DNase I footprints of intermolecular DNA triplexes are often accompanied by enhanced cleavage at the 3′-end of the target site at the triplex–duplex junction. We have systematically studied the sequence dependence of this effect by examining oligonucleotide binding to sites flanked by each base in turn. For complexes with a terminal T.AT triplet, the greatest enhancement is seen with ApC, followed by ApG and ApT, with the weakest enhancement at ApA. Similar DNase I enhancements were observed for a triplex with a terminal C+.GC triplet, though with little difference between the different GpN sites. Enhanced reactivity to diethylpyrocarbonate was observed at As that flank the triplex–duplex junction at AAA or AAC but not AAG or AAT. Fluoresce...
We have studied the formation of DNA triple helices in different sequence contexts and show that, fo...
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix...
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix...
DNase I footprints of intermolecular DNA triplexes are often accompanied by enhanced cleavage at the...
Triplex-forming oligonucleotides (TFOs) can be used to target DNA in a sequence-specific fashion, an...
DNase I footprinting has been used to study the formation of parallel triplexes at oligopurine targe...
We have used DNase I footprinting to examine the binding of five different 17-mer oligonucleotides t...
AbstractWe have examined the formation of DNA triple helices between the oligonucleotides T8XT8 (X =...
We have used DNase I footprinting to examine the binding of five different 17-mer oligonucleotides t...
Oligonucleotides can bind to duplex DNA in a sequence specific manner, forming triple standard DNA. ...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
We have used DNase I footprinting to assess the formation of triple helices at 15mer oligopurine tar...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
We have used DNase I footprinting to investigate the recognition of (AT)n tracts in duplex DNA using...
Oligonucleotide-directed triple helix formation offers the possibility of acheiving sequence recogni...
We have studied the formation of DNA triple helices in different sequence contexts and show that, fo...
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix...
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix...
DNase I footprints of intermolecular DNA triplexes are often accompanied by enhanced cleavage at the...
Triplex-forming oligonucleotides (TFOs) can be used to target DNA in a sequence-specific fashion, an...
DNase I footprinting has been used to study the formation of parallel triplexes at oligopurine targe...
We have used DNase I footprinting to examine the binding of five different 17-mer oligonucleotides t...
AbstractWe have examined the formation of DNA triple helices between the oligonucleotides T8XT8 (X =...
We have used DNase I footprinting to examine the binding of five different 17-mer oligonucleotides t...
Oligonucleotides can bind to duplex DNA in a sequence specific manner, forming triple standard DNA. ...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
We have used DNase I footprinting to assess the formation of triple helices at 15mer oligopurine tar...
In order to enhance DNA triple helix stability synthetic oligonucleotides have been developed that b...
We have used DNase I footprinting to investigate the recognition of (AT)n tracts in duplex DNA using...
Oligonucleotide-directed triple helix formation offers the possibility of acheiving sequence recogni...
We have studied the formation of DNA triple helices in different sequence contexts and show that, fo...
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix...
The energetics of cooperative binding by oligodeoxyribonucleotides to adjacent sites by triple helix...