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Glycoprotein H of human cytomegalovirus is a major antigen for the neutralizing humoral immune response.

A recombinant baculovirus expressing glycoprotein H (gpUL75) of human cytomegalovirus was used to examine the humoral immune response in naturally infected individuals. Recombinant baculovirus infected insect cells produced two forms of gH with molecular masses of 78-82 kDa and 94 kDa. The 94 kDa polypeptide was modified by high mannose oligosaccharide side-chains as shown by reduction in molecular mass after treatment with endoglycosidases H and F. The 78-82 kDa protein represented the non-glycosylated precursor which was resistant to the enzymes. In contrast to gH expressed in mammalian cells, the recombinant baculovirus expressed gH was transported to the cell surface. Glycoprotein H produced in insect cells was reactive with human convalescent sera and all tested neutralizing monoclonal antibodies recognizing either linear or conformational epitopes. Antibodies reacting with insect cell derived gH were detected in 96 percent of HCMV seropositive human sera. Using insect cells infected with the gH expressing recombinant baculovirus as immunoabsorbent, between 0 percent and 58 percent of the total virus neutralizing activity was removed from sera of individuals with a past HCMV infection. gH must therefore be considered a major antigen for the induction of neutralizing antibodies during natural infection.

Animals↗

Antibodies to a synthetic peptide corresponding to the N-terminal end of mouse gamma interferon (IFN gamma).

Antibodies to an N-terminal synthetic peptide of mouse gamma interferon (MoIFN gamma) neutralized the antiviral activity of MoIFN gamma but not MoIFN alpha/beta, human IFN alpha (HuIFN alpha), HuIFN beta or cynomologus monkey IFN gamma (CynIFN gamma). Comparatively, antibodies to mouse N-terminal synthetic peptide showed only 10% reciprocal cross-reactivity in neutralization tests against heterologous HuIFN gamma and 13% cross-reactivity in the ELISA test against Hu N-terminal peptide. The predetermined specificity of these antibodies make them powerful tools for studying antigenic relatedness and biological properties of IFN gamma s.

Animals↗

Comparison of Tensilon and antivenom for the treatment of cobra-bite paralysis.

We prospectively compared the ability of anti-venom and edrophonium (Tensilon) to improve paralytic symptoms in 8 patients envenomed by the Philippine cobra (Naja naja philippinensis). Twenty, 50 or 100 ml of Philippine cobra antivenom were administered in a double-blind fashion by constant intravenous infusion over 30 min. Even the largest dose of antivenom failed to produce marked improvement within 2 h, though enzyme-linked immunosorbent assays and neutralization tests demonstrated that it possessed high titres of anti-neurotoxin antibodies. Tensilon given at 2 h was significantly more effective than antivenom at increasing the duration of upward gaze (78 +/- 28 vs 43 +/- 26 sec, P less than 0.001), and either completely reversed or markedly decreased paralysis in every patient. The Tensilon test should be given to all patients with paralytic envenoming by cobras, and anticholinesterases administered to those with a positive response.

Adolescent↗

[Acute hemorrhagic conjunctivitis caused by a variant of coxsackievirus A24, in Belém, Pará, Brazil, 1987].

An epidemic of acute haemorrhagic conjunctivitis in Belém, Pará, Brazil, was investigated. From 83 patients, 73 samples of virus was isolated in cultures of HEP-2 cells from conjunctival swab and throat swab. The virus isolates were identified in Centers for Disease Control, Atlanta, Georgia, USA, as an antigenic variant of coxsackievirus A24. Neutralization Test was done on 56 paired serum samples, using entero virus type 70 (EV70) and virus isolates. Serological conversions for virus isolates were found in 57% (32 patients).

Adolescent↗

Antigenic variation in rabies virus strains.

Several rabies virus isolates from small wild rodents, one strain isolated from a fox and another from a cat, as well as the CVS strain were compared in cross-protection and virus-neutralization tests. Antigenic variations between the strains and between different batches of individual strains were found. These antigenic differences could not be explained by denaturation caused by UV irradiation or deep-freeze storage, by the presence of "incomplete" particles or by passage in immune organism. An antigenic difference was batch-specific and was only demonstrable on comparison with a relatively large number of strains: it has probably developed during the assembly of antigenic determinants of the virion. There was no correlation between protective and virus-neutralizing activities.

