Triple-helical nucleic acids are formed by binding an oligonucleotide within the major groove of duplex DNA. These complexes offer the possibility of designing oligonucleotides which bind to duplex DNA with considerable sequence specificity. However, triple-helix formation with natural nucleotides is limited by (i) the requirement for low pH, (ii) the requirement for homopurine target sequences, and (iii) their relatively low affinity. We have prepared modified oligonucleotides to overcome these limitations, including the addition of positive charges to the sugar and/or base, the inclusion of cytosine analogues, the development of nucleosides for recognition of pyrimidine interruptions and the attachment of one or more cross-linking groups....
AbstractWe have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair ol...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-propargylamino...
Oligonucleotides can bind to duplex DNA in a sequence specific manner, forming triple standard DNA. ...
Triple-helical nucleic acids are formed by binding an oligonucleotide within the major groove of dup...
Oligodeoxyribonucleotide-directed triple-helix formation offers a chemical approach for the sequence...
Oligodeoxyribonucleotide-directed triple-helix formation offers a chemical approach for the sequence...
Oligodeoxyribonucleotide-directed triple-helix formation offers a chemical approach for the sequence...
The formation of intermolecular DNA triple helices offers the possibility of designing compounds wit...
DNA triple helices are formed when a third nucleic acid strand binds within the major groove of a DN...
DNA triple helices are formed when a third nucleic acid strand binds within the major groove of a DN...
DNA triple helices are formed when a third nucleic acid strand binds within the major groove of a DN...
The formation of DNA triple helices offers the possibility of selectively targeting specific genes t...
We have studied the formation of DNA triple helices in different sequence contexts and show that, fo...
Oligonucleotide-directed triple helix formation offers the possibility of acheiving sequence recogni...
We have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair oligopurin...
AbstractWe have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair ol...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-propargylamino...
Oligonucleotides can bind to duplex DNA in a sequence specific manner, forming triple standard DNA. ...
Triple-helical nucleic acids are formed by binding an oligonucleotide within the major groove of dup...
Oligodeoxyribonucleotide-directed triple-helix formation offers a chemical approach for the sequence...
Oligodeoxyribonucleotide-directed triple-helix formation offers a chemical approach for the sequence...
Oligodeoxyribonucleotide-directed triple-helix formation offers a chemical approach for the sequence...
The formation of intermolecular DNA triple helices offers the possibility of designing compounds wit...
DNA triple helices are formed when a third nucleic acid strand binds within the major groove of a DN...
DNA triple helices are formed when a third nucleic acid strand binds within the major groove of a DN...
DNA triple helices are formed when a third nucleic acid strand binds within the major groove of a DN...
The formation of DNA triple helices offers the possibility of selectively targeting specific genes t...
We have studied the formation of DNA triple helices in different sequence contexts and show that, fo...
Oligonucleotide-directed triple helix formation offers the possibility of acheiving sequence recogni...
We have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair oligopurin...
AbstractWe have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair ol...
We have prepared oligonucleotides containing the novel base analogue 2'-aminoethoxy,5-propargylamino...
Oligonucleotides can bind to duplex DNA in a sequence specific manner, forming triple standard DNA. ...