEDV invasion. Furthermore, dendritic cells (DCs), professional antigen-presenting cells, link humoral and cellular immune responses for homeostasis of the intestinal immune environment. In this study, in order to explore an efficient oral vaccine against PEDV infection, a mucosal DC-targeting oral vaccine was developed using Lactobacillus casei to deliver the DC-targeting peptide (DCpep) fused with the PEDV core neutralizing epitope (COE) antigen. This probiotic vaccine could efficiently elicit secretory immunoglobulin A (SIgA)-based mucosal and immunoglobulin G (IgG)-based humoral immune responses via oral vaccination in vivo. Significant differences (p < 0.05) in the immune response levels were observed between probiotics expressing the COE-DCpep fusion protein and COE antigen alone, suggesting better immune efficiency of the probiotics vaccine expressing the DC-targeting peptide fused with PEDV COE antigen. This mucosal DC-targeting oral vaccine delivery effectively enhances vaccine antigen delivery efficiency, providing a useful strategy to induce efficient immune responses against PEDV infection.


Assuntos
Antígenos Virais/imunologia , Células Dendríticas/imunologia , Vírus da Diarreia Epidêmica Suína/imunologia , Probióticos/administração & dosagem , Vacinas Virais/administração & dosagem , Administração Oral , Animais , Anticorpos Antivirais/sangue , Anticorpos Antivirais/imunologia , Antígenos Virais/administração & dosagem , Antígenos Virais/genética , Infecções por Coronavirus/imunologia , Infecções por Coronavirus/prevenção & controle , Infecções por Coronavirus/veterinária , Infecções por Coronavirus/virologia , Citocinas/sangue , Epitopos/imunologia , Feminino , Imunogenicidade da Vacina , Imunoglobulina A Secretora/sangue , Imunoglobulina G/sangue , Imunoglobulina G/imunologia , Ativação Linfocitária , Camundongos Endogâmicos BALB C , Peptídeos/administração & dosagem , Peptídeos/genética , Peptídeos/imunologia , Suínos , Doenças dos Suínos/imunologia , Doenças dos Suínos/prevenção & controle , Doenças dos Suínos/virologia , Vacinação , Vacinas Virais/genética , Vacinas Virais/imunologia
16.
Planta Med ; 83(18): 1412-1419, 2017 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-28575911

RESUMO

Porcine epidemic diarrhea virus (PEDV) causes acute diarrhea, vomiting, dehydration, weight loss, and high mortality rate in neonatal piglets. Porcine epidemic diarrhea (PED) has been reported in Europe, America, and Asia including Thailand. The disease causes substantial losses to the swine industry in many countries. Presently, there is no effective PEDV vaccine available. In this study, we developed a plant-produced monoclonal antibody (mAb) 2C10 as a prophylactic candidate to prevent the PEDV infection. Recently, plant expression systems have gained interest as an alternative for the production of antibodies because of many advantages, such as low production cost, lack of human and animal pathogen, large scalability, etc. The 2C10 mAb was transiently expressed in Nicotiana benthamiana and lettuce using geminiviral vector. After purification by protein A affinity chromatography, the antibody was tested for the binding and neutralizing activity against PEDV. Our result showed that the plant produced 2C10 mAb can bind to the virus and also inhibit PEDV infection in vitro. These results show excellent potential for a plant-expressed 2C10 as a PEDV prophylaxis and a diagnostic for PEDV infection.


Assuntos
Anticorpos Monoclonais/imunologia , Infecções por Coronavirus/veterinária , Lactuca/imunologia , Nicotiana/imunologia , Vírus da Diarreia Epidêmica Suína/imunologia , Doenças dos Suínos/prevenção & controle , Sequência de Aminoácidos , Animais , Anticorpos Monoclonais/genética , Chlorocebus aethiops , Infecções por Coronavirus/imunologia , Infecções por Coronavirus/prevenção & controle , Infecções por Coronavirus/virologia , Lactuca/genética , Lactuca/virologia , Agricultura Molecular , Testes de Neutralização/veterinária , Folhas de Planta/genética , Folhas de Planta/imunologia , Folhas de Planta/virologia , Planticorpos/genética , Planticorpos/imunologia , Vírus da Diarreia Epidêmica Suína/genética , Suínos , Doenças dos Suínos/imunologia , Doenças dos Suínos/virologia , Nicotiana/genética , Nicotiana/virologia , Células Vero
17.
Virology ; 507: 257-262, 2017 07.
Artigo em Inglês | MEDLINE | ID: mdl-28463713

RESUMO

Porcine epidemic diarrhea virus (PEDV) has two genotypes, G1 and G2. To research the immunogenicity differences of PEDV G1 and G2 genotype strains and obtain a neutralizing monoclonal antibody (mAb), we inoculated specific-pathogen-free BALB/c mice with a newly emerged strain, PEDV-LNCT2. After immunizations, cells from the spleen of the mice were fused with SP2/0 myeloma cells. Following culturing and subcloning, a strain, 1B9, secreting neutralizing antibody, was obtained. The 1B9 mAb neutralized new variant genotype 2 PEDV strains (LNCT2, LNSY, and Hjms), but it did not neutralize a genotype 1 PEDV strain (CV777), in vitro. Results showed that the epitope recognized by the 1B9 mAb lies in the spike protein, and that it is a conformational epitope. These findings confirm that allelic differences in the PEDV S gene between the G1 and G2 genotype strains led to changes in the S protein and, thus, differences in its immunogenicity.


