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Nucleic Acids Research|January 26, 1987
Cleavage of single stranded oligonucleotides by EcoRI restriction endonucleaseN Bischofberger, P G Ng, T R Webb, et al.Nucleic Acids Research|January 25, 1993
An anti-parallel triple helix motif with oligodeoxynucleotides containing 2'-deoxyguanosine and 7-deaza-2'-deoxyxanthosineJ F Milligan, S H Krawczyk, S Wadwani, et al.Molecular Medicine Today|January 1, 1997
Antisense technology and prospects for therapy of viral infections and cancerR W Wagner, W M FlanaganNucleic Acids Research|May 12, 1986
Nuclease recognition of an alternating structure in a d(AT)14 plasmid insertJ W Suggs, R W WagnerMolecular and Cellular Biochemistry|July 1, 1997
Potent and selective gene inhibition using antisense oligodeoxynucleotidesW M Flanagan, R W WagnerNucleic Acids Research|February 1, 1997
Potassium-resistant triple helix formation and improved intracellular gene targeting by oligodeoxyribonucleotides containing 7-deazaxanthineA F Faruqi, S H Krawczyk, M D Matteucci, et al.Proceedings of the National Academy of Sciences of the United States of America|November 15, 1991
Triple helix formation inhibits transcription elongation in vitroS L Young, S H Krawczyk, M D Matteucci, et al.Nucleic Acids Research|August 1, 1996
Effects of oligonucleotide length, mismatches and mRNA levels on C-5 propyne-modified antisense potencyW M Flanagan, A Kothavale, R W WagnerNature Biotechnology|September 1, 1996
Elucidation of gene function using C-5 propyne antisense oligonucleotidesW M Flanagan, L L Su, R W WagnerProceedings of the National Academy of Sciences of the United States of America|May 1, 1992
Oligonucleotide-mediated triple helix formation using an N3-protonated deoxycytidine analog exhibiting pH-independent binding within the physiological rangeS H Krawczyk, J F Milligan, S Wadwani, et al.Pageof 4