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1.
Development ; 149(1)2022 01 01.
Article in English | MEDLINE | ID: mdl-34931663

ABSTRACT

Alveologenesis requires the coordinated modulation of the epithelial and mesenchymal compartments to generate mature alveolar saccules for efficient gas exchange. However, the molecular mechanisms underlying the epithelial-mesenchymal interaction during alveologenesis are poorly understood. Here, we report that Wnts produced by epithelial cells are crucial for neonatal alveologenesis. Deletion of the Wnt chaperone protein Wntless homolog (Wls) disrupts alveolar formation, resulting in enlarged saccules in Sftpc-Cre/Nkx2.1-Cre; Wlsloxp/loxp mutants. Although commitment of the alveolar epithelium is unaffected, α-SMA+ mesenchymal cells persist in the alveoli, accompanied by increased collagen deposition, and mutants exhibit exacerbated fibrosis following bleomycin challenge. Notably, α-SMA+ cells include a significant number of endothelial cells resembling endothelial to mesenchymal transition (EndMT), which is also present in Ager-CreER; Wlsloxp/loxp mutants following early postnatal Wls deletion. These findings provide initial evidence that epithelial-derived Wnts are crucial for the differentiation of the surrounding mesenchyme during early postnatal alveologenesis.


Subject(s)
Alveolar Epithelial Cells/metabolism , Receptors, G-Protein-Coupled/metabolism , Actins/genetics , Actins/metabolism , Alveolar Epithelial Cells/cytology , Animals , Cells, Cultured , Epithelial-Mesenchymal Transition , Mice , Mice, Inbred C57BL , Receptors, G-Protein-Coupled/genetics
2.
J Virol ; 97(11): e0115223, 2023 Nov 30.
Article in English | MEDLINE | ID: mdl-37902396

ABSTRACT

IMPORTANCE: 3'UTRs can affect gene transcription and post-transcriptional regulation in multiple ways, further influencing the function of proteins in a unique manner. Recently, ALV-J has been mutating and evolving rapidly, especially the 3'UTR of viral genome. Meanwhile, clinical symptoms caused by ALV-J have changed significantly. In this study, we found that the ALV-J strains containing △-r-TM-type 3'UTR are the most abundant. By constructing ALV-J infectious clones and subgenomic vectors containing different 3'UTRs, we prove that 3'UTRs directly affect viral tissue preference and can promote virus replication as an enhancer. ALV-J strain containing 3'UTR of △-r-TM proliferated fastest in primary cells. All five forms of 3'UTRs can assist intron-containing viral mRNA nuclear export, with similar efficiency. ALV-J mRNA half-life is not influenced by different 3'UTRs. Our results dissect the roles of 3'UTR on regulating viral replication and pathogenicity, providing novel insights into potential anti-viral strategies.


Subject(s)
3' Untranslated Regions , Active Transport, Cell Nucleus , Avian Leukosis Virus , Virus Replication , Gene Expression , Gene Expression Regulation , Avian Leukosis Virus/genetics , Avian Leukosis Virus/physiology
3.
J Virol ; 97(2): e0137922, 2023 02 28.
Article in English | MEDLINE | ID: mdl-36749072

ABSTRACT

Despite active control strategies, including the vaccination program in poultry, H9N2 avian influenza viruses possessing mutations in hemagglutinin (HA) were frequently isolated. In this study, we analyzed the substitutions at HA residue 193 (H3 numbering) of H9N2 and investigated the impact of these mutations on viral properties. Our study indicated that H9N2 circulating in the Chinese poultry have experienced frequent mutations at HA residue 193 since 2013, with viruses that carried asparagine (N) being replaced by those with alanine (A), aspartic acid (D), glutamic acid (E), glycine (G), and serine (S), etc. Our results showed the N193G mutation impeded the multiple cycles of growth of H9N2, and although most of the variant HAs retained the preference for human-like receptors as did the wild-type N193 HA, the N193E mutation altered the preference for both human and avian-like receptors. Furthermore, these mutations substantially altered the antigenicity of H9N2 as measured by both monoclonal antibodies and antisera. In vivo studies further demonstrated that these mutations showed profound impact on viral replication and transmission of H9N2 in chicken. Viruses with D, E, or S at residue 193 acquired the ability to replicate in lungs of the infected chickens, whereas virus with G193 reduced its transmissibility in infected chickens to those in direct contact. Our findings demonstrated that variations at HA residue 193 altered various properties of H9N2, highlighting the significance of the continued surveillance of HA for better understanding of the etiology and effective control of H9N2 in poultry. IMPORTANCE H9N2 are widespread and have sporadically caused clinical diseases in humans. Extensive vaccinations in poultry helped constrain H9N2; however, they might have facilitated the evolution of the virus. It is therefore of importance to monitor the variation of the circulating H9N2 and evaluate its risk to both veterinary and public health. Here, we found substitutions at position 193 of HA from H9N2 circulated since 2013 and assessed the impact of several mutations on viral properties. Our data showed these mutations resulted in substantial antigenic change. N193E altered the binding preference of HA for human-like to both avian and human-like receptors. More importantly, N193G impaired the growth of H9N2 and its transmission in chickens, whereas mutations from N to D, E, and S enhanced the viral replication in lungs of chickens. Our study enriched the knowledge about H9N2 and may help implement an effective control strategy for H9N2.


