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A I Bogush

Publications and source records attributed to A I Bogush.

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[Z-form of intraphage DNA].

The bacteriophage lambda gt10 DNA containing an insertion of 20 pairs of GC-bases capable of being arranged as Z-form was cloned. Two independent methodological approaches based on the main properties of Z-form were used to study the shape of the insertion: formation of transition bridges composed of unpaired nucleotides between left-rotating Z-forms and right-rotating B-forms of helix (j-domain) and high immunogenic activity of Z-form. O-beta-diethylaminoethylhydroxyamine (OHA), an analogue of hydroxylamine, is capable of reacting specifically with unpaired cytidines. In this work this modification was used to inhibit the process of restriction at BamH1-site adjacent to (gc)10 insertion, that N-Methyl-bis(2-chloethyl) amine (MBCA) is capable of fixing the Z-form of the insertion in situ. Fixed Z-form is conserved even after DNA has been isolated from bacteriophage, thereby providing an opportunity of its identification by anti-Z-antibodies. It was shown that from 4 to 6% of the total number of insertions are in the Z-form. The hypothesis of significant role of Z-form in the process of packing of DNA molecules in capsid is put forward.

Bacteriophage lambda↗

[DNA inside bacteriophage lambda forms a Z-form].

The site of the transition regions between the B- and Z-forms of the DNA duplex (B-Z junction) may serve as marker of the existence of Z-DNA in situ. The structure of (dC-dG)10 insert in the bacteriophage lambda gt10 has been studied in situ by modification of B-Z junction with O-beta-diethylaminoethylhydroxylamine (OHA). The latter is an analogue of hydroxylamine possessing specificity with respect to unpaired cytidine. This modification inhibited the process of restriction at BamHI site adjacent to the Z-insert. Judging by the extent of the inhibition about 5% of all inserts has been converted in Z-form. The certain role of Z-form at process of the packaging DNA into bacteriophage's capsid suggest.

Bacteriophage lambda↗