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Biomedical subjects

V V Drygin

Publications and source records attributed to V V Drygin.

At least 19 recordsLinked to original sources

Detection of antibodies to avian infectious bronchitis virus by a recombinant nucleocapsid protein-based enzyme-linked immunosorbent assay.

The recombinant antigen obtained by cloning and expressing two IBV nucleocapsid protein fragments (143-414 aa, 281-414 aa) in Escherichia coli was used for the detection of avian infectious bronchitis virus (IBV) specific antibodies in chicken sera by the indirect ELISA (rNpIBV-ELISA). As a result of testing 1524 serum samples the diagnostic sensitivity and specificity of rNpIBV-ELISA when comparing those of the routine whole IBV ELISA have been shown to be 93.81% and 87.36%, respectively. The agreement value was 91.5%.

Animals↗

[Differentiation of strains and isolates of chicken reovirus using PCR and heteroduplex mobility assay in amplified cDNA].

The method of chicken reovirus strain differentiation was worked out on the basis of RT-PCR and heteroduplex mobility assay (HMA). The S3 gene cDNA (633-896 b.p.) of some Russian and Italian chicken reovirus isolates was amplified by RT-PCR. The analysis of these cDNA samples was carried out by HMA. The relation between nucleotide differences and relative mobility of compared cDNA heteroduplex was reflected by the regression curve. The equation of linear regression was derived (y = 91.726-0.89x; where y is the level of nucleotide difference of compared cDNA (%), x is the relative mobility of compared cDNA heteroduplex (%)). This method made it possible to take correct results within 5-35% of nucleotide difference in heteroduplex sequences.

Animals↗

Application of universal primers for identification of Foot-and-mouth disease virus and Swine vesicular disease virus by PCR and PCR-ELISA.

Two approaches for simultaneous identification of both Foot-and-mouth disease virus (FMDV) and Swine vesicular disease virus (SVDV) are described: (1) a single-step reverse transcription-PCR with three primers and (2) a PCR-ELISA assay with two universal primers for genome amplification and two virus-specific probes for identification. These methods are based on the use of 3D gene universal PCR primers, the structure of which was optimized and refined due to the close relationship between the two viruses belonging to different genera of the Picornaviridae family. In procedure (1), a three-primer PCR containing one universal antisense primer and two virus-specific primers was shown to differentiate between FMDV and SVDV in one reaction, due to the different length of the amplified DNA fragments (600 and 340 base pairs, respectively). In procedure (2), the two viruses were identified by PCR-ELISA, i.e. PCR for the 3D gene followed by two parallel hybridizations with FMDV and SVDV-specific probes in microplate wells and ELISA detection. The application of universal primers could halve the number of PCR experiments in both cases, as compared to the usual virus-specific PCR procedures. Also, we investigated the 3D gene structure of several SVDV strains isolated at different times. No essential changes were detected in the regions coding for conserved motifs of the RNA-dependent RNA polymerase recognized by our universal primers. The multi-primer PCR was successfully tested on 38 FMDV and 15 SVDV strains, and the PCR-ELISA on 32 FMDV and 16 SVDV strains including clinical material from disease cases.

Amino Acid Motifs↗

[Sequence analysis of hexon gene from adenovirus KR95 inducing hydropericardium syndrome in chickens].

The nucleotide sequence of a part of the HindIII-D fragment (3300 b.p.) of adenovirus KR95 DNA has been determined. Analysis of the nucleotide sequence disclosed a continuous ORF for hexon gene (2814 b.p.) coding the 937 residue protein, part of ORF for the C-terminal region of pVI polypeptide, including 114 residues and the beginning of ORF coding 25 N-terminal residues for viral endoproteinase. Comparison of predicted KR95 hexon sequence and 8 mammalian and avian adenovirus hexon sequences revealed the highest homology between KR95 strain and avian adenoviruses FAV10 and FAV1 (91.1 and 80.1%, respectively). The results were used for creating a test system on the basis of the polymerase chain reaction. The system was used in analysis of fowl samples obtained from 12 poultry farms in Russia. The sequences of hexon gene amplified fragments in the isolated strains and similar fragments of other mammalian and avian adenoviruses have been compared.