Subject(s)
Hemagglutinin Glycoproteins, Influenza Virus , Influenza A Virus, H9N2 Subtype , Influenza in Birds , Animals , Amino Acids/genetics , Chickens/virology , Hemagglutinin Glycoproteins, Influenza Virus/genetics , Hemagglutinins , Influenza A Virus, H9N2 Subtype/genetics , Influenza in Birds/virology , Phylogeny , Poultry
4.
Int J Mol Sci ; 25(16)2024 Aug 21.
Article in English | MEDLINE | ID: mdl-39201769

ABSTRACT

African swine fever (ASF) has become a global pandemic due to inadequate prevention and control measures, posing a significant threat to the swine industry. Despite the approval of a single vaccine in Vietnam, no antiviral drugs against the ASF virus (ASFV) are currently available. Aloperine (ALO), a quinolizidine alkaloid extracted from the seeds and leaves of bitter beans, exhibits various biological functions, including anti-inflammatory, anti-cancer, and antiviral activities. In this study, we found that ALO could inhibit ASFV replication in MA-104, PK-15, 3D4/21, and WSL cells in a dose-dependent manner without cytotoxicity at 100 µM. Furthermore, it was verified that ALO acted on the co- and post-infection stages of ASFV by time-of-addition assay, and inhibited viral internalization rather than directly inactivating the virus. Notably, RT-qPCR analysis indicated that ALO did not exert anti-inflammatory activity during ASFV infection. Additionally, gene ontology (GO) and KEGG pathway enrichment analyses of transcriptomic data revealed that ALO could inhibit ASFV replication via the PRLR/JAK2 signaling pathway. Together, these findings suggest that ALO effectively inhibits ASFV replication in vitro and provides a potential new target for developing anti-ASFV drugs.


Subject(s)
African Swine Fever Virus , Antiviral Agents , Janus Kinase 2 , Piperidines , Quinolizidines , Signal Transduction , Virus Replication , Janus Kinase 2/metabolism , Animals , Signal Transduction/drug effects , Virus Replication/drug effects , Quinolizidines/pharmacology , Swine , Piperidines/pharmacology , African Swine Fever Virus/drug effects , African Swine Fever Virus/metabolism , Antiviral Agents/pharmacology , Cell Line , African Swine Fever/virology , African Swine Fever/metabolism
5.
J Virol ; 96(4): e0154921, 2022 02 23.
Article in English | MEDLINE | ID: mdl-34878920

ABSTRACT

Glycans on envelope glycoprotein (Env) of the subgroup J avian leukosis virus (ALV-J) play an essential role in the virion integrity and infection process. In this study, we found that, among the 13 predicted N-linked glycosylation sites (NGSs) in gp85 of Tibetan chicken strain TBC-J6, N17, and N193/N191 are pivotal for virus replication. Further research illustrated that a mutation at N193 weakened Env-receptor binding in a blocking assay of the viral entrance, coimmunoprecipitation, and ELISA. Our studies also showed that N17 was involved in Env protein processing and later virion incorporation based on the detection of p27 and Env protein in the supernatant and gp37 in the cell culture. This report is systematic research on clarifying the biological function of NGSs on ALV-J gp85, which would provide valuable insight into the role of gp85 in the ALV life cycle and anti-ALV-J strategies. IMPORTANCE ALV-J is a retrovirus that can cause multiple types of tumors in chickens. Among all the viral proteins, the heavily glycosylated envelope protein is especially crucial. Glycosylation plays a major role in Env protein function, including protein processing, receptor attachment, and immune evasion. Notably, viruses isolated recently seem to lose their 6th and 11th NGS, which proved to be important in receptor binding. In our study, the 1st (N17) and 8th (N193) NGS of gp85 of the strain TBC-J6 can largely influence the titer of this virus. Deglycosylation at N193 weakened Env-receptor binding while mutation at N17 influenced Env protein processing. This study systemically analyzed the function of NGSs in ALV-J in different aspects, which may help us to understand the life cycle of ALV-J and provide antiviral targets for the control of ALV-J.


