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Iu B Lebedev

Publications and source records attributed to Iu B Lebedev.

At least 19 recordsLinked to original sources

[Genetic structure of people from the Volga-Ural region and Central Asia from data of Alu-polymorphism].

Nine Alu loci (Ya5NBC5, Ya5NBC27, Ya5NBC148, Ya5NBC182, YA5NBC361, ACE, ApoA1, PV92, TPA25) were analyzed in six ethnic populations (Trans-Ural Bashkirs, Tatars-Mishars, Mordovians-Moksha, Mountain Maris, Udmurts, and Komi-Permyaks) of the Volga-Ural region and in three Central Asian populations (Uzbeks, Kazakhs, and Uigurs). All Alu insertions analyzed appeared to be polymorphic in all populations examined. The frequency of insertion varied from 0.110 in Mountain Maris at the Ya5NBC5 locus to 0.914 in Tatars at the ApoA1 locus. The data on the allele frequency distribution at nine loci point to the existence of substantial genetic diversity in the populations examined. The value of the observed heterozygosity averaged over nine Alu insertions varied from 0.326 in Mountain Maris to 0.445 in Kazakhs and Uigurs. The level of the interpopulation genetic differences for the Volga-Ural population (Fst = 0.061) was higher than for the populations of Central Asia (Fst = 0.024), Europe (Fst = 0.02), and Southeastern Asia (Fst = 0.018). The populations examined were highly differentiated both in respect of linguistic characteristics and the geographical position. The data obtained confirmed the effectiveness of the marker system used for the assessment of genetic differentiation and the relationships between the ethnic groups.

Alu Elements↗

[Nucleotide sequences of long terminal repeats of the human endogenous retrovirus (LTR HERV-K) on the short arm of chromosome 7: identification, analysis and evaluation of transcriptional activity].

Six clones containing long terminal repeat (LTR) sequences of human endogenous retrovirus of the HERV-K family were found in the YAC library (1200 kb) of the short arm of human chromosome 7. The sequence sizes of the three clones corresponded to the full-length LTR (969 bp). The LTR localization was determined using FISH and verified by comparison with the GenBank database. All three DNA fragments containing solitary LTRs were transcribed in normal germline cells (testicular parenchyma tissue). The differences in the expression of these clones in the germline tumor cells (seminoma) were observed.

Base Sequence↗

[Long terminal repeat of the human endogenous retrovirus HERV-K in the intron of the ZNF91 gene].

The relative positions of the ZNF91 gene (exon-intron organization) and the HERV-K human endogenous virus long terminal repeat (LTR), which was earlier found to be located in the ZNF91 gene locus, on the EcoRI restriction metric map of the human chromosome 19 were determined with a high resolution. The direction of the ZNF91 gene transcription relative to the chromosome 19 telomeres was determined. The HERV-K LTR was localized to the ZNF91 gene intron 19. The role of retroviral sequences in the evolution of the ZNF91 gene family is discussed.

Base Sequence↗

[New putative gene from human retrovirus-containing locus on chromosome 19].

By means of cDNA selection, a cDNA clone corresponding to a putative gene was isolated. The identified gene was mapped to human chromosome 19 (region 19q12) to the locus containing the human endogenous retrovirus HERV-K LTR. The distance between the LTR and the cDNA fragment is about 20 kb. RT-PCR analysis of the total RNA revealed that the corresponding gene is preferentially expressed in the brain.

Base Sequence↗

[Structural characteristics of four long terminal repeats (LTR) of human endogenous retroviruses and features of their integration sites].

Four LTR-containing regions of human chromosome 19 were sequenced by the primer walking technique using strings of short oligonucleotides tightly bound to the template. A comparative and evolutionary analysis of sequences homologous to human endogenous retroviruses (HERV) was performed, and the prototypes of the LTRs were determined. Analysis of the chromosome 19 sequences adjacent to LTR revealed that LTRs of HERV-K share a common location with other retroposons.

Base Sequence↗

[Primary structure of the E. coli DNA region preceding the tryptophan operon genes].

The nucleotide sequence of 1179 b.p. preceding the trp operon genes has been established. There are no open reading frames large enough to code for proteins containing more than 97 amino acid residues. In all cases the coding sequences do not contain the initiation codons. The determined sequence is concluded to represent an intercistronic region.

Chromosome Mapping↗

[Human genome-specific HERV-K intron LTR genes have a random orientation relative to the direction of transcription, and, possibly, participated in antisense gene expression regulation].

A consensus nucleotide sequence of long terminal repeats (LTRs) of endogenous human-specific retroviruses of the K family (HERV-K) was constructed and used for the genome-wide search for homologies in international databases. There were revealed 142 LTRs, 12 of which were localized in introns of unique human genes. It was found for the first time that ten intron LTRs are absent in the orthologic loci of the chimpanzee genome and the orientation of nine of them is opposite to the transcription direction of the corresponding human genes. A hypothesis was propounded that the found LTRs affect the gene expression by initiation of the antisense RNA synthesis.

Endogenous Retroviruses↗

[The tissue-specific methylation of human-specific endogenous retroviral long terminal repeats].

A possible involvement of retroelements in the epigenetic regulation of human gene expression was considered by the example of methylation of long terminal repeats (LTRs) of the human endogenous retrovirus family K (HERV-K). The methylation status of six HERV-K LTRs was determined in various gene-enriched regions of the human genome. The methylation of four LTRs was shown to be tissue-specific. Our results correlated with published data on the tissue-specific changes in the expression level of human genes adjacent to the LTRs under study. The English version of the paper: Russian Journal of Bioorganic Chemistry, 2004, vol. 30, no. 5; see also http: // www.maik.ru.

3',5'-Cyclic-AMP Phosphodiesterases↗

[Enhancer activity of solitary long terminal repeat of the human endogenous retrovirus of the HERV-K family].

The transient expression of the luciferase reporter gene helped us to detect a tissue-specific enhancer activity of the solitary extraviral long terminal repeat (LTR) of the human endogenous retrovirus K (HERV-K). The LTR was previously mapped to the 19q13.2 locus. It contains a number of potential regulatory elements including TATA box, binding sites for some nuclear factors, and a polyadenylation signal. However, an analysis of the genomic sequences close to the LTR did not reveal any known genes or the expressing marker sequences (EST), whose functioning could be regulated by this LTR. The enhancer activity can be preserved in the solitary LTR due to its involvement in a long-range control of genome functioning or by the absence of functional disruptive mutations within the human-specific LTR, because it is of a relatively young evolutionary age. The English version of the paper: Russian Journal of Bioorganic Chemistry, 2002, vol. 28, no. 4; see also http://www.maik.ru.

Endogenous Retroviruses↗

[A tissue-specific decrease in the pre-mRNA level of L1- and alu-containing alleles of human genes].

LINE1 and Alu retroelements occupy approximately 17 and 13% of the human genome, respectively. They include the evolutionarily youngest element groups Ta-L1, AluYa5, and AluYb8, many inserts of which are polymorphous in the Homo sapiens population. Despite the data on the ability of L1 and Alu elements to cause various modifications of the genome, the effects of these retroelements on gene expression have yet not been studied. Using the RT PCR method, we analyzed the pre-mRNA (heterogeneous nuclear RNA) content of allele pairs of four genes in five human cell lines, heterozygous with respect to intronic inserts of L1 and Alu elements. We showed for the first time a tissue-specific decrease in the pre-mRNA content of the gene allele bearing L1 or Alu inserts relative to the other allele of the same gene lacking the retroelement.

Alleles↗