Adenoviridae↗

[Primary structure of the F-gene from Rinderpest virus strain K].

Synthesis, cDNA cloning, and nucleotide sequencing of F gene of rinderpest virus strain K was carried out. Analysis of nucleotide sequence showed the only open reading frame coding for protein from 546 a.o. with mol. weight 58.6 kDa. The mean percentage of identical nucleotide residues between F genes of strains K, Kabete O, and L is 76.4% for 5'-untranslated region and 90.5% for translated region, the share of similar amino acid residues in the respective proteins is 92.9%. The structure of restriction site of F0 precursor protein in rinderpest strains with different virulence is similar. Protein F of rinderpest virus strain K has 3 potential glycosylation sites and 13 cystein residues in positions identical to those of F protein of rinderpest strains Kabete O and L.

5' Untranslated Regions↗

[Strain differentiation of the Newcastle disease virus by reverse transcriptase-polymerase chain reaction and sequencing population exchange].

A system for detection and strain differentiation of Newcastle disease virus (NDV) by reverse transcription of polymerase chain reaction (RT-PCR) (isolation of RNA, choice of primers for nested PCR, and purification of PCR products) and sequencing is developed and optimized. A nucleotide sequence of gene F site, coding for the F2/F1 cleavage site of F0 fusion protein and including several hypervariable regions, is determined for 10 Russian strains and vaccine strains. The data indicate a replacement of NDV populations in Russia and a rapid evolution of the virus. The origin of pathogenic NDV strains which have been circulating up to the present time is still unknown.

Base Sequence↗

[The nucleotide sequences of the HN gene and F gene fragment of Newcastle disease virus strains BOR74 and BOR82].

The complete nucleotide sequence of HN gene, the region of F gene, and intergene regions (M-F, F-HN, and HN-L) of the BOR74 and BOR82 strains of Newcastle disease virus have been determined. Based on the nucleotide and amino acid sequences, the speeds of the nucleic and amino acid changes were calculated (approximately 10(-3) nucleotides or amino acids/year). The BOR strains were grouped phylogenetically with the asymptomatic strains. These strains and the BOR strains have the same motif of the cleavage site (112GKQGR116-L117), but the HN protein of BOR strains has the 572 amino acids which differ the BOR strains from all other strains (571, 577, and 616 amino acids).

Base Sequence↗

[Comparative analysis of the VP2 variable region of the gene from infectious bursal disease virus isolates].

Variable cDNA regions in the VP2 gene of 24 isolates of infectious bursal disease virus (IBDV) isolated in Russia in 1993-1996 were amplified by the "nested" PCR and sequenced. The primary structure analysis of the VP2 gene variable region revealed 2 major groups of IBDV isolates. The first group consisted of the isolates with the structure identical or closely related to the highly virulent European strains CS89, 74/89A, 661, JY86, and DV86, the second group included the isolates with a high level of homology to the vaccine strains PBG98 and Cu-1. In addition, two isolates with original structure were identified, which differed from previously studied strains.

Amino Acid Sequence↗

[Primary structure of gene H of cattle plague virus strain K].

Synthesis, cDNA cloning, and identification of H gene nucleotide sequence of rinderpest virus (RPV) K strain are carried out. Analysis of the identified nucleotide sequence has revealed the single open reading frame encoding a protein consisting of 609 amino acids with molecular weight of 68 kDa. The mean nucleotide homology between H genes of K, Kabete O and L strains in 88.0%, the mean amino acid homology of the corresponding proteins is 88.2%. RPV K strain hemagglutinin contains 5 potential glycosylation sites. The position of all 13 cystein bases is identical to positions in H proteins of RPV Kabete O and L strains. Studies of the hydrophobic profile of the compared proteins have shown 2 potential transmembrane fragments.

Animals↗

[Molecular basis of changes in biological properties of foot and mouth disease virus of subtype A22].

