Prominent stacking interaction with aromatic amino acid by N-quarternization of nucleic acid base: X-ray crystallographic characteristics and biological implications
Author:
Publisher
Elsevier BV
Subject
Molecular Biology,Biochemistry,Biophysics
Reference37 articles.
1. The Specific Guanine Binding Site of the Ribonuclease Tj Family Enzymes and of G-Proteins Is Modeled in the Cocrystal Formed by 7-Methylguanosine-5'-Phosphate and Phenylalanine1
2. Nucleotide base recognition: ditopic binding of guanine to a macrocyclic receptor containing naphthyridine and naphthalene units
3. Molecular recognition: hydrogen bonding and stacking interactions stabilize a model for nucleic acid structure
4. Molecular Recognition: Stacking Interactions Influence Watson-Crick vs. Hoogsteen Base-Pairing in a Model for Adenine Receptors
5. Nucleotide base recognition: a macrocyclic receptor for adenine employing hydrogen bonding and aromatic stacking interactions
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