Animals↗

The nature of neutralization reaction between effector protein and monoclonal antibody: a quantitative study of neutralization characteristics of anti-interferon antibodies.

Several monoclonal antibodies to human interferon-alpha and beta were examined quantitatively for neutralization of antigenically homogeneous interferons. The extent of neutralization increased with antibody concentration in each case with a rate considerably lower than in the case of conventional (polyclonal) antibodies, and there often appeared to be a limit to the maximum interferon titre that can be neutralized, even using very high antibody concentrations (there were no such limits with conventional antibodies). This suggests that the interferon in a 1:1 interferon-antibody complex in general retains some activity, to the degree characteristic of that antibody; namely, each monoclonal antibody is considered to have a characteristic efficacy of neutralization, rather than being either neutralizing or non-neutralizing in an all-or-one fashion. The antibody dose-dependence curves were interpreted to be governed by two independent parameters of the antibody: the efficacy of neutralization and the affinity. The former is reflected by the maximum interferon titre neutralizable by high antibody doses and the latter by the minimum antibody dose that can effect detectable neutralization. Thus, quantitative neutralization tests of monoclonal antibodies to an effector protein would give useful information for classifying them as to their affinities and as to whether the epitopes they recognize are important for the biological activity of the effector.

Antibodies, Monoclonal↗

Semliki Forest virus E2 envelope epitopes induce a nonneutralizing humoral response which protects mice against lethal challenge.

Along the 422 amino acids of the Semliki Forest virus (SFV) E2 envelope glycoprotein, we identified 13 peptide cassettes (ranging in size from 15 to 25 amino acids and designated A through N) that contain hydrophilic sequences flanked by amino acid sequences conserved in the E2 envelopes of the alphavirus family. Six peptide blocks containing either a single cassette or two to three contiguous cassettes (A, BC, DE, FG, HIK, and LMN) were produced in Escherichia coli as recombinant proteins fused to the N terminus of beta-galactosidase. All of the SFV E2 recombinant polypeptides except A-beta-galactosidase were recognized on Western blots (immunoblots) by anti-SFV polyclonal antisera. In addition, these five recombinant proteins induced in mice antibodies that interacted specifically with SFV E2 protein on Western blots as well as with the intact virions in an enzyme-linked immunosorbent assay. The six hybrid proteins were used to vaccinate mice and were tested for the ability to confer resistance against lethal doses of SFV. Peptides BC and HIK, located at amino acid positions 114 to 149 and 216 to 288, respectively, of E2, protected partially (40 to 60%) against SFV challenge. A third peptide, LMN, located between amino acid positions 289 and 352, rendered mice totally resistant to an SFV challenge of 250 50% lethal doses. The partially protective effects of the BC and HIK cassettes and the high efficacy of the LMN cassette were consistently demonstrated, independent of the adjuvant (complete Freund or alum), immunization protocol, and strain of mice used. None of the antisera raised against any given cassette could neutralize the virus in an in vitro tissue culture assay or in a plaque reduction neutralization test. Nevertheless, passive transfer experiments demonstrated that in the case of LMN, the protective effect was mainly of a humoral nature.

Amino Acid Sequence↗

Physico-chemical and serological characterization of five rhabdoviruses infecting fish.

Viruses isolated from fish with viral haemorrhagic septicaemia (VHS), infectious haematopoietic necrosis (IHN), spring viraemia of carp (SVC), swim-bladder inflammation (SBI) and pike fry disease (PFD) have been grown to high titre in fathead minnow cells. While our preparations of the IHN, SVC, SBI and PFD viruses showed typical rhabdovirus morphology with bullet-shaped particles and distinct surface projections, the VHS virus preparations had a less typical rhabdovirus morphology but were pleomorphic with a preponderance of flexuous rods. Using virus labelled with [-3H]-uridine, it was shown that each virus contained RNA which sedimented at 38 to 40 S and was hydrolysed by very low concentrations of ribonuclease. The viruses of SVC, PFD and SBI had a polypeptide composition similar to that of vesicular stomatitis virus, the prototype rhabdovirus, but the IHN and VHS viruses gave a pattern similar to that of rabies virus. In serum neutralization tests the SVC and SBI viruses were indistinguishable. VHS virus showed no serological relationship with the other four viruses but there was a low level of cross-reaction between the PFD, IHN and SVC-SBI viruses.

