J. Milligan et al. J. Med. Chem. 36(14) 1923-37 ('93).* |
B. Tseng et al. Cancer Gene Therap. 1(1):65-71 ('94).* |
M. Podyminogen et al. Biochem. 34:13098-13108 ('95).* |
R. Stull et al. Pharm. Res. 12(4) 465-83 ('95).* |
L. J. Maher, III. Bioessays 14(12) 807-15 ('92).* |
Genesis Group Associates, Inc., Dialog Abstract # 01997756, File 636('93).* |
H. Moser et al. Science 238 ('87) pp. 645-650.* |
D. Praseuth et al. PNAS 85:1349-53 ('88).* |
N. Sats et al., Bioorg. Khimiya 14(9) 1188-95 ('88) Russian.* |
C. Stein et al. Science 261:1004-12 ('93) See Translation.* |
J. Hartley et al. Biochem, vol. 29 (1990) pp. 2985-2591.* |
C. Stein et al. Science, vol. 261 ('93) pp. 1004-1012.* |
R. Weiss Science News, vol. 139 (91) pp. 108-109.* |
J. Sats et al. abstract Bioorg. Khim, vol. 14(9) pp. 1188-1196.* |
X-B. Kong et al. (abstract) Molecular Pharmacology, vol. 41(9) ('92) pp. 237-244.* |
H. Moser et al. Science, vol. 238 ('87) pp. 645-650.* |
Morris J. Robins, et al., “Nucleic Acid related Compounds. 39. Efficient Confersion of 5-Iodo to 5-Alkynyl and Derived 5-Substituted Uracil Bases and Nucleosides”, J. Org. Chem., 1983, 48, pp. 1854-1862. |
Rainer John, et al., “Synthese von Sieben-und Achtring-anellierten Pyridinen durch inverse intramolekulare Diels-Alder-Reaktion mit Trifluormethyl-substituierten 1,2,4-Triazinen”, Chem. Ber., 123, (1990), 133-136. |
Morris J. Robins, et al., “Nucleic acid related compounds. 38. Smooth and high-yield iodination and chlorinatic at C-5 uracil bases and p-toluyl-protected nucleosides”, Can. J. Chem., vol. 60, 1982, pp. 554-557. |
Moneesh Chatterjee, et al., “Inducible Alkylation of DNA Using an Oligonucleotide-Quinone Conjugate”, J. Am. Chem. Soc., 1990, 112 pp. 6397-6399. |
Jeng-Pying Shaw et al., “Specific, High-Efficiency, Triple-Helix-Mediated Cross-Linking to Duplex DNA”, J. Am. Chem. Soc., 1991, 113, pp. 7765-7766. |
Brent L. Iverson, et al., “Nonenzymatic sequence-specific methyl transfer to single-stranded DNA”, Proc. Natl. Acad. Sci, U.S.A., vol. 85, Jul. 1988, pp. 4615-4619. |
Thomas R. Webb, et al., “Hybridization triggered cross-linking of deoxyoligonucleotides”, Nucleic Acids Reseach., vol. 14, No. 19, 1986, pp. 7661-7675. |
James Summerton, et al., “Sequence-specific Crosslinking Agents for Nucleic Acids”, Mol. Biol., (1978), 122, pp. 145-162. |
Dmitri G. Knorre, et al., “Complementary-Addressed (Sequence-Specific) Modification of Nucleic Acids”, Progess in Nucleic Acid Research and Molecular Biology, vol. 32, 1985, pp. 291-320. |
Paul C. Zamecnik, et al., “Inhibition of replication and expression of human T-cell lymphotropic virus type III in cultured cells by exogenous synthetifc oligonucleotides complementary to viral RNA” Proc. Natl. Acad. Sci, U.S.A., vol. 83, Jun. 1986, pp. 4143-4146. |
Mary L. Stephenson, et al., “Inhibition of Rous sarcoma viral RNA translation by a specific oligodeoxyribonucleotide”, Proc. Natl. Acad. Sci. U.S.A., vol. 75, No. 1, Jan. 1978, pp. 285-288. |
Frank M. Orson, et al., “Oligonucleotide inhibition of 1L2Ra mRNA transcription by promoter region collinear triplex formation in lymphocytes”, Nucleic Acids Reseach, vol. 19, No. 12, May 17, 1991, pp. 3435-3441. |
Roger A. Jones, “Preparation of Protected Deoxyribonucleosides”, Oligonucleotide synthesis, Practical Approac Series, IRL, Press, Chapter 2, pp. 23-34. |
E. Sonveaux, “Reviews: the Organic Chemistry Underlying DNA Synthesis”, Bioorganic Chemistry, vol. 14, (1986), pp. 274-325. |
Scott W. Umlaut, et al., “Triple-helical DNA Pairing Intermediates Formed by recA Protein”, The Journal of Biological Chemistry, vol. 265, No. 28, Issue of Oct. 5, 1990, pp. 16898-16912. |
Nguyen Tanh Thuong, et al., “Chamical synthesis of natural and modified oligodeoxynucleotides”, Biochime, vol. 67, 1985, pp. 673-684. |
Kathleen R. Blake, et al., “Hybridization Arrest of Globin Synthesis in Rabbit Reticulocyte Lysates and Cells by Oligodeoxyribonucleoside Methylphosphonates”, Biochemistry, vol. 24, 1985, pp. 6139-6145. |
Paul C. Zamecnik, et al., “Inhibition of Rous sarcoma virus replication and cell transformation by a specific oligodeoxynucleotide”, Proc. Natl. Acad. Sci. U.S.A., vol. 75, No. 1, Jan. 1978, pp. 280-284, Biochemistry. |
D.G. Korre, et al., “Oligonucleotides Linked to Reactive Groups”, Ed. by J. Cohen, Chapter 8, CRC Press, Inc., 1989, pp. 173-196. |
Rich B. Meyer, et al., “Efficient, Specific Cross-Linking and Cleavage of DNA by Stable, Synthetic Complementary Oligodeoxynucleotides”, J. Am. Chem. Soc., vol. 111, (1989), pp. 8517-8519. |
Trung Le Doan, et al., “Sequence-specific recognition, phorocross-linking and cleavage of DNA double helix by an oligo-[a]-thymidylate covalently linking to a azidoproflavine dervative”, Nucleic Acids Research, vol. 15, No. 19, (1987), pp. 7749-7760. |
Eugen Uhlmann et al., “Antisense Oligonucleotides: A New Therapeutic Principles” Chemical Reviews. vol. 90. No. 4, (Jun. 1990), pp 543-584. |
Russell O. Pieper, et al., “Transcription-terminating lesions induced by bifunctional alkylating agents in vitro”, Carcinogenesis,vol. 10, No. 7, pp. 1307-1314 (1989). |