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1.
Viruses ; 12(1)2019 12 23.
Article in English | MEDLINE | ID: mdl-31878072

ABSTRACT

Enterovirus 71 (EV71) infection causes hand-foot-mouth disease (HFMD), meningoencephalitis, neonatal sepsis, and even fatal encephalitis in children, thereby presenting a serious risk to public health. It is important to determine the mechanisms underlying the regulation of EV71 infection. In this study, we initially show that the interleukin enhancer-binding factor 2 (ILF2) reduces EV71 50% tissue culture infective dose (TCID50) and attenuates EV71 plaque-formation unit (PFU), thereby repressing EV71 infection. Microarray data analyses show that ILF2 mRNA is reduced upon EV71 infection. Cellular studies indicate that EV71 infection represses ILF2 mRNA expression and protein production in human leukemic monocytes (THP-1) -differentiated macrophages and human rhabdomyosarcoma (RD) cells. In addition, EV71 nonstructural protein 2B interacts with ILF2 in human embryonic kidney (HEK293T) cells. Interestingly, in the presence of EV71 2B, ILF2 is translocated from the nucleus to the cytoplasm, and it colocalizes with 2B in the cytoplasm. Therefore, we present a distinct mechanism by which EV71 antagonizes ILF2-mediated antiviral effects by inhibiting ILF2 expression and promoting ILF2 translocation from the nucleus to the cytoplasm through its 2B protein.


Subject(s)
Cell Nucleus/metabolism , Enterovirus A, Human/immunology , Nuclear Factor 45 Protein/antagonists & inhibitors , Nuclear Factor 45 Protein/genetics , Translocation, Genetic , Viral Nonstructural Proteins/metabolism , Enterovirus Infections/immunology , Enterovirus Infections/virology , HEK293 Cells , Humans , Nuclear Factor 45 Protein/immunology , Rhabdomyosarcoma/virology , THP-1 Cells , Viral Nonstructural Proteins/genetics , Virus Replication
2.
Sci Rep ; 8(1): 4852, 2018 03 19.
Article in English | MEDLINE | ID: mdl-29556082

ABSTRACT

Dogs can spontaneously develop complex systemic autoimmune disorders, with similarities to human autoimmune disease. Autoantibodies directed at self-antigens are a key feature of these autoimmune diseases. Here we report the identification of interleukin enhancer-binding factors 2 and 3 (ILF2 and ILF3) as autoantigens in canine immune-mediated rheumatic disease. The ILF2 autoantibodies were discovered in a small, selected canine cohort through the use of human protein arrays; a method not previously described in dogs. Subsequently, ILF3 autoantibodies were also identified in the same cohort. The results were validated with an independent method in a larger cohort of dogs. ILF2 and ILF3 autoantibodies were found exclusively, and at a high frequency, in dogs that showed a speckled pattern of antinuclear antibodies on immunofluorescence. ILF2 and ILF3 autoantibodies were also found at low frequency in human patients with SLE and Sjögren's syndrome. These autoantibodies have the potential to be used as diagnostic biomarkers for canine, and possibly also human, autoimmune disease.


Subject(s)
Autoantigens/immunology , Autoimmune Diseases/immunology , Nuclear Factor 45 Protein/immunology , Nuclear Factor 90 Proteins/immunology , Animals , Antibodies, Antinuclear/immunology , Dogs , Humans
3.
Dev Comp Immunol ; 42(2): 125-31, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24060504

ABSTRACT

Nuclear factor 45 (NF45) is known to play an important role in regulating interleukin-2 expression in mammals. The function of fish NF45 is largely unknown. In a previous study, we reported the identification of a NF45 (named CsNF45) from half smooth tongue sole (Cynoglossus semilaevis). In the present study, we identified an isoform of CsNF45 (named CsNF45i) from half smooth tongue sole and examined its biological properties in comparison with CsNF45. We found that CsNF45i is a truncated version of CsNF45 and lacks the N-terminal 38 residues of CsNF45. Genetic analysis showed that the CsNF45 gene consists of 14 exons and 13 introns, and that CsNF45 and CsNF45i are the products of alternative splicing. Constitutive expression of CsNF45 and CsNF45i occurred in multiple tissues but differed in patterns. Experimental infection with viral and bacterial pathogens upregulated the expression of both isoforms but to different degrees, with potent induction of CsNF45 being induced by bacterial pathogen, while dramatic induction of CsNF45i being induced by viral pathogen. Transient transfection analysis showed that both isoforms were localized in the nucleus and able to stimulate the activity of IL-2 promoter to comparable extents. To examine their in vivo effects, the two isoforms were overexpressed in tongue sole. Subsequent analysis showed that following viral and bacterial infection, the viral loads in CsNF45i-overexpressing fish were significantly lower than those in CsNF45-overexpressing fish, whereas the bacterial loads in CsNF45-overexpressing fish were significantly lower than those in CsNF45i-overexpressing fish. These results indicate that both CsNF45 and CsNF45i possess immunoregulatory properties, however, the two isoforms most likely participate in different aspects of host immune defense that target different pathogens.


