Stratagene Catalog. p. 39, 1988.* |
Ishiguro et al., Fluorescence Detection of Specific Sequence of Nucleic Acids by Oxazole Yellow-Linked Oligonucleotides. Homogeneous Quantitative Monitoring of in vitro Transcription, Nucleic Acids Research, (1996) vol. 24, No. 24, 4992-4997. |
Inoue et al.,Fluorescence Property of Oxazole Yellow-Linked Oligonucleotide. Triple Helix Formation and Photocleavage of Double-Stranded DNA in the Presence of Spermine , Bioorganic & Medicinal Chemistry 7 (1999) 1207-1211. |
Zimmer and Wahnert, Nonintercalating DNA-Binding Ligands: Specificity of the Interaction and Their Use As Tools in Biophysical, Biochemical and Biological Investigations of the Genetic Material, Prog. Biophys., Moloch., Biol., (1986) vol. 47, 31-112. |
Loontien's et al., Binding of Heochst 33258 and 4′, 6-Diamidino-2-Phenylindole to Self-Complementary Decadeoxynucleotides With Modified Exocyclic Base Substitutes, Biochemistry (1991) 30, 182-189. |
Conway and McLaughlin, The Covalent Attachment of Multiple Fluorophores to DNA Containing Phosphorothioate Diesters Results in Highly Sensitive Detection of Single-Stranded DNA, Bioconjugate Chem. (1991) 452-457. |
Patel et al., Thermodynamics of Interaction of a Fluorescent DNA Oligomer With the Anti-Tumor Drug Netropsin, Eur. J. Biochem (1992) Feb. 1; 203(3) 361-366. |
O'Donnell et al., Synthesis and Properties of a Hoechst-Like Minor-Groove Binding Agent Tethered to an Oligoodeoxynucleotide, Bioorganic & Medicinal Chemistry (1995) Jun. 3(6) 743-750. |
Harapanhalli et al., [−125 I/127 I]IodoHoechst 33342: Synthesis, DNA Binding, and Biodistribution, J. Med. Chem. (1996) 39, 4804-9. |
Rye et al., High-Sensitivity Two-Color Detection of Double-Stranded DNA With a Confocal Fluorescence Gel Scanner Using Ethidium Homodimer and Thiazole Orange, Nucleic Acids Research, (1990) vol. 19, No. 2, 327. |
Jocobson et al., Site Selective Bis-Intercalation of a Homodimeric Thiazole Orange Dye in DNA Oligonucleotides, Nucleic Acids Research (1995) vol. 23, No. 5, 753-760. |
Spielmann et al., Solution Structure of the DNA Complex With the Fluorescent Bis-Intercalator TOTO Determined by NMR Spectroscopy, Biochemistry (1995) 34, 8542-53. |
Hansen et al., Bis-Intercalation of a Homodimeric Thiazole Orange Dye in DNA in Symmetrical Pyrimidine—Pyrimidine-Purine-Purine Oligonucleotides, Nucleic Acids Research (1996) vol., 24, No. 5, 859-867. |
Peterson and Jocobsen, Solution Structure of a DNA Complex with the Fluorescent Bis-Intercalcator TOTO Modified on the Benzothiazole Ring, Bioconjugate Chem. (1998) 9, 331-40. |
Wiederholt et al., Oligonucleotides Tethering Hoechst 33258 Derivatives: Effect of the Conjugation Site on Duplex Stabilization and Fluorescence Properties; Bioconjugate Chem. (1997) 8, 119-126. |
Wiederholt et al., DNA-Tethered Hoechst Groove-Binding Agents: Duplex Stabilization and Fluorescence Chracteristics, J. Am. Chem. Soc. (1996) 118, 7055-7062. |
Bailly and Henichart DNA Recognition By Intercalator-Minor-Groove Binder Hybrid Molecules, Bioconjugate Chemistry (1991) vol. 2, No. 6, 379-93. |
Levina et al., Conjugates of Minor Groove DNA Binders with Oligodeoxynucleotides: Synthesis and Properties, Antisense & Nucleic Acid Drug Development (1996) 6:75-85. |
Federico Gago, Stacking Interactions and Intercalative DNA Binding, A Companion to Methods in Enzymology (1998) 14, 277-292. |
Peter E. Nielsen, Applications of Peptide Nucleic Acids, Current Opinion in Biotechology (1999) 10: 71-75. |
Koch et al., PNA-Peptide Chimerae1, Tetrahedron Letters (1995) vol. 36, No. 38, 6933-6936. |
Lampe et al., Factors Influencing the Extent and Selectivity of Alkylation Within Triplexes by Reactive G/A Motif Oligonucleotides, Nucleic Acids Research (1997) vol. 25, No. 20, 4123-4131. |
Ornstein and Fresco, Correlation of Crystallographically Determined and Computationally Predicted Hydrogen-Bonded Pairing Configurations of Nucleic Acid Bases, Proc. Natl. Acad. Sci USA, (1983) vol. 80, 5171-5175. |
Kumar et al., Solution Structure of a Highly Stable DNA Duplex Conjugated to a Minor Groove Binder, Nucleic Acids Research (1998) vol. 26, No. 3, 831-838. |
Casas-Finet et al., Structural Basis for the Nucleic Acid Binding Cooperativity of Bacteriophage T4 Gene 32 Protein: The (Lys/Arg)3(Ser/Thr)2(LAST) Motif. Proc. Natl. Acad. Sci. USA (1992) vol. 89, 1050-54. |
Boger et al., Studies on the Total Synthesis of CF-1065: Preparation of a Synthetic, Simplified 3-Carbamoyl-1-2-dihydro-3H-Pyrrolo[3,2-e]indole Dimer/Trimer/Tetramer (CDPI Dimer/Trimer/Tetramer) and Development of Methodology for PDE-I Dimer Methyl Ester Formation, J. Org. Chem. (1987) 52, 1521-1530. |