Subject(s)
Avian Leukosis Virus/metabolism , Viral Envelope Proteins/metabolism , Animals , Avian Leukosis Virus/growth & development , Cell Line , Chickens , Glycosylation , Mutation , Protein Binding , Protein Processing, Post-Translational , Receptors, Virus/metabolism , Viral Envelope Proteins/genetics , Viral Load/genetics , Virion/metabolism
6.
J Med Virol ; 95(3): e28657, 2023 03.
Article in English | MEDLINE | ID: mdl-36912367

ABSTRACT

Novel immune escape variants have emerged as severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) continues to spread worldwide. Many of the variants cause breakthrough infections in vaccinated populations, posing great challenges to current antiviral strategies targeting the immunodominance of the receptor-binding domain within the spike protein. Here, we found that a novel broadly neutralizing monoclonal antibody (mAb), G5, provided efficient protection against SARS-CoV-2 variants of concern (VOCs) in vitro and in vivo. A single dose of mAb G5 could significantly inhibit the viral burden in mice challenged with the mouse-adapted SARS-CoV-2 or SARS-CoV-2 Omicron BA.1 variant, as well as the body weight loss and cytokine release induced by mouse-adapted SARS-CoV-2. The refined epitope recognized by mAb G5 was identified as 1148 FKEELDKYF1156 in the stem helix of subunit S2. In addition, a human-mouse chimeric mAb was generated based on the variable region of heavy chain and VL genes of mAb G5. Our study provides a broad antibody drug candidate against SARS-CoV-2 VOCs and reveals a novel target for developing pan-SARS-CoV-2 vaccines.


Subject(s)
Antibodies, Monoclonal , COVID-19 , Humans , Animals , Mice , Antibodies, Monoclonal/therapeutic use , COVID-19 Vaccines , SARS-CoV-2/genetics , Immunosuppressive Agents , Spike Glycoprotein, Coronavirus/genetics , Antibodies, Neutralizing , Antibodies, Viral/therapeutic use
7.
Virol J ; 20(1): 164, 2023 07 24.
Article in English | MEDLINE | ID: mdl-37488599

ABSTRACT

BACKGROUND: Porcine epidemic diarrhea virus (PEDV) is an α-coronavirus that causes highly contagious intestinal infectious disease, involving clinically characterized by diarrhea, dehydration, vomiting, and high mortality to suckling piglets. As a strategy for antiviral therapy, artificial microRNA (amiRNA) mediated suppression of viral replication has recently become increasingly important. In this study, we evaluated the advantages of using an amiRNA vector against PEDV. METHODS: In this study, we evaluated the advantages of using an amiRNA vector against PEDV. We designed two single amiRNA sequences for different conserved sequences of the PEDV S and N genes, and tested their inhibitory effects on PEDV in Vero cells. RESULTS: It was obvious from the CCK-8 results that the transient transfection of amiRNA was non-toxic to the cells. In addition, our results showed that the transient expression of two amiRNAs (amiRNA-349 and amiRNA-1447) significantly reduced the expression of viral RNA and protein in the cells. The TCID50 results showed that the release of virus particles into the culture supernatant was significantly reduced, with an effect as high as 90%. To avoid virus mutation escape, the above two single amiRNA sequences were tandem in this study (amiRNA-349 + 1447), enabling a single microRNA to be expressed simultaneously. The real-time PCR and Western blot results showed that the inhibitory effect was significantly enhanced in each of the different time periods. The TCID50 results showed that the release of virus particles in the culture supernatant was significantly reduced at the different time periods. CONCLUSIONS: In summary, these results suggest that an RNAi based on amiRNA targeting the conserved region of the virus is an effective method to improve PEDV nucleic acid inhibitors and provide a novel treatment strategy for PEDV infection.


Subject(s)
Coronavirus , MicroRNAs , Porcine epidemic diarrhea virus , Animals , Swine , Chlorocebus aethiops , Vero Cells , RNA Interference
8.
Appl Microbiol Biotechnol ; 106(2): 855-863, 2022 Jan.
Article in English | MEDLINE | ID: mdl-34921327

ABSTRACT

The outbreak of goose gout disease caused by novel goose astrovirus type 1 (GAstV-1) has resulted in huge economic losses to the goose industry in China since 2017. However, little is known about the B cell epitopes in major antigen of GAstV-1 and the serological approach for detection of GAstV-1 is not available. In this study, three novel monoclonal antibodies (mAbs) against the ORF2 protein were first generated and designated as 3G6, 5H7, and 6C6, respectively. Epitope mapping revealed that mAb 3G6, 5H7, and 6C6 recognized 695AVRFEKGGHE704, 685EKALSAPQAG694, and 635DDDPLSDVTS644 in ORF2, respectively. Sequence alignments found that the three epitopes were highly conserved in GAstV-1 but not in other AAstV members. Moreover, a mAb-based sandwich ELISA for the detection of GAstV-1 was first developed using mAb 6C6. The sandwich ELISA only reacted with GAstV-1 but not with GAstV-2 and the other goose-associated viruses tested. The limit of the detection of the sandwich ELISA reaches 1.58 × 103 TCID50/mL of GAstV-1. Notably, mAb 6C6 could also efficiently react with the GAstV-1 in tissue frozen sections of the clinical infected goose through IFA. The mAbs generated in this study pave the way for further studying on the role of ORF2 in the infection and pathogenesis of GAstV, and the sandwich ELISA and the tissue frozen section-IFA approaches established here provide efficient and rapid serological diagnostic tools for detection of GAstV-1. KEY POINTS: • Three novel B cell epitopes were identified in ORF2 of GAstV-1. • mAb-based ELISA and IFA for detection of GAstV-1 were developed.