Subject(s)
DNA Virus Infections/immunology , Enterobacteriaceae Infections/immunology , Flatfishes/immunology , Nuclear Factor 45 Protein/genetics , Alternative Splicing , Amino Acid Sequence , Animals , Base Sequence , Cells, Cultured , Edwardsiella tarda/immunology , Fish Diseases/genetics , Fish Diseases/immunology , Fish Proteins/genetics , Fish Proteins/immunology , Flatfishes/genetics , Gene Expression , Interleukin-2/biosynthesis , Iridoviridae/immunology , Molecular Sequence Data , Nuclear Factor 45 Protein/immunology , Promoter Regions, Genetic , Protein Isoforms/genetics , Protein Isoforms/immunology , Sequence Analysis, DNA , Zebrafish
4.
Fish Shellfish Immunol ; 30(6): 1303-9, 2011 Jun.
Article in English | MEDLINE | ID: mdl-21439385

ABSTRACT

As a transcription factor, Interleukin-2 enhancer binding factor 2 (ILF2) regulates IL-2 gene at level of transcription, splicing and translation in vertebrates and plays significant roles in immune system. In this study, an ILF2 homolog was identified from Chinese mitten crab Eriocheir sinensis (designated as EsILF) by expressed sequence tag (EST) analysis. The full-length cDNA of EsILF was of 2159bp, containing a 5' untranslated region (UTR) of 90bp, a 3' UTR of 866bp with a poly (A) tail, and an open reading frame (ORF) of 1203bp encoding a polypeptide of 400 amino acids with the predicted molecular weight of 44.3kDa, which shared 59.6-64.5% identities with vertebrate ILF2. There were a conserved N-terminal RGG-rich single-stranded RNA-binding domain and a DZF zinc-finger nucleic acid binding domain in the primary structure, strongly suggesting that EsILF was a homolog of vertebrate ILF2. The mRNA of EsILF was constitutively expressed in all tested tissues of untreated crabs, including hepatopancreas, gill, gonad, muscle, heart and hemocytes, with highest expression in muscle and relative lower levels in hemocytes and gonad. The mRNA expression of EsILF in hemocytes was regulated differently after the crabs were stimulated by bacteria Listonella anguillarum and fungi Pichia pastoris GS115. The expression level was significantly (P<0.05) down-regulated to 0.35- and 0.29-fold compared with blank group at 6h and 12h after the stimulation of L. anguillarum, while P. pastoris significantly (P<0.05) up-regulated the expression level to 3.2-fold compared with the blank group at 6h post treatment. The results indicated that EsILF was involved in the immune response of crab toward both L. anguillarum and P. pastoris.


Subject(s)
Brachyura/genetics , Expressed Sequence Tags , Gene Expression Regulation/immunology , Nuclear Factor 45 Protein/genetics , Nuclear Factor 45 Protein/immunology , Amino Acid Sequence , Analysis of Variance , Animals , Base Sequence , Brachyura/immunology , Brachyura/microbiology , DNA Primers/genetics , DNA, Complementary/genetics , Hemocytes/metabolism , Listonella/immunology , Molecular Sequence Data , Muscle, Skeletal/metabolism , Nuclear Factor 45 Protein/metabolism , Protein Conformation , Sequence Analysis, DNA
5.
J Virol ; 84(20): 10592-605, 2010 Oct.
Article in English | MEDLINE | ID: mdl-20702628

ABSTRACT

Two of the central issues in developing new strategies to interfere with viral infections concern the identification of cellular proteins involved in viral replication and/or antiviral measures and the dissection of the underlying molecular mechanisms. To gain initial insight into the role of host proteins in the life cycle of infectious bursal disease virus (IBDV), a double-stranded RNA virus, we examined the cellular nuclear factor 45 (NF45). NF45 was previously indicated to be involved in the replication process of other types of RNA viruses. Interestingly, by performing immunofluorescence studies, we found that in IBDV-infected cells the mainly nuclear NF45 accumulated at the sites of viral replication in the cytoplasm. NF45 was shown to specifically colocalize with the viral RNA-dependent RNA polymerase VP1, the capsid protein VP2, and the ribonucleoprotein VP3. Immunoprecipitation experiments indicated protein-protein associations between NF45 and VP1, VP2, and VP3. Expression of the individual VP3 or the combination of expression of VP1 and VP3 did not result in a cytoplasmic accumulation of NF45, which, among other data, showed that recruitment of the cellular protein in infected cells functionally correlates with the viral replication process. Since small interfering RNA(siRNA)-mediated downregulation of NF45 resulted in an approximately 5-fold increase of virus yield, our study suggests that NF45, by association with viral proteins, is part of a yet-uncharacterized cellular defense mechanism against IBDV infections.


Subject(s)
Infectious bursal disease virus/physiology , Nuclear Factor 45 Protein/physiology , Viral Proteins/physiology , Animals , Antibodies, Viral/biosynthesis , Base Sequence , Cell Line , Chickens , Chlorocebus aethiops , Cholesterol Side-Chain Cleavage Enzyme/metabolism , DNA Primers/genetics , Host-Pathogen Interactions/genetics , Host-Pathogen Interactions/physiology , Infectious bursal disease virus/genetics , Infectious bursal disease virus/pathogenicity , Karyopherins/metabolism , Nuclear Factor 45 Protein/antagonists & inhibitors , Nuclear Factor 45 Protein/genetics , Nuclear Factor 45 Protein/immunology , RNA Interference , RNA, Small Interfering/genetics , Rabbits , Receptors, Cytoplasmic and Nuclear/metabolism , Vero Cells , Viral Proteins/genetics , Virus Replication/genetics , Virus Replication/physiology , Exportin 1 Protein
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