AbstractA 29-base RNA oligomer has been chemically synthesized and shown to form an intramolecular triple helix in solution at acidic pH. Assignment of the majority of the exchangeable proton NMR resonances demonstrated the Watson—Crick and Hoogsteen base pairings consistent with folding to form pyrimidine—purine—pyrimidine base triplets. FTIR spectroscopy provided independent evidence of base triplet formation, and indicated a predominately C3′-endo sugar pucker. UV absorption as a function of temperature suggested monophasic melting behaviour, which was confirmed by NMR of the imino protons
Intramolecular triple helices have been obtained by folding back twice oligonucleotides formed by de...
AbstractWe have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair ol...
We have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair oligopurin...
AbstractA 29-base RNA oligomer has been chemically synthesized and shown to form an intramolecular t...
Fourier transform infrared (FTIR), UV absorption and exchangeable proton NMR spectroscopies have bee...
Oligodeoxynucleotides designed to form intramolecular triple helices are widely used as model system...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
We report here studies on triple helix formation by mixed purine-pyrimidine strands with a view to e...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
*S Supporting Information ABSTRACT: The chemical synthesis of ribonucleic acids (RNA) with novel che...
We reported previously on NMR studies of (Y+)_n•(R+)_n(Y-)_n DNA triple helices containing one olig...
We reported previously on NMR studies of (Y+)_n•(R+)_n(Y-)_n DNA triple helices containing one olig...
AbstractHomopurine deoxyribonucleoside phosphorothioates, as short as hexanucleotides and possessing...
Intramolecular triple helices have been obtained by folding back twice oligonucleotides formed by de...
AbstractWe have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair ol...
We have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair oligopurin...
AbstractA 29-base RNA oligomer has been chemically synthesized and shown to form an intramolecular t...
Fourier transform infrared (FTIR), UV absorption and exchangeable proton NMR spectroscopies have bee...
Oligodeoxynucleotides designed to form intramolecular triple helices are widely used as model system...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
We report here studies on triple helix formation by mixed purine-pyrimidine strands with a view to e...
Chemical modification studies provide evidence that single-stranded oligodeoxyribonucleotides can fo...
*S Supporting Information ABSTRACT: The chemical synthesis of ribonucleic acids (RNA) with novel che...
We reported previously on NMR studies of (Y+)_n•(R+)_n(Y-)_n DNA triple helices containing one olig...
We reported previously on NMR studies of (Y+)_n•(R+)_n(Y-)_n DNA triple helices containing one olig...
AbstractHomopurine deoxyribonucleoside phosphorothioates, as short as hexanucleotides and possessing...
Intramolecular triple helices have been obtained by folding back twice oligonucleotides formed by de...
AbstractWe have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair ol...
We have used DNase I footprinting to examine DNA triple helix formation at a 12 base pair oligopurin...