Subject(s)
Avastrovirus , Geese , Animals , Enzyme-Linked Immunosorbent Assay , Epitope Mapping , Epitopes, B-Lymphocyte
9.
BMC Vet Res ; 18(1): 32, 2022 Jan 13.
Article in English | MEDLINE | ID: mdl-35027055

ABSTRACT

BACKGROUND: Subgroup J avian leukosis virus (ALV-J) is an oncovirus which can induce multiple types of tumors in chicken. In this report, we found novel ALV-J infection is closely associated with serious hepatomegaly and splenomegaly in chicken. CASE PRESENTATION: The layer chickens from six flocks in Jiangsu province, China, showed serious hemoperitoneum, hepatomegaly and splenomegaly. Histopathological results indicated focal lymphocytic infiltration, cell edema and congestion in the liver, atrophy and depletion of lymphocyte in the spleen. Tumor cells were not detected in all the organs. avian hepatitis E virus (aHEV), which is thought to be the cause of a very similar disease, big liver and spleen disease (BLS), was not detected. Other viruses causing tumors or liver damage including Marek's disease virus (MDV), reticuloendotheliosis virus (REV), fowl adenovirus (FAdV) and chicken infectious anemia virus (CIAV) were also proved negative by either PCR or RT-PCR. However, we did detect ALV-J in those chickens using PCR. Only novel ALV-J strains were efficiently isolated from these chicken livers. CONCLUSIONS: This is the first report that chicken hepatomegaly and splenomegaly disease was closely associated with novel ALV-J, highlighting the importance of ALV-J eradication program in China.


Subject(s)
Avian Leukosis , Hepatomegaly , Neoplasms , Poultry Diseases , Splenomegaly , Animals , Avian Leukosis/complications , Avian Leukosis Virus , Chickens , China , Hepatomegaly/veterinary , Hepatomegaly/virology , Neoplasms/veterinary , Neoplasms/virology , Poultry Diseases/virology , Splenomegaly/veterinary , Splenomegaly/virology
10.
J Virol ; 94(24)2020 11 23.
Article in English | MEDLINE | ID: mdl-32967952

ABSTRACT

Although astroviruses causes enteric diseases and encephalitis in humans and nephritis and hepatitis in poultry, astrovirus infection is thought to be self-limiting. However, little is known about its molecular mechanism. In this study, we found that a novel goose astrovirus (GAstV), GAstV-GD, and its open reading frame 2 (ORF2) could efficiently activate the innate immune response and induce a high level of OASL in vitro and in vivo The truncation assay for ORF2 further revealed that the P2 domain of ORF2 contributed to stimulating OASL, whereas the acidic C terminus of ORF2 attenuated such activation. Moreover, the overexpression and knockdown of OASL could efficiently restrict and promote the viral replication of GAstV-GD, respectively. Our data not only give novel insights for elucidating self-limiting infection by astrovirus but also provide virus and host targets for fighting against astroviruses.IMPORTANCE Astroviruses cause gastroenteritis and encephalitis in human, and nephritis, hepatitis, and gout disease in poultry. However, the host immune response activated by astrovirus is mostly unknown. Here, we found that a novel goose astrovirus, GAstV-GD, and its ORF2 protein could efficiently induce a high level of OASL in vitro and in vivo, which could feed back to restrict the replication of GAstV-GD, revealing novel innate molecules triggered by astroviruses and highlighting that the ORF2 of GAstV-GD and OASL can be potential antiviral targets for astroviruses.


Subject(s)
2',5'-Oligoadenylate Synthetase/metabolism , Astroviridae/drug effects , Geese/virology , Open Reading Frames/drug effects , Virus Replication/drug effects , 2',5'-Oligoadenylate Synthetase/genetics , 2',5'-Oligoadenylate Synthetase/pharmacology , Animals , Astroviridae/genetics , Astroviridae Infections/immunology , Astroviridae Infections/veterinary , Astroviridae Infections/virology , Cell Line , Gene Knockdown Techniques , Immunity, Innate , Kinetics , Open Reading Frames/physiology , Poultry Diseases/immunology , Poultry Diseases/virology , Transcriptome , Virus Replication/physiology
11.
J Virol ; 94(17)2020 08 17.
Article in English | MEDLINE | ID: mdl-32611755