Primary structure of capsid proteins and RNA polymerase of three closely related strains of foot and mouth disease virus (FMDV), subtype A22, differing by biological properties (the initial epitheliotropic strain A22 550 and its derivatives: thermoresistant myotropic A22 550/4 and thermosensitive attenuated A22 645) are compared by nucleic acid sequencing and analysis of the amino acid sequencing. The study revealed 1 substitute in VPI and 8 in RNA polymerase in the myotropic variant and 1 substitute in VP2, 2 in VP3, 13 in VP1, and 3 in RNA polymerase. Alteration of A22 550/4 tropism is probably due to a single substitution Gly 145-->Thr in the RGD site of capsid protein VP1. Analysis of the origin and biological properties of the attenuated strain A22 645 and the results of studies of the primary structure of proteins permit us to hypothesize that attenuation is polygenic, caused by adaptation to a heterologous host (continuous porcine cell culture), and can be expressed by changes in the structure of virus antireceptor providing its binding to cell receptors. Sites responsible for the reproduction of A22 FMDV at certain temperatures are presumably located in RNA polymerase.

Amino Acid Sequence↗

[A simple method for RNA isolation and purification].

RNAs from Escherichia coli cells, Syrian hamster kidney cells, foot-and-mouth disease virus, and Newcastle disease virus were isolated using glass fiber filters GF/F or GF/C. The RNA was reversibly adsorbed on the filters in the presence of 2 M guanidine thiocyanate and 50% ethanol (or isopropanol) and eluted with water. The fraction composition of the isolated RNA depended on the guanidine thiocyanate and alcohol concentrations in the adsorption and washing procedures. The RNA preparations obtained by this method can be used in reverse transcription and reverse transcription-polymerase chain reaction without additional purification.

Animals↗

[Adenovirus KR95, isolated from chickens during an outbreak of hydropericarditis, is the pathogen of this disease].

Virus agent KR95 was isolated from the liver of dieoff chickens during an outbreak of hydropericarditis syndrome at a poultry farm in Russia. Electron microscopic examination of the virus morphology, comparative restriction cleavage map construction, DNA-DNA hybridization, and analysis of structural proteins from purified and disrupted virions showed that the agent is to be classified as type 1 avian adenovirus.

Adenoviridae Infections↗

[Characteristics of field isolates of Newcastle disease virus isolated in the course of outbreaks in the poultry plant in the Leningrad region in 2000].

A field isolate of Newcastle disease virus (NDV) was isolated in the Russko-Vysotskaya poultry farm, Leningrad region. Within four days after infection, the isolate caused 100% mortality in 60-day-old susceptible chickens. The HA titer of the allantoic fluid samples collected after one passage in SPF-chicken embryos was 1:512, and it reacted only with the NDV specific antiserum in HI test. Intracerebral pathogenicity index and mean embryo death time were 1.97 and 49 hours, respectively. The isolate has the amino acid sequence of the protease cleavage site of the fusion protein F0 (112R-R-Q-R-R-F117), which is similar to that in the velogenic strains of NDV. Therefore, it was concluded that the virus isolated in this work was an ethiological agent of the ND outbreak in this poultry farm.

Animals↗

[Biological properties of the chick infectious bronchitis virus isolated in Russia].

A field chick infectious bronchitis virus (IBV) was isolated from the pathological material on chick embryos. The nucleotide sequence of the S1 gene was determined and comparatively analyzed with some sequences of this gene of foreign and Russian vaccine strains and isolates. A cross-neutralization test using sera to various IBV seroptypes was performed. The isolate was shown to antigenically differ from the reference strains. Bioassay was carried out, by using one-day chicks and the immunogenic properties of the virus were investigated.

Animals↗

[Cloning fragments of the RNA polymerase gene of an attenuated variant of the foot-and-mouth disease virus A22].

The cDNA fragments complementary to RNA-polymerase gene and 3'-untranslated genome region of attenuated foot-and-mouth disease virus strain A(22)645 have been synthesized and cloned into a plasmid vector pUC19 in E. coli JM109. The cloned cDNA fragments were characterized as to their size, orientation towards the plasmid, and localization in the virus genome. Restriction maps for complete gene and two cDNA clones were constructed.

Aphthovirus↗