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Biomedical subjects

L M Selimova

Publications and source records attributed to L M Selimova.

At least 19 recordsLinked to original sources

[Decrease of HIV-1 replicative capacity after serial passage in MT-4 cells under conditions of the combined antiretroviral therapy].

The replicative activity of HIV-1/IIIB was determined in MT-4 cells under conditions of combined HIV reverse transcriptase and protease inhibitors in the presence of four different drug cocktails: (1) phosphazide, didanosine, nevirapine; (2) stavudine, didanosine, nevirapine; (3) phosphazide, didanosine, nevirapine, indinavir; (4) stavudine, didanosine, nevirapine, indinavir. The concentration of every inhibitor was 10 times higher than the 50% effective concentration. Alpha interferon was used as a natural antiretroviral agent in addition. The virus was subjected to 5 serial passages in the presence of the drug cocktails and then to 5 serial passages without the agents using cocultivation of infected and uninfected cells at ratio 1:5 to increase virus activity. Virus replication in the presence of all the drug combinations resulted in the appearance of HIV-1 variants with low replicative activity that was insignificantly increased during further passages even without the antiretroviral agents. If extrapolated to the clinical practice, these results indicate that all the drug cocktails were effective inhibitors of HIV-1 replication because the virus variants with high replicative activity did not emerge. Moreover, the results showed that the clinical use of the drug cocktails was promising.

Anti-HIV Agents↗

[Molecular genetic characteristics of HIV-1 in Russia].

The paper presents data on the variants of human immunodefficiency virus type 1 (HIV-1) currently circulating in Russia. The subtype A HIV-1 variant dominating is shown to be most widespread among drug-injected users in the most regions under study. By using the results of an analysis of 1,464 blood samples taken in the past 4 years in 69 subjects of the Russian Federation, the authors have estimated that this HIV-1 variant is responsible for 93% of all HIV-infection cases in the country. The greatest regional genetic diversity was observed in Moscow and its mean (2.35(1.59) was found to be comparable to that (2.41(1.85) in the whole country. Penetration of the subtype A IV-1 variant early detectable among drug-users into other risk groups was noted.

HIV Infections↗

Serological approaches to subtyping of HIV-1 in injecting drug users in Russia: evidence of subtype homogeneity at the main sites of the epidemic.

The aim of this study was to develop and evaluate a simple V3 peptide-based enzyme immunoassay (PEIA) for large-scale serotyping of HIV-1 specimens derived from injecting drug users (IDUs) in the Russian Federation. Two synthetic peptides were evaluated, named P1 (RKSIHIGPGRAFYATGD) and P2 (RTSVRIGPGQVFYKTGD), in an PEIA on 63 HIV-1 IDUs sera for which genotypes had been determined by heteroduplex mobility assay (HMA) and sequencing. The sensitivities of P1 (subtype B) and P2 (subtype A) were 87% and 75% respectively. Specificity of the assay was 100% for both peptides, with 100% predictive values of a monoreactive positive test for both peptides. Using the PEIA with peptides P1 and P2, we have serotyped 375 of 477 serum samples derived from IDUs in 4 main sites of the HIV-1 epidemic in Russia. The results demonstrated a high level of subtype homogeneity in all regions studied. In 3 of 4 territories, Tver' (n=345), and Rostov-on-Don (n=61) regions, and Krasnodar Kray (n=27), 100% of typable sera were found to belong to env subtype A. On the other hand, all specimens serotyped in the Kaliningrad region (n=38) belonged to env subtype B, and there is strong evidence that the recombinant gagAenvB virus which has caused the largest outbreak of HIV-1 in Russia is located in this region. At the present time another parental strain with gagBenvB genotype is of minor importance in the IDUs HIV-1 epidemic in Russia.

Amino Acid Sequence↗

[Group- and type-specific antibodies to the gag-gene protein p26 of the human immunodeficiency virus immunological type 2 in infected patients].

The immunoreactivity of serum samples from HIV-2 infected persons was studied by radioimmunoprecipitation assay (RIPA) in homo- and heterotypic variants. In homotypic RIPA all sera studied have precipitated the viral glycoprotein with the high molecular weight, gp170. Some samples were active for gag-gene products, p57 and p26 in homotypic RIPA. Most these samples were also active for heterotypic gag-protein of HIV-1 serotype, p55 and p24. On the other hand anti-gag reactivity of one sample was limited only by homotypic activity. Some causes of this phenomena as well as its significance for serodiagnosis of HIV infection are discussed.

Antibody Specificity↗

Consolidation of intramolecular disulfide bonds in influenza virus hemagglutinin as an element of intracellular maturation.

Electrophoretic behavior of influenza virus hemagglutinin during SDS electrophoresis in polyacrylamide gel is critically dependent on the life time in the infected cells and also on the conditions of sample preparation and analysis. During electrophoresis of total cell lysate proteins under nonreducing conditions the short-labeled hemagglutinin is detected as multiple bands, electrophoretic mobility of most of them being lower than that of hemagglutinin of viral particles. This heterogeneity failed to be detected during electrophoresis under reducing conditions which is indicative of the differences in the number or direction of intramolecular disulfide bonds between short-labeled and mature hemagglutinin molecules. After chasing at 37 or 20 degrees hemagglutinin gradually assumes an electrophoretic character identical to that of virion protein. Chasing at 0 degrees or the substitution of parafluorophenyl alanine for phenylalanine in the maintenance medium during labeling prevents maturation. At the same time, both iodacetamide perfusion of infected cells and the preparation of nuclei-free extract prior to SDS lysis result in a marked increase in the yield of disulfide mature short-labeled hemagglutinin. These results suggest that disulfide maturation in hemagglutinin proceeds in two stages: a relatively rapid (with respect to synthesis completion) formation of intramolecular disulfide bonds as such followed by a much slower consolidation of bridges against the action of endogenous cell reductants which activate during lysis. Consolidation may be caused by two factors: trimerization of hemagglutinin monomers or their covalent post-translational modifications.