ABSTRACT

Recently, the disease of hepatitis-hydropericardium syndrome (HPS) caused by serotype 4 fowl adenovirus (FAdV-4) has spread widely and resulted in huge economic losses to the poultry industry. Although the genome of FAdV-4 has two fiber genes (fiber-1 and fiber-2), the exact role of the genes in the infection of FAdV-4 is barely known. In this study, through superinfection resistance analysis and an interfering assay, we found that fiber-1, but not fiber-2, was the key factor for directly triggering the infection of FAdV-4. The truncation analysis further revealed that both of the shaft and knob domains of fiber-1 were required for the infection. Moreover, the sera against the knob domain were able to block FAdV-4 infection, and the knob-containing fusion protein provided efficient protection against the lethal challenge of FAdV-4 in chickens. All the data demonstrated the significant roles of fiber-1 and its knob domain in directly mediating the infection of FAdV-4, which established a foundation for identifying the receptor of FAdV-4 and developing efficient vaccines against FAdV-4.IMPORTANCE Among 12 serotypes of fowl adenovirus (FAdV), FAdV-1, FAdV-4, and FAdV-10 all carry two fiber genes (i.e., fiber-1 and fiber-2), whereas other serotypes have only one. As important viral surface proteins, the fibers play vital roles in the infection and pathogenesis of FAdV. However, the importance of the fibers to the infection and pathogenesis of FAdV may be different from each other. Recent studies reveal that fiber-2 is identified as a determinant of virulence, but which fiber triggers the infection of FAdV-4 remains unknown. In this study, fiber-1 was identified as a key factor for directly mediating the infection of FAdV-4 through its shaft and knob domains, whereas fiber-2 did not play a role in triggering FAdV-4 infection. The results suggest that fiber-1 and its knob domain may serve as a target for identifying the receptor of FAdV-4 and developing efficient drugs or vaccines against FAdV-4.


Subject(s)
Adenoviridae Infections/virology , Adenoviridae/genetics , Adenoviridae/metabolism , Capsid Proteins/genetics , Capsid Proteins/metabolism , Poultry Diseases/virology , Adenoviridae/pathogenicity , Adenoviridae Infections/immunology , Adenoviridae Infections/pathology , Adenoviridae Infections/prevention & control , Animals , Antibodies, Viral , Cell Line , Chickens/virology , Disease Models, Animal , Female , Mice , Mice, Inbred BALB C , Poultry Diseases/immunology , Poultry Diseases/pathology , Poultry Diseases/prevention & control , Protein Domains , Serogroup , Viral Vaccines/immunology
12.
J Virol ; 94(11)2020 05 18.
Article in English | MEDLINE | ID: mdl-32213616

ABSTRACT

Different from other subgroups of avian leukosis viruses (ALVs), ALV-J is highly pathogenic. It is the main culprit causing myeloid leukemia and hemangioma in chickens. The distinctiveness of the env gene of ALV-J, with low homology to those of other ALVs, is linked to its unique pathogenesis, but the underlying mechanism remains unclear. Previous studies show that env of ALV-J can be grouped into three species based on the tyrosine motifs in the cytoplasmic domain (CTD) of Gp37, i.e., the inhibitory, bifunctional, and active groups. To explore whether the C terminus or the tyrosine motifs in the CTD of Gp37 affect the pathogenicity of ALV-J, a set of ALV-J infectious clones containing different C termini of Gp37 or the mutants at the tyrosine sites were tested in vitro and in vivo Viral growth kinetics indicated not only that ALV-J with active env is the fastest in replication and ALV-J with inhibitory env is the lowest but also that the tyrosine sites essentially affected the replication of ALV-J. Moreover, in vivo studies demonstrated that chickens infected by ALV-J with active or bifunctional env showed higher viremia, cloacal viral shedding, and viral tissue load than those infected by ALV-J with inhibitory env Notably, the chickens infected by ALV-J with active or bifunctional env showed significant loss of body weight compared with the control chickens. Taken together, these findings reveal that the C terminus of Gp37 plays a vital role in ALV-J pathogenesis, and change from inhibitory env to bifunctional or active env increases the pathogenesis of ALV-J.IMPORTANCE ALV-J can cause severe immunosuppression and myeloid leukemia in infected chickens. However, no vaccine or antiviral drug is available against ALV-J, and the mechanism for ALV-J pathogenesis needs to be elucidated. It is generally believed that gp85 and LTR of ALV contribute to its pathogenesis. Here, we found that the C terminus and the tyrosine motifs (YxxM, ITIM, and ITAM-like) in the CTD of Gp37 of ALV-J could affect the pathogenicity of ALV-J in vitro and in vivo The pathogenicity of ALV-J with Gp37 containing ITIM only was significantly less than ALV-J with Gp37 containing both YxxM and ITIM and ALV-J with Gp37 containing both YxxM and ITAM-like. This study highlights the vital role of the C terminus of Gp37 in the pathogenesis of ALV-J and thus provides a new perspective to elucidate the interaction between ALV-J and its host and a molecular basis to develop efficient strategies against ALV-J.