Assuntos
Anticorpos Monoclonais/análise , Anticorpos Antivirais/análise , Infecções por Coronavirus/veterinária , Vírus da Diarreia Epidêmica Suína/isolamento & purificação , Doenças dos Suínos/virologia , Animais , Anticorpos Monoclonais/imunologia , Anticorpos Neutralizantes/análise , Anticorpos Neutralizantes/imunologia , Anticorpos Antivirais/imunologia , Infecções por Coronavirus/virologia , Epitopos/genética , Epitopos/imunologia , Genótipo , Testes de Neutralização , Vírus da Diarreia Epidêmica Suína/classificação , Vírus da Diarreia Epidêmica Suína/genética , Vírus da Diarreia Epidêmica Suína/imunologia , Suínos
18.
J Clin Microbiol ; 55(5): 1426-1436, 2017 05.
Artigo em Inglês | MEDLINE | ID: mdl-28202790

RESUMO

The development of porcine epidemic diarrhea virus (PEDV) antibody-based assays is important for detecting infected animals, confirming previous virus exposure, and monitoring sow herd immunity. However, the potential cross-reactivity among porcine coronaviruses is a major concern for the development of pathogen-specific assays. In this study, we used serum samples (n = 792) from pigs of precisely known infection status and a multiplex fluorescent microbead-based immunoassay and/or enzyme-linked immunoassay platform to characterize the antibody response to PEDV whole-virus (WV) particles and recombinant polypeptides derived from the four PEDV structural proteins, i.e., spike (S), nucleocapsid (N), membrane (M), and envelope (E). Antibody assay cutoff values were selected to provide 100% diagnostic specificity for each target. The earliest IgG antibody response, mainly directed against S1 polypeptides, was observed at days 7 to 10 postinfection. With the exception of nonreactive protein E, we observed similar antibody ontogenies and patterns of seroconversion for S1, N, M, and WV antigens. Recombinant S1 provided the best diagnostic sensitivity, regardless of the PEDV strain, with no cross-reactivity detected against transmissible gastroenteritis virus (TGEV), porcine respiratory coronavirus (PRCV), or porcine deltacoronavirus (PDCoV) pig antisera. The WV particles showed some cross-reactivity to TGEV Miller and TGEV Purdue antisera, while N protein presented some cross-reactivity to TGEV Miller. The M protein was highly cross-reactive to TGEV and PRCV antisera. Differences in the antibody responses to specific PEDV structural proteins have important implications in the development and performance of antibody assays for the diagnosis of PEDV enteric disease.


Assuntos
Antígenos Virais/imunologia , Infecções por Coronavirus , Vírus da Diarreia Epidêmica Suína/imunologia , Doenças dos Suínos/diagnóstico , Suínos/virologia , Vírus da Gastroenterite Transmissível/imunologia , Animais , Anticorpos Antivirais/sangue , Anticorpos Antivirais/imunologia , Infecções por Coronavirus/diagnóstico , Infecções por Coronavirus/veterinária , Infecções por Coronavirus/virologia , Proteínas M de Coronavírus , Proteínas do Nucleocapsídeo de Coronavírus , Reações Cruzadas/imunologia , Diagnóstico Diferencial , Imunoglobulina G/sangue , Imunoglobulina G/imunologia , Proteínas do Nucleocapsídeo/imunologia , Doenças dos Suínos/virologia , Proteínas da Matriz Viral/imunologia
19.
J Virol ; 90(4): 2090-101, 2016 02 15.
Artigo em Inglês | MEDLINE | ID: mdl-26656704

