Bremer et al., “Recognition of the DNA Minor Groove by Pyrrole-Imidazole Polyamides: Comparison of Desmethyl-and N-Methylpyroole.” Bioorganic & Medicinal Chemistry, 8:1947-1955 (2000). |
Bailey et al., “Sequence-Specific DNA Minor Groove Binders. Design and Synthesis of Netropsin and Distamycin Analogues,” Bioconjugate Chemistry, 9:513-538 (1998). |
White et al., “On the pairing rules for recognition in the minor groove of DNA by pyrrole-imidazole polyamides,” Chemistry & Biology, 4:569-578 (1997). |
Mrksich et al., “Hairpin Peptide Motif, A New Class of Oligopeptides for Sequence-Specific Recognition in the Minor Groove of Double-Helical DNA,” J. Am. Chem. Soc., 116:7983-7988 (1994). |
Floreancig et al., “Recognition of the Minor Groove of DNA by Hairpin Polyamides Containing α-Substituted-β-Amino Acids,” J. Am. Chem. Soc., 122:6342-6350 (2000). |
Trauger et al., “Recognition of DNA by designed ligands at subanomolar concentrations,” Nature, 382:559-561 (1996). |
White et al., “Recognition of the four Watson-Crick base pairs in the DNA minor groove by synthetic ligands,” Nature, 391:468-471 (1998). |
Neidle, Stephen, “DNA minor-groove recognition by small molecules,” Nat. Prod. Rep., 18:291-309 (2001). |
Fenwick et al., “Solid-Phase Synthesis of Cyclic Alkoxyketones, Inhibitors of the Cysteine Protease Cathepsin K,” Bioorg. Med. Chem. Lett., 11:195-198 (2001). |
Boger et al., “Total Synthesis of Distamycin A and 2640 Analogues: A Solution-Phase Combinatorial Approach to the Discovery of New Bioactive DNA Binding Agents and Development of a Rapid High-Throughput Screen for Determining Relative DNA Binding Affinity or DNA Binding Sequence Selectivity,” 122:6382-6394 (2000). |