Subject(s)
Avian Leukosis Virus/metabolism , Avian Leukosis Virus/pathogenicity , Avian Leukosis/metabolism , Poultry Diseases/metabolism , Viral Envelope Proteins/metabolism , Amino Acid Motifs , Animals , Avian Leukosis/genetics , Avian Leukosis/pathology , Avian Leukosis Virus/genetics , Cell Line , Chickens , Mutation , Poultry Diseases/genetics , Poultry Diseases/pathology , Protein Domains , Viral Envelope Proteins/genetics
13.
Vet Res ; 52(1): 35, 2021 Feb 27.
Article in English | MEDLINE | ID: mdl-33640033

ABSTRACT

Recently, the outbreaks of hydropericardium-hepatitis syndrome (HHS) caused by the highly pathogenic fowl adenovirus serotype 4 (FAdV-4) have resulted in huge economic losses to the poultry industry globally. Although several inactivated or subunit vaccines have been developed against FAdV-4, live-attenuated vaccines for FAdV-4 are rarely reported. In this study, a recombinant virus FA4-EGFP expressing EGFP-Fiber-2 fusion protein was generated by the CRISPR/Cas9 technique. Although FA4-EGFP shows slightly lower replication ability than the wild type (WT) FAdV-4, FA4-EGFP was significantly attenuated in vivo compared with the WT FAdV-4. Chickens infected with FA4-EGFP did not show any clinical signs, and all survived to 14 day post-infection (dpi), whereas those infected with FAdV-4 showed severe clinical signs with HHS and all died at 4 dpi. Besides, the inoculation of FA4-EGFP in chickens provided efficient protection against lethal challenge with FAdV-4. Compared with an inactivated vaccine, FA4-EGFP induced neutralizing antibodies with higher titers earlier. All these data not only provide a live-attenuated vaccine candidate against the highly pathogenic FAdV-4 but also give a potential insertion site for developing FAdV-4-based vaccine vectors for delivering foreign antigens.


Subject(s)
Adenoviridae Infections/veterinary , Aviadenovirus/physiology , Chickens , Poultry Diseases/prevention & control , Viral Vaccines/administration & dosage , Adenoviridae Infections/prevention & control , Adenoviridae Infections/virology , Animals , CRISPR-Cas Systems , Gene Editing , Genes, Viral , Poultry Diseases/virology , Serogroup , Vaccines, Attenuated/administration & dosage
14.
Inorg Chem ; 60(13): 10047-10055, 2021 Jul 05.
Article in English | MEDLINE | ID: mdl-34142816

ABSTRACT

Two novel fluorophore (BODIPY)-bearing complexes, pyriplatin (mCBP) and pyrimidine-chelated cisplatin (dCBP), were synthesized and characterized. The additional BODIPY-pyridine/pyridimine motifs of the two Pt(II) complexes resulted in stronger interactions with DNA in comparison with those of cisplatin. mCBP and cisplatin caused relative decreases in life span and body length in a cisplatin resistant in vivo model, N2 (wild-type) Caenorhabditis elegans. In contrast, dCBP resulted in a dramatic reduction in the two physiological parameters in N2 C. elegans, indicating high toxicity and sensitivity. The resistance factors (RF) of cisplatin, mCBP, and dCBP were determined to be 2.46, 1.04, and 0.91, respectively. The increasing RF folds for mCBP and dCBP against cisplatin were 2.36 and 2.70, respectively. This suggested they were featured with improved anti-chemoresistance capabilities. It is noteworthy that dCBP showed lowest lethal concentration (LC50) values of 0.56 and 0.61 mM in cisplatin resistant and sensitive in vivo models, respectively. Upregulation of several evolutionary conservation genes that regulate cisplatin chemoresistance through cisplatin effluxing, the DNA damage response, the unfolded protein response, and detoxification (asna-1, parp-1, enpl-1, and skn-1) was observed upon exposure to cisplatin but not to mCBP and dCBP. This could explain the improved anti-chemoresistance performances of synthesized Pt(II) complexes.


Subject(s)
Antineoplastic Agents/pharmacology , Boron Compounds/pharmacology , Caenorhabditis elegans/drug effects , Organoplatinum Compounds/pharmacology , Animals , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Boron Compounds/chemistry , Cell Survival/drug effects , Cisplatin/chemistry , Cisplatin/pharmacology , Dose-Response Relationship, Drug , Mice , Molecular Structure , Organoplatinum Compounds/chemical synthesis , Organoplatinum Compounds/chemistry
15.
BMC Vet Res ; 17(1): 51, 2021 Jan 25.
Article in English | MEDLINE | ID: mdl-33494765

ABSTRACT

BACKGROUND: Infectious bronchitis virus (IBV), a coronavirus, is one of the most important poultry pathogens worldwide due to its multiple serotypes and poor cross-protection. Vaccination plays a vital role in controlling the disease. The efficacy of vaccination in chicken flocks can be evaluated by detecting neutralizing antibodies with the neutralization test. However there are no simple and rapid methods for detecting the neutralizing antibodies. RESULTS: In this study, a peptide enzyme-linked immunosorbent assay (pELISA) as a possible alternative to the neutralization test for evaluating the immune response to IBV vaccine was developed. The pELISA could indirect evaluate neutralizing antibody titers against different types of IBV in all tested sera. The titers measured with the pELISA had a coefficient of 0.83 for neutralizing antibody titers. CONCLUSIONS: The pELISA could detect antibodies against different types of IBV in all tested sera. The pELISA has the potential to evaluate samples for IBV-specific neutralizing antibodies and surveillance the infection of IBV.


