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Biomedical subjects

I V Lagutina

Publications and source records attributed to I V Lagutina.

3 recordsLinked to original sources

High resolution mapping DNAs by R-loop atomic force microscopy.

R-loops formed by short RNA transcripts have been imaged by atomic force microscopy (AFM) at a constant force in the height mode. The technique was applied to mapping the human endogenous retrovirus K10 family (HERV-K10) long terminal repeats (LTR) within individual plasmids and cosmids. RNA probes specific for the U3 (384 nt) and U5 (375 nt) LTR regions separated by a span of 200 bp were used for R-loop formation with LTRs located within plasmid (3.8 kb) or cosmid ( approximately 40 kb) DNAs. R-loops stabilized by glyoxal treatment and adsorbed onto the mica surface in the presence of magnesium ions looked like looped out segments of RNA:DNA hybrids. The total yield of R-loops was usually approximately 95%. The RNA:DNA hybrids were found to be 12-15% shorter than the corresponding DNA:DNA duplex. The two regions of the LTR could be easily discerned in the AFM images as clearly separated loops. R-loop positions determined on cosmids by AFM were accurate to approximately 0.5% of the cosmid length. This technique might be easily adapted for mapping various sequences such as gene exons or regulatory regions and for detecting insertions, deletions and rearrangements that cause human genetic diseases.

Cosmids↗

Determination of the patterns of hexanucleotide distribution along DNA by electron microscopy.

Hexanucleotides containing modified bases (5-methylcytosine and 2-aminoadenine instead of cytosine and adenine) with increased capacities to bind complementary DNA sequences were used to map the distribution of their complementary sequences in a DNA target using electron microscopy. The method used hexamers to initiate DNA polymerase directed DNA synthesis at complementary sequences along a template. DNA synthesis was limited to about 200 residues by using a low concentration of deoxynucleotide precursors. During DNA synthesis a biotin ligand was incorporated to facilitate the subsequent binding of an electron-dense label (streptavidin-labeled colloidal gold particles) into newly synthesized DNA chains. The method can be implemented with commercially available products. The results demonstrate that the approach can be used to compare primary structural features of DNA fragments. The principles of the method can be adapted to a variety of single molecule detection methods such as electron, scanning tunneling, or atomic force microscopies.

Animals↗