Physico-chemical basis of the recognition process in nucleic acid interactions. V. Interactions of adenosine and adenine heptanucleoside hexaphosphate with polyuridylic acid
Author:
Publisher
American Chemical Society (ACS)
Subject
Biochemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/bi00840a075
Reference35 articles.
1. Interaction and association of bases and nucleosides in aqueous solutions. V. Studies of the association of purine nucleosides by vapor pressure osmometry and by proton magnetic resonance
2. Oligonucleotide interactions. I. Structure of 2 : 1 complexes between polyuridylic acid and oligoadenylic acid
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1. -CH2- lengthening of the internucleotide linkage in the ApA dimer can improve its conformational compatibility with its natural polynucleotide counterpart;Nucleic Acids Research;2001-12-15
2. Fluorescence Resonance Energy Transfer Analysis of Ribozyme Kinetics Reveals the Mode of Action of a Facilitator Oligonucleotide;Biochemistry;1996-01-01
3. Cooperative Binding of 8-mer Oligonucleotides Containing 5-(1-Propynyl)-2'-deoxyuridine to Adjacent DNA Sites by Triple-Helix Formation;Journal of the American Chemical Society;1994-01
4. Formation of Triplexes of Diastereoisomers of 2′-O-Methyladenylyl-3′,5′-2′-O-Methyladenosine Ethylphosphotriesters and 2′-O-Methyladenylyl- 3′,5′-2′-O-Methyladenosine Methyl Phosphonates with Polyuridylic Acid and Polythymidylic Acid: A Steric Effect;Journal of the Chinese Chemical Society;1993-12
5. Cooperative oligonucleotide-directed triple helix formation at adjacent DNA sites;Journal of the American Chemical Society;1993-06
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