RESUMO

UNLABELLED: Porcine epidemic diarrhea virus (PEDV) is an enteropathogenic coronavirus causing lethal watery diarrhea in piglets. Since 2010, a PEDV variant has spread rapidly in China, and it emerged in the United States in 2013, posing significant economic and public health concerns. The ability to circumvent the interferon (IFN) antiviral response, as suggested for PEDV, promotes viral survival and regulates pathogenesis of PEDV infections, but the underlying mechanisms remain obscure. Here, we show that PEDV-encoded 3C-like protease, nsp5, is an IFN antagonist that proteolytically cleaves the nuclear transcription factor kappa B (NF-κB) essential modulator (NEMO), an essential adaptor bridging interferon-regulatory factor and NF-κB activation. NEMO is cleaved at glutamine 231 (Q231) by PEDV, and this cleavage impaired the ability of NEMO to activate downstream IFN production and to act as a signaling adaptor of the RIG-I/MDA5 pathway. Mutations specifically disrupting the cysteine protease activity of PEDV nsp5 abrogated NEMO cleavage and the inhibition of IFN induction. Structural analysis suggests that several key residues outside the catalytic sites of PEDV nsp5 probably impact NEMO cleavage by modulating potential interactions of nsp5 with their substrates. These data show that PEDV nsp5 disrupts type I IFN signaling by cleaving NEMO. Previously, we and others demonstrated that NEMO is also cleaved by 3C or 3C-like proteinases of picornavirus and artertivirus. Thus, NEMO probably represents a prime target for 3C or 3C-like proteinases of different viruses. IMPORTANCE: The continued emergence and reemergence of porcine epidemic diarrhea virus (PEDV) underscore the importance of studying how this virus manipulates the immune responses of its hosts. During coevolution with its hosts, PEDV has acquired mechanisms to subvert host innate immune responses for its survival advantage. At least two proteins encoded by PEDV have been identified as interferon (IFN) antagonists, papain-like protease (PLP) and N protein. Here, we report that the PEDV nsp5 gene, which encodes the 3C-like protease of PEDV, is another IFN antagonist. Mechanistically, the cysteine protease activity of PEDV nsp5 mediates proteolysis of NEMO, the key adaptor for IFN synthesis, and NEMO is cleaved at glutamine 231 (Q231). The new molecular details and determinants impacting NEMO scission by PEDV nsp5 delineated in this study are fundamental to our understanding of critical virus-host interactions that determine PEDV pathogenesis.


Assuntos
Cisteína Endopeptidases/metabolismo , Interações Hospedeiro-Patógeno , Quinase I-kappa B/metabolismo , Evasão da Resposta Imune , Interferons/antagonistas & inibidores , Vírus da Diarreia Epidêmica Suína/enzimologia , Vírus da Diarreia Epidêmica Suína/imunologia , Proteínas Virais/metabolismo , Proteases Virais 3C , Animais , Linhagem Celular , Cisteína Endopeptidases/genética , Análise Mutacional de DNA , Humanos , Vírus da Diarreia Epidêmica Suína/genética , Proteólise , Proteínas Virais/genética
20.
Arch Virol ; 160(9): 2197-207, 2015 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-26100403

RESUMO

Porcine epidemic diarrhea virus (PEDV) is a highly contagious enteric pathogen of swine causing high mortality rates in piglets. PEDV outbreaks have occurred continuously in most swine-producing Asian countries and have recently emerged in the United States, leading to large economic losses for both the Asian and US pig industries. The spike (S) protein of PEDV consists of the S1 and S2 domains, responsible for virus binding and fusion, respectively. The involvement of the S1 domain in specific high-affinity interactions with the cellular receptor and induction of neutralizing antibodies in the natural host makes it a logical target for the development of effective vaccines and therapeutics against PEDV. Passive immunization by oral administration of egg yolk antibodies (IgY) obtained from immunized chickens provides an alternative source of specific antibodies for the prevention and treatment of PEDV in newborn piglets. In this study, we produced an IgY against the PEDV S1 protein and investigated its immunoprophylactic effect in neonatal piglets. A codon-optimized PEDV S1 gene consisting of amino acid residues 25-749 was synthesized and used to establish a stable porcine cell line constitutively expressing a recombinant PEDV S1 protein containing the chicken immunoglobulin Fc fragment at its C-terminus. The purified recombinant S1 protein was found to mediate potent immune responses in immunized hens. We next tested the ability of oral passive immunization with anti-PEDV S1 IgY to protect piglets against PEDV. Specific chicken IgY against the S1 protein was orally administered to neonatal piglets, and their responses subsequent to a virulent PEDV challenge were monitored. The results showed that oral administration of anti-PEDV S1 IgY efficiently protects neonatal piglets against PEDV, suggesting its potential as a prophylactic or therapeutic agent against acute PEDV infection.


Assuntos
Anticorpos Antivirais/administração & dosagem , Infecções por Coronavirus/veterinária , Imunização Passiva/métodos , Imunoglobulinas/administração & dosagem , Vírus da Diarreia Epidêmica Suína/imunologia , Glicoproteína da Espícula de Coronavírus/imunologia , Doenças dos Suínos/prevenção & controle , Administração Oral , Animais , Animais Recém-Nascidos , Quimioprevenção/métodos , Infecções por Coronavirus/patologia , Infecções por Coronavirus/prevenção & controle , Intestino Delgado/patologia , Suínos , Resultado do Tratamento , Estados Unidos , Eliminação de Partículas Virais
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