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V L Mantieva

Publications and source records attributed to V L Mantieva.

4 recordsLinked to original sources

The similarity of DNA sequences remaining bound to scaffold upon nuclease treatment of interphase nuclei and metaphase chromosomes.

The fragments of DNA attached to protein skeleton of interphase nuclei or metaphase chromosomes were obtained. Both the method involving restriction endonuclease treatment/1,2/and a novel procedure based on mild staphylococcal nuclease digestion were used. In the latter case, DNA fragments remaining bound to nuclei or chromosomes are not enriched in satellite but only in abundant middle repetitive DNA. The shorter the fragments of attached DNA, the higher the content of middle repetitive DNA in the fraction. It has a slightly higher density in a CsCl gradient comparing to the main DNA. The yield of attached DNA, its distribution in a CsCl density gradient, and its renaturation properties are essentially the same for interphase and metaphase chromosomes. The average size of DNA loops was found to be equal to approximately 60 kb for both metaphase chromosomes and interphase nuclei. The conclusion has been drawn that the bulk of attachment sites of DNP fibrils to axial chromosomal structures remains unchanged during the cell cycle.

Animals

DNA adjacent to attachment points of deoxyribonucleoprotein fibril to chromosomal axial structure is enriched in reiterated base sequences.

Mitotic chromosomes of L cells (metaphase plates) were dehistonized by centrifugation through a layer of 2 M NaCl and then treated with restriction endonuclease Bam HI. Alternatively, they were pretreated with EcoRI endonuclease, dehistonized, and additionally digested with EcoRI or HindIII. The DNA remaining attached to the axial structure of the chromosomes was isolated and investigated in renaturation experiments. It was found to be enriched in reiterated base sequences belonging to the satellite and to abundant intermediate repeats. The CsCl density gradient ultracentrifugation of this DNA separated the satellite from the fraction containing intermediate repeats.

Base Sequence

Studies of the UV-sensitivity of virus-specific RNA synthesis in cells infected or transformed by adenovirus 5 and SV 40.

The effect of UV-irradiation on host and virus-specific RNA synthesis in cells infected or transformed by tumor viruses (Ad 5 and SV 40) was studied. It was found that the synthesis of host and Ad 5 RNA in infected KB cells was almost euqally inhibited upon UV-irradiation; the transcription of the EcoRI produced fragements--fragment B was inhibited to a greater extent than fragment A, suggesting that the transcription of the whole Ad 5 genome starts from the left side. The transcription of viral sequences in transformed cells, on the other hand, was more resistant to UV-irradiation than the transcription of the host ones. The results obtained suggest that the small size of the virus transcriptions, or their location at the beginning of large host transcriptions, may be responsible for the observed data.

Adenoviridae

The existence of triphosphorylated 5'-ends in virus-specific RNA isolated from SV-40 transformed cells.

The question about the nature of promoters in the transcriptional units containing SV-40 sequences in transformed cells was analyzed. It was found that the pulse-labeled RNA hybridizing to SV-40 DNA contains small but significant amounts of triphosphorylated 5'-ends detected as pppGp in alkaline hydrolyzates of this RNA. In another series of experiments the fragments of RNA containing triphosphorylated 5'-ends about 100 nucleotides in length have been isolated by hydroxyapatite chromatography. Some of them form hybrids with SV-40 DNA. The conclusion is drawn that at least some of SV-40 promoters are used for transcription initiation in SV-40 transformed cells.

Alkaline Phosphatase