Animals↗

Detection of IgM antibodies against canine distemper virus in dog and mink sera employing enzyme-linked immunosorbent assay (ELISA).

An enzyme-linked immunosorbent assay (ELISA) for the detection of IgM antibodies against canine distemper virus (CDV) in canine and mink serum is described. The diagnostic potential of this technique was evaluated by analyzing sera from natural or experimental infections in dog and mink and negative control sera. These results were compared with results obtained in the developed CDV IgG ELISA and in the virus neutralization test. The IgM test, which requires only a single serum specimen, is a useful method for diagnosing current or recent CDV infections in dog and mink.

Animals↗

Dimethyl sulfoxide enhancement of phlebotomus fever virus plaque formation.

Dimethyl sulfoxide (DMSO)incorporated into an agar overlay containing DEAE-dextran enhanced plaque formation in Vero cells by Naples sandfly fever virus passaged in mouse brain or Vero cell cultures. No plaques were visible when DMSO was used without the DEAE-dextran, some plaques were rarely visible (less than 0.5mm) when DEAE-dextran was used without the DMSO, and up to 10-fold more plaques were clearly visible (0.5-1.5 mm) when both chemicals were used. The combined enhancing effect of DMSO and DEAE-dextran was also observed with mouse brain passaged, but not Vero passaged Sicilian sandfly fever virus. Other Phlebotomus group viruses produced a bit plaques (3-5 mm) and did not require DMSO for plaque formation, although an increase in plaque clarity was obtained with DMSO for some of them. Plaque reduction neutralization tests were assayed successfully under agar containing DMSO. The alphavirus Sindbis produced slightly larger plaques under agar containing DMSO, but there was no effect on clarity or size of plaques produced by the flavivirus dengue-2.

Arboviruses↗

Isolation and preliminary characterization of antigenic variant of echovirus type 11.

Nosocomial infection with echovirus type 11 resulting in aseptic meningitis occurred among newborn babies in a hospital neonatal room at Fukui city. The virus was identified as a variant of echovirus type 11 by cross-neutralization tests with antisera against the prototype Gregory strain and the current Fukui isolate. Fukui isolates expressed strain specific antigen(s) in addition to type specific common antigen(s), but lacked a certain antigen(s) which was present in the prototype strain. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis of virus polypeptides revealed that the capsid proteins VP2 and VP3 of Fukui strain migrated more rapidly than the Gregory strain, while both strains had the same migration pattern of VP1 protein on which the antigenic determinants responsible for virus neutralization were present. The current strain produced large plaques and was more thermoresistant, suggesting some alterations in the structural proteins of the virus.

Antigenic Variation↗

Immunogenic activity of viral polypeptides of an Indian isolate of infectious bursal disease virus.

An Indian isolate of infectious bursal disease virus, i.e. IBDV-P/AD/81, was analysed for immunogenic activity of its structural polypeptides. Virus was purified from infected bursal homogenate by sucrose density gradient centrifugation. It showed five different structural polypeptides of 75.8, 45, 40.7, 33.1 and 27 kDa molecular weights in sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE). Anti infectious bursal disease virus (IBDV) antibodies were tested using enzyme-linked immunosorbent assay (ELISA) and neutralization test (NT). Polypeptide 40.7 kDa (VP2) was known to have neutralizing epitopes. However, polyclonal anti VP2 failed to neutralize the virus. It was interpreted that VP2 had labile neutralizing epitopes which get altered confirmationally by SDS. Surprisingly, polyclonal anti 33.1 kDa (VP3) had mild neutralizing activity.

Animals↗

Identification of VP7 serotypes of human rotaviruses by enzyme-linked immunosorbent assay and reverse transcription-polymerase chain reaction.

