PubMed Health⌕ Search

Biomedical subjects

S Kuznetsova

Publications and source records attributed to S Kuznetsova.

4 recordsLinked to original sources

Monitoring interfacial bioelectrochemistry using a FRET switch.

Generation of functionally active biomolecular monolayers is important in both analytical science and biophysical analyses. Our ability to monitor the redox-active state of immobilized proteins or enzymes at a molecular level, from which stochastic and surface-induced variations would be apparent, is impeded by comparatively slow electron-transfer kinetics and associated signal:noise difficulties. We demonstrate herein that by covalently tethering an appropriate dye to the copper protein azurin a highly oxidation-state-sensitive FRET process can be established which enables redox switching to be optically monitored at protein levels down to the zeptomolar limit. The surface-potential-induced cycling of emission enables the redox potential of clusters of a few hundred molecules to be determined.

Azurin↗

Gene activation by triplex-forming oligonucleotide coupled to the activating domain of protein VP16.

Triplex-forming oligonucleotides (TFOs) are generally designed to inhibit transcription or DNA replication but can be used for more diverse purposes. Here we have designed a chimera peptide-TFO able to activate transcription from a target gene. The designed hybrid molecule contains a triplex-forming sequence, linked through a phosphoroamidate bond to several minimal transcriptional activation domains derived from Herpes simplex virus protein 16 (VP16). We show here that this TFO-peptide chimera (TFO-P) can specifically recognise its DNA target at physiological salt and pH conditions. Bound to the double-stranded target DNA in a promoter region, the TFO-P is able to activate gene expression. Our results suggest that this type of molecule may prove useful in the design of new tools for artificial modulation of gene expression.

Amino Acid Sequence↗

Stability of a low molecular mass cytotoxin from the sea anemone Radianthus macrodactylus and membrane-toxin interactions.

Differential scanning calorimetry, intrinsic fluorescence and SDS-polyacrylamide-gel-electrophoresis have been applied for the study of the low molecular mass cytotoxin from the sea anemone, Radianthus macrodactylus when in solution and in complexes with phospholipids and erythrocyte membranes. The thermodynamic parameters of toxin denaturation in solution have been obtained. It is shown that one molecule of this toxin withdraws 10 +/- 2 dipalmitoylphosphatidylcholine molecules through cooperative transition. The effect of toxin on dog erythrocytes causes a change in the polypeptide contents of erythrocyte ghosts.

1,2-Dipalmitoylphosphatidylcholine↗