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Biomedical subjects

G Morozov

Publications and source records attributed to G Morozov.

7 recordsLinked to original sources

Construction and sequence analysis of subtraction complementary DNA libraries from human preimplantation embryos.

PURPOSE: Because stage-specific genetic expression in human preimplantation development is not sufficiently studied, we have undertaken the construction of a subtraction complementary DNA (cDNA) library enriched for transcripts specific for human blastocysts. METHODS: For this purpose individual pools of cDNAs synthesized from four hatched blastocysts and three cleaving 8- to 10-cell embryos were exposed to suppression subtractive hybridization to minimize the presence of transcripts of housekeeping genes and other genes of maternal origin known to be expressed earlier in preimplantation development. Random clones of this library were sequenced and analyzed using the BLAST algorithm. RESULTS: The resulting subtraction library had a complexity of 3 x 10(5) and an average size of inserts of about 0.8 kb. Sequencing of random library clones revealed the following human genes: CD9 antigen, fatty acid binding protein, ferritin heavy chain, amyloid precursor, MAP kinase messenger RNAs, DNA clone 127H14, messenger RNA for diacylglycerol kinase, a sequence homologous to C1 inhibitor, messenger RNA for the KIAA0145 gene, and others. CONCLUSIONS: The presence of these genes in human preimplantation development suggests expression specific to the blastocyst stage.

Algorithms↗

Sequence analysis of libraries from individual human blastocysts.

PURPOSE: It has recently become possible to construct cDNA libraries from individual human blastocysts to investigate the expression of embryonic genes in human preimplantation development. We have previously reported the expression of beta-actin, CD-59, and homeobox OCT-3 and identified almost-complete homology of sequences to human histone 3.1 and human ribosome protein S25. In the present paper, our further sequencing analysis of cDNA libraries from single human blastocysts is described. METHODS: cDNA libraries were constructed from 13 blastocysts. Sequence analysis was performed in 120 clones from one of these cDNA libraries with fragments of 50 to 1000 bp. Their sequence identity was analyzed using the expressed sequence tag (EST) database. RESULTS: The presence of two housekeeping genes, hexokinase I and serine/threonine phosphorylase, and four other ESTs was demonstrated, the identity of which, with particular gene expression in preimplantation development, has not yet been established. CONCLUSIONS: The data demonstrate the usefulness of constructing cDNA libraries from individual human blastocysts and their values in the analysis of genetic expression in human preimplantation development.

Blastocyst↗

Isolation of cDNA libraries from individual human preimplantation embryos.

Although available data from the mouse model suggest that morphogenesis during preimplantation development is dependent on the expression of embryonic genes, convincing data for human preimplantation embryos are missing. To investigate the expression of genes involved in human preimplantation development we constructed cDNA libraries from human individual blastocysts and screened them for the expression of beta-actin, CD59, homeoboxes OCT-3 and HOXA4, and HLA-G and hMLH-1 genes. Beta-actin, CD59, and OCT-3 were detected by reverse transcription-polymerase chain reaction (RT-PCR), while HOXA4, HLA-G and hMLH-1 were undetected. Sequencing of 48 random clones from two libraries revealed a different identity to the known genes including 99% identity to human histone 3.1 and human ribosome protein S25 complete cDNA. These data demonstrate the feasibility of constructing cDNA libraries from individual human preimplantation embryos and their potential usefulness in the assessment of the relevance of specific gene expression in the failures of preimplantation development.

Blastocyst↗

Expression of homebox-containing genes in human preimplantation development and in embryos with chromosomal aneuploidies.

PURPOSE: The purpose of the study was to investigate homeobox gene expression in human oocytes and preembryos and in postimplantation embryos with impaired embryonic development determined by chromosomal abnormalities. METHODS: Reverse transcriptase-polymerase chain reaction (RT-PCR) with intron spanning primer sets for Homeobox gene sequences was used. RESULTS: The homeobox genes HoxA4, HoxA7, HoxB4, and HoxB5 were present in human oocytes and cleaving normal and triploid embryos. The expression pattern was different between chromosomally abnormal and normal first-trimester embryos. Of four homeobox transcripts (HoxA7, HoxB4+ ++, HoxB5, and HoxC6) that are expressed in diploid embryos, only HoxA7, HoxB4 and HoxC6 were present in a trisomy 7 embryo, and only HoxB4 and HoxB 5 in triploid embryos and an embryo with trisomy 9. Cloning experiments revealed differences in the number of homeobox clones obtained from trisomy 7 and control embryos. CONCLUSIONS: The transcripts of homeobox genes, HoxA4, HoxA7, HoxB4, and HoxB5, were present in oocytes and cleaving embryos. The pattern of expression of homeobox genes in cultured fibroblasts derived from spontaneously aborted embryos with aneuploidies was different from that in control diploid cells.

Abortion, Spontaneous↗

Homeobox gene expression in human oocytes and preembryos.

Homeobox gene expression in human preimplantation development has not been established. We used reverse transcriptase-polymerase chain reaction (RT-PCR) with intron spanning primer sets to investigate the presence of mRNA of homeobox genes in human oocytes and preembryos. RT-PCR products obtained from normal and unfertilized oocytes, from cleaving normal and triploid embryos, and from morulae and blastocysts were cloned, sequenced, and analyzed for the presence of homeobox sequences. The presence of mRNA of homeoboxes HoxA4 and HoxA7 was demonstrated; HoxA4 was present in normal and unfertilized oocytes and also in a 4-cell embryo. HoxA7 was present in normal oocytes and cleaving triploid embryos.

Amino Acid Sequence↗