Subject(s)
Coronavirus Infections/prevention & control , Enzyme-Linked Immunosorbent Assay , Infectious bronchitis virus/immunology , Neutralization Tests , Poultry Diseases/prevention & control , Animals , Antibodies, Neutralizing/immunology , Antibodies, Viral/immunology , Chickens/immunology , Chickens/virology , Coronavirus Infections/immunology , Enzyme-Linked Immunosorbent Assay/methods , Neutralization Tests/methods , Poultry Diseases/immunology , Poultry Diseases/virology , Reproducibility of Results , Sensitivity and Specificity
16.
Int J Mol Sci ; 22(22)2021 Nov 16.
Article in English | MEDLINE | ID: mdl-34830257

ABSTRACT

To investigate the antiviral effect of lithium chloride (LiCl) on the replication of Marek's disease virus (MDV) in chicken embryonic fibroblast (CEF) cells, real-time PCR, Western blotting, plaque counting, and indirect immunofluorescence experiments were performed at different time points of LiCl treated CEF cells with virus infection. The results demonstrated that LiCl could affect multiple steps of virus replication and inhibit viral gene expression and protein synthesis in a dose- and time-dependent manner. Moreover, LiCl could directly affect viral infectivity as well. In addition, LiCl significantly affected the gene expression of IFN-ß related genes in virus-infected cells. These results indicate that LiCl significantly inhibits MDV replication and proliferation in CEF cells and it has the potential to be used as an antiviral agent against MDV.


Subject(s)
Antiviral Agents/pharmacology , Herpesvirus 2, Gallid/drug effects , Lithium Chloride/pharmacology , Oncogene Proteins, Viral/genetics , Virus Replication/drug effects , 2',5'-Oligoadenylate Synthetase/genetics , 2',5'-Oligoadenylate Synthetase/metabolism , Animals , Cell Line , Chick Embryo , Chickens , Dose-Response Relationship, Drug , Fibroblasts/drug effects , Fibroblasts/metabolism , Fibroblasts/virology , Gene Expression Regulation , Herpesvirus 2, Gallid/genetics , Herpesvirus 2, Gallid/metabolism , Host-Pathogen Interactions/drug effects , Interferon Regulatory Factor-7/genetics , Interferon Regulatory Factor-7/metabolism , Interferon-beta/genetics , Interferon-beta/metabolism , Oncogene Proteins, Viral/antagonists & inhibitors , Oncogene Proteins, Viral/metabolism , Viral Load/drug effects
17.
Virol J ; 17(1): 65, 2020 05 06.
Article in English | MEDLINE | ID: mdl-32375812

ABSTRACT

BACKGROUND: Infectious bursal disease (IBD) is a highly contagious infectious disease that causes severe immunosuppression and damage to the bursa of Fabricius in chickens. Several proteins involved in IBD virus (IBDV) infection, such as surface immunoglobulin M, integrin, annexin A2 and chicken heat shock protein 90, have been identified. However, the main protein that plays key roles in virus infection has not yet been confirmed. METHODS: DF-1 cell line was transfected with the pcDNA-VP2 plasmid and analyzed by immunofluorescence assay. The proteins reacted with VP2 of IBDV in DF-1 cells were pulldown with the monoclonal antibody and identified by mass spectrometry. Heat shock cognate protein 70 (HSC70), one of these proteins, was selected to be investigated in the function in IBDV infection by specific antibody and its inhibitor. RESULTS: The DF-1 cell line was transfected with the pcDNA-VP2 plasmid, and expression of IBDV VP2 in DF-1 cells was confirmed by immunofluorescence assays. Heat shock cognate protein 70 (HSC70) was one of the proteins identified by coimmunoprecipitation using a monoclonal antibody (2H11) against VP2 and mass spectrometry analysis. IBDV infection in DF-1 cells was strongly inhibited by both an anti-HSC70 antibody and a HSC70 inhibitor (VER155008). CONCLUSION: These results suggest that HSC70 may be an essential factor for IBDV infection.