Animals↗

Breaking and rejoining of disulfide bonds in external glycoproteins of influenza virus.

The treatment of influenza virus with increasing concentrations of mercaptoethanol led to a progressive inhibition of hemagglutinating activity and infectivity and to gradual changes of electrophoretic behavior of virus glycoproteins under nonreducing conditions. These phenomena are most likely the result of consecutive destruction of disulfide bonds in the proteins. So, different disulfide bonds in glycoproteins of native viral particles differ in their sensitivity to the reductant. It has been found that broken disulfide bonds may re-form and the restoration seems to be most rapid in those disulfide bonds that are the least sensitive to the reductant under the native condition.

Disulfides↗

[Preparative isolation of myxovirus glycoproteins and the study of their immunogenic properties].

Preparative isolation of glycoproteins from ortho- and paramyxoviruses is described. The purified concentrated virus has been treated with nonionic detergent MESK with subsequent removal of viral cores by centrifugation. Supernatant was sterilized by filtration through the nuclear filters and cleared from detergent by dialysis. Glycoproteins obtained have not contained contaminating cellular or core viral proteins or viral shell lipids. In the absence of detergent, glycoproteins have formed the peculiar mycelial complexes. Biological activity of glycoproteins was kept at high level. Glycoproteins output at isolation from different strains of influenza viruses A, B and Sendai virus varied from 75 to 98%. Immunogenetic study of the preparations obtained has demonstrated their capability to stimulate the formation of antibodies against both viral glycoproteins comparable with the capability of intact virus. The obtained level of immunity was enough to protect organism against homologous infection. Samples of glycoproteins obtained are up to standards for subunit vaccines, and the technique of their preparation is perspective as far as the production of vaccine preparations is concerned.

Animals↗

Disulfide bonding in influenza virus proteins as revealed by polyacrylamide gel electrophoresis.

Disulfide bonding in the major proteins of influenza virus A, WSN strain, was studied by electrophoresis in sodium dodecyl sulfate-polyacrylamide gels under reducing and nonreducing conditions. The electrophoretic behavior of the proteins correlated with their localization in the virions and their chemical composition. The internal proteins of the viral particles, i.e. matrix and nucleoproteins, were shown to contain a relatively small number of cysteine residues. Electrophoresis under nonreducing conditions yielded multiple forms of the proteins which could be discriminated by small but readily observable, reproducible differences in their migration rates in the gel. the multiplicity of the protein forms was caused by the formation of intramolecular disulfide bonds in matrix and nucleoproteins that arose during or after solubilization in sodium dodecyl sulfate. On the other hand, we failed to detect native inter- and intramolecular linkages in matrix and nucleoproteins. External glycoproteins of the virions (HA and NA) had, in contrast to the internal ones, a higher number of cysteine residues and native disulfide bonds. At least three disulfide linkages were revealed in HA and NA in our experiments. In uncleaved HA all of the linkages were intramolecular. In NA at least one disulfide bond linked two identical polypeptides into a dimer. It was established that the reduction of the different disulfide linkages in HA and NA required different concentrations of the reducing agent.

Chemical Phenomena↗

Reevaluation of the proteins in rabies virus particles.

Protein content and localization of individual proteins of rabies virus have been studied. Four major proteins (estimated molecular weights, about 65,000, 54,000, 37,000 and 21,000), one minor component (molecular weight, about 200,000), and one intermediate (as regards its molar concentration) component (molecular weight, about 43,000) were revealed in rabies virus particles. In subviral particles accumulating in virus-infected cells, the 200,000-, 54,000-, and 37,000-dalton components were revealed. Some properties of the subviral particles allow them to be considered as viral nucleocapsids and the proteins composing them as analogs of L, N, and NS proteins of other rhabdoviruses. Thus, the protein composition of the rabies virus strain studied does not differ from that of other rhabdoviruses.

Cell Line↗

Enhancement of polysome formation and protein synthesis in Sendai virus-infected cells.

A considerable stimulation of total protein synthesis in Sendai virus-infected chicken fibroblasts occurred 18 h after infection. The stimulation of synthesis was shown to be due mainly to the synthesis of virus-specific proteins; the synthesis of host proteins was either unchanged or slightly enhanced. The level of functional polyribosomes in virus-infected cells was also increased as compared to that in mock-infected control while the number of free 80S ribosomes was proportionally decreased.

Animals↗

Protein synthesis in Sendai virus-infected cells.

The rate of protein synthesis in chicken embryo cells infected with Sendai virus 18 to 20 h previously was about two times greater than in mock-infected controls. At this time of infection six stable virus-induced proteins, four major structural proteins (P, NH, NP and M) and two non-structural proteins (28K and 61K), were identified by electrophoresis in SDS-polyacrylamide gel of total cell extracts. The structural glycopeptide F was not detected in the infected cell extracts. Pulse-chase experiments showed that PN NP, M and 28K proteins either did not undergo any post-translational processing or the processing occurred very rapidly. By contrast, a glycopeptide NH was apparently derived from one of two unstable precursons, 69K or 63K, which were revealed only after a short pulse. The synthesis of virus-specific proteins appeared to be regulated since its rate varied for individual classes of proteins. In nucleocapsid-particles isolated from infected cells two major structural proteins (P and NP) were found. A minor component with a very large mol. wt. was revealed in these particles as well as in the virus particle.

Amino Acids↗