Serotype specificity of human rotaviruses in Taiwan remained unclear. This study has established three methods for identification of G serotypes, fluorescent focus neutralization test (FFN), enzyme-linked immunosorbent assay by incorporating VP7 (G) serotype-specific monoclonal antibodies (ELISA-MAb) and reverse transcription-polymerase chain reaction (RT-PCR). FFN is a reference standard test for determination of G serotype. RT-PCR and ELISA-MAb were used for serotyping of rotavirus isolates and appeared to be accurate and more sensitive than FFN. Nevertheless, for serotyping the rotaviruses present in clinical stool samples, ELISA-MAb was not satisfactory, only 65.5% of the 264 specimens could be serotyped. The sensitivity of serotype prediction by RT-PCR was 89.4%. When both ELISA-MAb and RT-PCR were taken into account, G serotype could be predicted for 93.2% of the specimens. Serotyping results were comparable with the RNA profiles. Rotaviruses with similar RNA electrophoretic pattern had the same serotype specificity. RNA patterns could be used as a reference for prediction of serotypes. Because ELISA is easy to perform and less expensive, it would be suggested as a screening test. RT-PCR could be used for samples which could not be serotyped by ELISA-MAb. Furthermore, RT-PCR is especially valuable when serotype-specific monoclonal antibodies are not available.

Antigens, Viral↗

Cross-reactivity and neutralizing ability of monoclonal antibodies against microcystins.

Monoclonal antibodies (MAbs) against the microcystin-leucine-arginine variant (MCYST-LR), a cyclic peptide toxin of the freshwater cyanobacterium Microcystis aeruginosa, were prepared from cloned hybridoma cell lines. The specificity of the MAbs and their ability to neutralize the toxin were investigated by an indirect enzyme-linked immunosorbent assay (ELISA) and by a neutralizing test in mice, respectively. All MAbs reacted with MCYST-LR and also with the microcystin-arginine-arginine variant (MCYST-RR), 3,7-didesmethylmicrocystin (MCYST-3, 7-dDMLR) and 7-desmethylmicrocystin (MCYST-7-DMLR). Furthermore, the antibodies reacted with cell-extracts of toxic and non-toxic M. aeruginosa strains. The MAbs can apparently recognize the common configuration, but not the variant-specific structure, in the microcystin molecules. The non-toxic strains apparently contain some substance(s) related antigenically to microcystin. The in vivo toxin-neutralizing ability of MAbs was minimal.

Animals↗

Effect of a booster-dose of rabies vaccine on the duration of virus neutralizing antibody titers in bovines.

Humoral immune response using inactivated rabies vaccine was studied in 35 nelore cross-bred bovines of western region of São Paulo state. Ninety days after vaccination, 13 (92.8%) animals presented titers > or = 0.5 IU/ml, through mouse neutralization test. After 180 days, 9 (64.3%) sera showed titers > or = 0.5 IU/ml, after 270 days, only one (7.1%) showed a titer of 0.51 IU/ml, and after 360 days, all animals showed titers < 0.5 IU/ml. Group of animals receiving booster dose 30 days after vaccination presented, two months after, all with titers > 0.5 IU/ml. At 180 days, 17 (80.9%) sera presented titers > 0.5 IU/ml; at 270 days, 15 (71.4%), with titers > or = 0.5 IU/ml and at 360 days, 4 (19.0%), with titers > or = 0.5 IU/ml. Booster-dose ensured high levels of neutralizing antibodies for at least three months, and 240 days after revaccination, 71.4% of animals were found with titers > or = 0.5 IU/ml.

Analysis of Variance↗

Serological characterization of the 3'-proximal encoded proteins of beet yellows closterovirus.

The 3'-proximal open reading frames (ORFs) of beet yellows closterovirus, California isolate (BYV-CA), were sequenced and the expression of the corresponding proteins analyzed. The nucleotide sequence of ORF 5 (coding for p24) was most conserved compared with ORF 7 (coding for p20) and ORF 8 (coding for p21) among the isolates analyzed. Polyclonal antisera were produced to GST fusion proteins of p24, p20, and p21. Accumulation of p24, CP, p20 and p21 was studied in infected Tetragonia expansa plants and Chenopodium quinoa protoplasts. All four proteins were expressed in all tissues (old leaves, young leaves and stems), and most abundantly in young leaves. The subcellular localization of each protein in different tissues showed that compared with p24, CP and p21, p20 accumulated less in transfected protoplasts. Immunogold labeling in sugarbeet with p24 and CP antisera demonstrated co-localization of p24 and CP in vascular petiole tissues. In infectivity neutralization tests, antisera against p24 and CP greatly reduced transmission of BYV by viruliferous aphids compared with viruliferous aphids fed on preimmune serum or antiserum to p21.

Amino Acid Sequence↗