AbstractWe have used DNase I footprinting to examine the formation of intermolecular triple helices at a fragment containing the target sequence A11(AT)6 · (AT)6T11, using oligonucleotides designed to form parallel T · AT and G · TA triplets. We find that, although (TG)6 does not form a complex with (AT)6 · (AT)6, T11(TG)6 forms a stable structure producing a clear footprint which includes the (AT)6 portion of the target site. This complex is not formed in the presence of magnesium, but can be stabilised by either manganese or a triplex-binding ligand
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-propargylamino...
AbstractWe have used DNase I footprinting to examine the effect of a novel naphthylquinoline dimer, ...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-proparaylamino...
AbstractWe have used DNase I footprinting to examine the formation of intermolecular triple helices ...
We have used DNase I footprinting to investigate the recognition of (AT)n tracts in duplex DNA using...
AbstractWe have examined the formation of DNA triple helices between the oligonucleotides T8XT8 (X =...
DNase I footprinting has been used to study the formation of parallel triplexes at oligopurine targe...
Blocks of alternating G·TA and T·AT triplets can be stabilised when anchored to an adjacent block of...
We have used DNase I footprinting to assess the formation of triple helices at 15mer oligopurine tar...
Oligonucleotide-directed triple helix formation offers the possibility of acheiving sequence recogni...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
We have used DNase I footprinting to compare the stability of parallel triple helices containing dif...
We have used DNase I footprinting to examine the binding of five different 17-mer oligonucleotides t...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
AbstractBackground: Polypurine·polypyrimidine sequences of DNA can form parallel triple helices via ...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-propargylamino...
AbstractWe have used DNase I footprinting to examine the effect of a novel naphthylquinoline dimer, ...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-proparaylamino...
AbstractWe have used DNase I footprinting to examine the formation of intermolecular triple helices ...
We have used DNase I footprinting to investigate the recognition of (AT)n tracts in duplex DNA using...
AbstractWe have examined the formation of DNA triple helices between the oligonucleotides T8XT8 (X =...
DNase I footprinting has been used to study the formation of parallel triplexes at oligopurine targe...
Blocks of alternating G·TA and T·AT triplets can be stabilised when anchored to an adjacent block of...
We have used DNase I footprinting to assess the formation of triple helices at 15mer oligopurine tar...
Oligonucleotide-directed triple helix formation offers the possibility of acheiving sequence recogni...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
We have used DNase I footprinting to compare the stability of parallel triple helices containing dif...
We have used DNase I footprinting to examine the binding of five different 17-mer oligonucleotides t...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
AbstractBackground: Polypurine·polypyrimidine sequences of DNA can form parallel triple helices via ...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-propargylamino...
AbstractWe have used DNase I footprinting to examine the effect of a novel naphthylquinoline dimer, ...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-proparaylamino...