Subject(s)
Fibroblasts/virology , HSC70 Heat-Shock Proteins/genetics , Infectious bursal disease virus/genetics , Infectious bursal disease virus/pathogenicity , Animals , Antibodies, Viral , Cell Line , Chickens/virology , Fluorescent Antibody Technique , HSC70 Heat-Shock Proteins/immunology , Infectious bursal disease virus/drug effects , Poultry Diseases/virology , Purine Nucleosides/pharmacology , Viral Structural Proteins/genetics
18.
BMC Vet Res ; 16(1): 371, 2020 Oct 02.
Article in English | MEDLINE | ID: mdl-33008383

ABSTRACT

BACKGROUND: Baicalin, the main metabolic component of Scutellaria baicalensis Georgi, has various pharmacological properties including anti-inflammatory, anti-oxidant, anti-apoptotic, anti-bactericidal and anti-viral. The purpose of this study was to investigate the anti-Marek's disease virus (MDV) activities of baicalin in CEF cells. RESULTS: Here, we showed that baicalin could inhibit viral mRNA, protein levels and overall plaque formation in a time-dependent manner. We also found that baicalin could consistently inhibit MDV replication and directly affect the virus infectivity. Moreover, baicalin treatment has no effect on expression level of antiviral cytokine and inflammatory cytokines in MDV infected CEFs. CONCLUSIONS: These results demonstrate that baicalin could be a potential drug against MDV infection.


Subject(s)
Flavonoids/pharmacology , Mardivirus/drug effects , Virus Replication/drug effects , Animals , Antiviral Agents/pharmacology , Cells, Cultured , Chick Embryo , Cytokines/metabolism , Fibroblasts , Flavonoids/toxicity , Marek Disease/virology , RNA, Messenger
19.
BMC Vet Res ; 16(1): 456, 2020 Nov 23.
Article in English | MEDLINE | ID: mdl-33228649

ABSTRACT

BACKGROUND: Goose parvoviruses (GPVs) spread globally and cause a huge economic loss to the poultry industry. Although the attenuated GPV vaccines play a key role in preventing the disease caused by GPV, the molecular basis for the attenuation of GPV is barely known. RESULTS: A highly attenuated GPV strain, GPV-CZM-142, was generated through blindly passaging of the highly pathogenic strain, GPV-CZM, in goose embryonic fibroblasts (GEF) for 142 generations. The GEF-adapted GPV strain's virulence was 10,000 times weaker than its wild type counterpart, GPV-CZM, based on the ELD50 (50% Embryo Lethal Dose). By comparing with the wild type strain, genome sequencing analysis identified adapted mutations either in ITR or in NS and VP1 of GPV-CZM-142. CONCLUSIONS: The highly attenuated GPV strain, GPV-CZM-142, provides a GPV vaccine candidate, and the identified virulence-related mutations give a novel insight into the molecular determinants of GPV virulence.


Subject(s)
Parvoviridae Infections/veterinary , Parvovirinae/growth & development , Parvovirinae/genetics , Poultry Diseases/virology , Animals , Cells, Cultured , Fibroblasts , Geese , Parvoviridae Infections/embryology , Parvoviridae Infections/virology , Parvovirinae/immunology , Poultry Diseases/embryology , Poultry Diseases/immunology , Sequence Analysis, DNA , Vaccines, Attenuated , Viral Vaccines , Virulence
20.
Avian Pathol ; 48(3): 204-208, 2019 Jun.
Article in English | MEDLINE | ID: mdl-30621493

ABSTRACT

As a major causative agent for hepatitis-hydropericardium syndrome (HPS) in chickens, serotype 4 fowl adenovirus (FAdV-4) has caused huge economic losses in the poultry industry globally. However, there is no commercial diagnostic test for FAdV-4 antigens. To generate a rapid approach for specific detection of FAdV-4, a monoclonal antibodies (mAbs)-based sandwich ELISA was developed. In this ELISA, a purified mAb 4A3 and a HRP-labelled mAb 3C2 specific to the fiber-2 of FAdV-4 were used as the capture antibody and detection antibody respectively. Specificity assay revealed the ELISA only reacted with FAdV-4, not with other avian viruses tested. Sensitivity assay showed the limit of detection of the ELISA was 1000 TCID50/ml and 12.5 ng/ml for the FAdV-4 and the purified GST-Fiber2 protein respectively. Moreover, the ELISA could be efficiently applied in detecting the FAdV-4 in tissue samples from a clinically-diseased chicken flock. All these data demonstrated that the ELISA developed here provides a promising tool for rapid and efficient diagnosis of clinical infection with FAdV-4.


Subject(s)
Adenoviridae Infections/veterinary , Antibodies, Monoclonal/immunology , Antibodies, Viral/immunology , Aviadenovirus/immunology , Chickens/virology , Enzyme-Linked Immunosorbent Assay/veterinary , Poultry Diseases/diagnosis , Adenoviridae Infections/diagnosis , Adenoviridae Infections/virology , Animals , Aviadenovirus/genetics , Aviadenovirus/isolation & purification , Poultry Diseases/virology , Sensitivity and Specificity , Serogroup
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