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Biomedical subjects

M V Mikheev

Publications and source records attributed to M V Mikheev.

6 recordsLinked to original sources

[Phylogenetic analysis of chemokine-binding protein gene from orthopoxviruses].

Poxviruses, belonging to the genus of Orthopoxviruses and Leporipoxviruses, express a protein that binds a wide spectrum of CC-chenokines. The above viral protein (vCCI) has no homology by the amino acid sequence with the known cellular receptors of chemokines or with any other proteins represented in databases. Sixty-nine nucleotide sequences of the vCCI protein gene of 4 Orthopoxviruses, which are pathogenic to man, and of 2 species, to whom man is immune, as well as 16 of such sequences borrowed from GenBank were subjected to the phylogenetic analysis. Strains of Orthopoxviruses, except for cowpox viruses (CPXV), were found to cluster together in groups according to their specific attribute. CPXV isolates can be conditionally divided into 2 subgroups, which are much remote from one another evolutionally. Four subgroups were defined for smallpox virus with their strains originating from different geographic regions.

Base Sequence↗

Analysis of the monkeypox virus genome.

Monkeypox virus (MPV) belongs to the orthopoxvirus genus of the family Poxviridae, is endemic in parts of Africa, and causes a human disease that resembles smallpox. The 196,858-bp MPV genome was analyzed with regard to structural features and open reading frames. Each end of the genome contains an identical but oppositely oriented 6379-bp terminal inverted repetition, which similar to that of other orthopoxviruses, includes a putative telomere resolution sequence and short tandem repeats. Computer-assisted analysis was used to identify 190 open reading frames containing >/=60 amino acid residues. Of these, four were present within the inverted terminal repetition. MPV contained the known essential orthopoxvirus genes but only a subset of the putative immunomodulatory and host range genes. Sequence comparisons confirmed the assignment of MPV as a distinct species of orthopoxvirus that is not a direct ancestor or a direct descendent of variola virus, the causative agent of smallpox.

Animals↗

Human monkeypox and smallpox viruses: genomic comparison.

Monkeypox virus (MPV) causes a human disease which resembles smallpox but with a lower person-to-person transmission rate. To determine the genetic relationship between the orthopoxviruses causing these two diseases, we sequenced the 197-kb genome of MPV isolated from a patient during a large human monkeypox outbreak in Zaire in 1996. The nucleotide sequence within the central region of the MPV genome, which encodes essential enzymes and structural proteins, was 96.3% identical with that of variola (smallpox) virus (VAR). In contrast, there were considerable differences between MPV and VAR in the regions encoding virulence and host-range factors near the ends of the genome. Our data indicate that MPV is not the direct ancestor of VAR and is unlikely to naturally acquire all properties of VAR.

Amino Acid Sequence↗

[Identification of orthopoxvirus species using oligonucleotide micro-chips].

A method for describing the Orthopoxviruses that are pathogenic both to man and animals is described in the article. The method is based on hybridization of a fluorescently labelled amplified DNA sample with oligonucleotides, which were immobilized in a microchip. Species-specific regions within the crmB gene encoding a viral analogue of the tumor necrosis factor receptor, i.e. an important gene determining the pathogenicity of the mentioned Orthopoxviruses type, were used as a target for identification. The identification procedure takes around 6 hours and does not demand any costly equipment (a portable fluorescent microscope can be used).

Animals↗

[Construction of DNA-fragments' libraries with complete genomes of different variola strains].

Libraries of hybrid plasmids carrying DNA fragments of complete genomes of 8 variola virus strain from the Russian Collection belonging to 2 epidemical types and isolated in various geographic regions of the world were obtained. Genomic sequences of variola virus can be thus preserved for a long time in a biologically safe form and provide the research work on studying the genetic organization of this unique virus and on developing modern methods for rapid detection of variola virus and other orthopoxviruses.

DNA, Viral↗